메뉴 건너뛰기




Volumn 138, Issue 4, 2010, Pages 447-462

Reactive oxygen species and nitric oxide in plant mitochondria: Origin and redundant regulatory systems

Author keywords

[No Author keywords available]

Indexed keywords

NITRIC OXIDE; REACTIVE OXYGEN METABOLITE; REDUCED NICOTINAMIDE ADENINE DINUCLEOTIDE DEHYDROGENASE (UBIQUINONE); SUCCINATE DEHYDROGENASE (UBIQUINONE); UBIQUINOL CYTOCHROME C REDUCTASE;

EID: 77952055233     PISSN: 00319317     EISSN: 13993054     Source Type: Journal    
DOI: 10.1111/j.1399-3054.2009.01340.x     Document Type: Review
Times cited : (192)

References (148)
  • 1
    • 33751072935 scopus 로고    scopus 로고
    • Bioenergetics and the formation of mitochondrial reactive oxygen species
    • Adam-Vizi V, Chinopoulos C. Bioenergetics and the formation of mitochondrial reactive oxygen species. Trends Pharmacol Sci 2006, 27:639-645.
    • (2006) Trends Pharmacol Sci , vol.27 , pp. 639-645
    • Adam-Vizi, V.1    Chinopoulos, C.2
  • 2
    • 63349091808 scopus 로고    scopus 로고
    • Nitric oxide modulates ozone-induced cell death, hormone biosynthesis and gene expression in Arabidopsis thaliana
    • Ahlfors R, Brosché M, Kollist H, Kangasjärvi J. Nitric oxide modulates ozone-induced cell death, hormone biosynthesis and gene expression in Arabidopsis thaliana. Plant J 2009, 58:1-12.
    • (2009) Plant J , vol.58 , pp. 1-12
    • Ahlfors, R.1    Brosché, M.2    Kollist, H.3    Kangasjärvi, J.4
  • 3
    • 17144422877 scopus 로고    scopus 로고
    • Mitochondrial metabolism of reactive oxygen species
    • Andreyev A, Kushnareva Y, Starkov A. Mitochondrial metabolism of reactive oxygen species. Biochem (Moscow) 2005, 70:200-214.
    • (2005) Biochem (Moscow) , vol.70 , pp. 200-214
    • Andreyev, A.1    Kushnareva, Y.2    Starkov, A.3
  • 4
    • 62349113335 scopus 로고    scopus 로고
    • Proton flux induced by free fatty acids across phospholipid bilayers: new evidences based on short-circuit measurements in planar lipid membranes
    • Arcisio-Miranda M, Abdulkader F, Brunaldi K, Curi R, Procopio J. Proton flux induced by free fatty acids across phospholipid bilayers: new evidences based on short-circuit measurements in planar lipid membranes. Arch Biochem Biophys 2009, 484:63-69.
    • (2009) Arch Biochem Biophys , vol.484 , pp. 63-69
    • Arcisio-Miranda, M.1    Abdulkader, F.2    Brunaldi, K.3    Curi, R.4    Procopio, J.5
  • 5
    • 0042847430 scopus 로고    scopus 로고
    • Reversible inhibition of cytochrome c oxidase by peroxynitrite proceeds through ascorbate-dependent generation of nitric oxide
    • Barone MC, Darley-Usmar VM, Brookes PS. Reversible inhibition of cytochrome c oxidase by peroxynitrite proceeds through ascorbate-dependent generation of nitric oxide. J Biol Chem 2003, 278:27520-27524.
    • (2003) J Biol Chem , vol.278 , pp. 27520-27524
    • Barone, M.C.1    Darley-Usmar, V.M.2    Brookes, P.S.3
  • 6
    • 0034126442 scopus 로고    scopus 로고
    • Ascorbate biosynthesis in mitochondria is linked to the electron transport chain between complexes III and IV
    • Bartoli CG, Pastori GM, Foyer CH. Ascorbate biosynthesis in mitochondria is linked to the electron transport chain between complexes III and IV. Plant Physiol 2000, 123:335-344.
    • (2000) Plant Physiol , vol.123 , pp. 335-344
    • Bartoli, C.G.1    Pastori, G.M.2    Foyer, C.H.3
  • 7
    • 4043160619 scopus 로고    scopus 로고
    • Mitochondria are the main target for oxidative damage in leaves of wheat (Triticum aestivum L.).
    • Bartoli CG, Gomez F, Martinez DE, Guiamet JJ. Mitochondria are the main target for oxidative damage in leaves of wheat (Triticum aestivum L.). J Exp Bot 2004, 55:1663-1669.
    • (2004) J Exp Bot , vol.55 , pp. 1663-1669
    • Bartoli, C.G.1    Gomez, F.2    Martinez, D.E.3    Guiamet, J.J.4
  • 10
    • 1042267601 scopus 로고    scopus 로고
    • Apoplastic synthesis of nitric oxide by plant tissues
    • Bethke PC, Badger MR, Jones RL. Apoplastic synthesis of nitric oxide by plant tissues. Plant Cell 2004, 16:332-341.
    • (2004) Plant Cell , vol.16 , pp. 332-341
    • Bethke, P.C.1    Badger, M.R.2    Jones, R.L.3
  • 12
    • 84967592945 scopus 로고    scopus 로고
    • Oxidative stress & antioxidant defences in plants
    • Quek J. In:, (ed), Imperial College Press, London
    • Blokhina O, Fagerstedt KV. Oxidative stress & antioxidant defences in plants. Oxidative Stress, Disease and Cancer 2006, 151-199. Quek J, In:, (ed), Imperial College Press, London, pp
    • (2006) Oxidative Stress, Disease and Cancer , pp. 151-199
    • Blokhina, O.1    Fagerstedt, K.V.2
  • 13
    • 0037237973 scopus 로고    scopus 로고
    • Antioxidants, oxidative damage and oxygen deprivation stress: a review
    • Blokhina O, Virolainen E, Fagerstedt KV. Antioxidants, oxidative damage and oxygen deprivation stress: a review. Ann Bot 2003, 91:179-194.
    • (2003) Ann Bot , vol.91 , pp. 179-194
    • Blokhina, O.1    Virolainen, E.2    Fagerstedt, K.V.3
  • 14
    • 33644897887 scopus 로고    scopus 로고
    • The plant energy-dissipating mitochondrial systems: depicting the genomic structure and the expression profiles of the gene families of uncoupling protein and alternative oxidase in monocots and dicots
    • Borecky J, Nogueira FTS, de Oliveira KAP, Maia IG, Vercesi AE, Arruda P. The plant energy-dissipating mitochondrial systems: depicting the genomic structure and the expression profiles of the gene families of uncoupling protein and alternative oxidase in monocots and dicots. J Exp Bot 2006, 57:849-864.
    • (2006) J Exp Bot , vol.57 , pp. 849-864
    • Borecky, J.1    Nogueira, F.T.S.2    de Oliveira, K.A.P.3    Maia, I.G.4    Vercesi, A.E.5    Arruda, P.6
  • 15
    • 36049029610 scopus 로고    scopus 로고
    • Low oxygen sensing and balancing in plant seeds: a role for nitric oxide
    • Borisjuk L, Macherel D, Benamar A, Wobus U, Rolletschek H. Low oxygen sensing and balancing in plant seeds: a role for nitric oxide. New Phytol 2007, 176:813-823.
    • (2007) New Phytol , vol.176 , pp. 813-823
    • Borisjuk, L.1    Macherel, D.2    Benamar, A.3    Wobus, U.4    Rolletschek, H.5
  • 16
    • 0033046063 scopus 로고    scopus 로고
    • Hydrogen peroxide generation by higher plant mitochondria oxidizing complex I or complex II substrates
    • Braidot E, Petrussa E, Vianello A, Macri F. Hydrogen peroxide generation by higher plant mitochondria oxidizing complex I or complex II substrates. FEBS Lett 1999, 451:347-350.
    • (1999) FEBS Lett , vol.451 , pp. 347-350
    • Braidot, E.1    Petrussa, E.2    Vianello, A.3    Macri, F.4
  • 17
    • 1642451708 scopus 로고    scopus 로고
    • Overexpression of plant uncoupling mitochondrial protein in transgenic tobacco increases tolerance to oxidative stress
    • Brandalise M, Maia IG, Borecký J, Vercesi AbE, Arruda P. Overexpression of plant uncoupling mitochondrial protein in transgenic tobacco increases tolerance to oxidative stress. J Bioenerg Biomembr 2003, 35:203-209.
    • (2003) J Bioenerg Biomembr , vol.35 , pp. 203-209
    • Brandalise, M.1    Maia, I.G.2    Borecký, J.3    Vercesi, A.4    Arruda, P.5
  • 18
    • 0028858786 scopus 로고
    • NO, nitrosonium ions, nitroxide ions, nitrosothiols and iron-nitrosyls in biology: a chemist's perspective
    • Butler AR, Flitney FW, Williams DLH. NO, nitrosonium ions, nitroxide ions, nitrosothiols and iron-nitrosyls in biology: a chemist's perspective. Trends Pharmacol Sci 1995, 16:18-22.
    • (1995) Trends Pharmacol Sci , vol.16 , pp. 18-22
    • Butler, A.R.1    Flitney, F.W.2    Williams, D.L.H.3
  • 19
    • 60249088371 scopus 로고    scopus 로고
    • Reactive oxygen species production by potato tuber mitochondria is modulated by mitochondrially bound hexokinase activity
    • Camacho-Pereira J, Meyer LE, Machado LB, Oliveira MF, Galina A. Reactive oxygen species production by potato tuber mitochondria is modulated by mitochondrially bound hexokinase activity. Plant Physiol 2009, 149:1099-1110.
    • (2009) Plant Physiol , vol.149 , pp. 1099-1110
    • Camacho-Pereira, J.1    Meyer, L.E.2    Machado, L.B.3    Oliveira, M.F.4    Galina, A.5
  • 22
    • 58149185126 scopus 로고    scopus 로고
    • BRENDA, AMENDA and FRENDA the enzyme information system: new content and tools in 2009
    • Chang A, Scheer M, Grote A, Schomburg I, Schomburg D. BRENDA, AMENDA and FRENDA the enzyme information system: new content and tools in 2009. Nucleic Acids Res 2009, D588-D592.
    • (2009) Nucleic Acids Res
    • Chang, A.1    Scheer, M.2    Grote, A.3    Schomburg, I.4    Schomburg, D.5
  • 23
    • 0141815741 scopus 로고    scopus 로고
    • Production of reactive oxygen species by mitochondria: Central role of Complex III
    • Chen Q, Vazquez EJ, Moghaddas S, Hoppel CL, Lesnefsky EJ. Production of reactive oxygen species by mitochondria: Central role of Complex III. J Biol Chem 2003, 278:36027-36031.
    • (2003) J Biol Chem , vol.278 , pp. 36027-36031
    • Chen, Q.1    Vazquez, E.J.2    Moghaddas, S.3    Hoppel, C.L.4    Lesnefsky, E.J.5
  • 26
    • 69949091242 scopus 로고    scopus 로고
    • Evidence supporting the existence of l-arginine-dependent nitric oxide synthase activity in plants
    • Corpas FJ, Palma JM, del Río LA, Barroso JB. Evidence supporting the existence of l-arginine-dependent nitric oxide synthase activity in plants. New Phytol 2009, 184:9-14.
    • (2009) New Phytol , vol.184 , pp. 9-14
    • Corpas, F.J.1    Palma, J.M.2    del Río, L.A.3    Barroso, J.B.4
  • 28
    • 33744950512 scopus 로고    scopus 로고
    • Constitutive arginine-dependent nitric oxide synthase activity in different organs of pea seedlings during plant development
    • Corpas F, Barroso J, Carreras A, Valderrama R, Palma J, León A, Sandalio L, del Río L. Constitutive arginine-dependent nitric oxide synthase activity in different organs of pea seedlings during plant development. Planta 2006, 224:246-254.
    • (2006) Planta , vol.224 , pp. 246-254
    • Corpas, F.1    Barroso, J.2    Carreras, A.3    Valderrama, R.4    Palma, J.5    León, A.6    Sandalio, L.7    del Río, L.8
  • 31
    • 33744527052 scopus 로고    scopus 로고
    • Persistent S-nitrosation of complex I and other mitochondrial membrane proteins by S-nitrosothiols but not nitric oxide or peroxynitrite
    • Dahm CC, Moore K, Murphy MP. Persistent S-nitrosation of complex I and other mitochondrial membrane proteins by S-nitrosothiols but not nitric oxide or peroxynitrite. J Biol Chem 2006, 281:10056-10065.
    • (2006) J Biol Chem , vol.281 , pp. 10056-10065
    • Dahm, C.C.1    Moore, K.2    Murphy, M.P.3
  • 32
    • 43049095110 scopus 로고    scopus 로고
    • Nitric oxide degradation by potato tuber mitochondria: Evidence for the involvement of external NAD(P)H dehydrogenases
    • de Oliveira HC, Wulff A, Saviani EE, Salgado I. Nitric oxide degradation by potato tuber mitochondria: Evidence for the involvement of external NAD(P)H dehydrogenases. Biochim Biophys Acta Bioenerg 2008, 1777:470-476.
    • (2008) Biochim Biophys Acta Bioenerg , vol.1777 , pp. 470-476
    • de Oliveira, H.C.1    Wulff, A.2    Saviani, E.E.3    Salgado, I.4
  • 33
    • 33745675163 scopus 로고    scopus 로고
    • Reactive oxygen species and reactive nitrogen species in peroxisomes. Production, scavenging, and role in cell signaling.
    • del Río LA, Sandalio LM, Corpas FJ, Palma JM, Barroso JB. Reactive oxygen species and reactive nitrogen species in peroxisomes. Production, scavenging, and role in cell signaling. Plant Physiol 2006, 141:330-335.
    • (2006) Plant Physiol , vol.141 , pp. 330-335
    • del Río, L.A.1    Sandalio, L.M.2    Corpas, F.J.3    Palma, J.M.4    Barroso, J.B.5
  • 35
    • 0034813646 scopus 로고    scopus 로고
    • Regulation of the Arabidopsis transcriptome by oxidative stress
    • Desikan R, Mackerness S, Hancock JT, Neill SJ. Regulation of the Arabidopsis transcriptome by oxidative stress. Plant Physiol 2001, 127:159-172.
    • (2001) Plant Physiol , vol.127 , pp. 159-172
    • Desikan, R.1    Mackerness, S.2    Hancock, J.T.3    Neill, S.J.4
  • 36
    • 60549094197 scopus 로고    scopus 로고
    • Nonsymbiotic hemoglobins and stress tolerance in plants
    • Dordas C. Nonsymbiotic hemoglobins and stress tolerance in plants. Plant Sci 2009, 176:433-440.
    • (2009) Plant Sci , vol.176 , pp. 433-440
    • Dordas, C.1
  • 37
    • 1842823269 scopus 로고    scopus 로고
    • Class-1 hemoglobins, nitrate and NO levels in anoxic maize cell-suspension cultures
    • Dordas C, Hasinoff B, Rivoal J, Hill R. Class-1 hemoglobins, nitrate and NO levels in anoxic maize cell-suspension cultures. Planta 2004, 219:66-72.
    • (2004) Planta , vol.219 , pp. 66-72
    • Dordas, C.1    Hasinoff, B.2    Rivoal, J.3    Hill, R.4
  • 39
    • 33244470640 scopus 로고    scopus 로고
    • Characterization of mitochondrial alternative NAD(P)H dehydrogenases in Arabidopsis: Intraorganelle location and expression
    • Elhafez D, Murcha MW, Clifton R, Soole KL, Day DA, Whelan J. Characterization of mitochondrial alternative NAD(P)H dehydrogenases in Arabidopsis: Intraorganelle location and expression. Plant Cell Physiol 2006, 47:43-54.
    • (2006) Plant Cell Physiol , vol.47 , pp. 43-54
    • Elhafez, D.1    Murcha, M.W.2    Clifton, R.3    Soole, K.L.4    Day, D.A.5    Whelan, J.6
  • 40
    • 33644867727 scopus 로고    scopus 로고
    • Reorganization of the alternative pathways of the Arabidopsis respiratory chain by nitrogen supply: opposing effects of ammonium and nitrate
    • Escobar MA, Geisler DA, Rasmusson AG. Reorganization of the alternative pathways of the Arabidopsis respiratory chain by nitrogen supply: opposing effects of ammonium and nitrate. Plant J 2006, 45:775-788.
    • (2006) Plant J , vol.45 , pp. 775-788
    • Escobar, M.A.1    Geisler, D.A.2    Rasmusson, A.G.3
  • 41
    • 33847606985 scopus 로고    scopus 로고
    • Mitochondrial ATP-sensitive K + channels are redox-sensitive pathways that control reactive oxygen species production
    • Facundo HTF, de Paula JG, Kowaltowski AJ. Mitochondrial ATP-sensitive K + channels are redox-sensitive pathways that control reactive oxygen species production. Free Rad Biol Med 2007, 42:1039-1048.
    • (2007) Free Rad Biol Med , vol.42 , pp. 1039-1048
    • Facundo, H.T.F.1    de Paula, J.G.2    Kowaltowski, A.J.3
  • 44
    • 0242309094 scopus 로고    scopus 로고
    • Redox sensing and signalling associated with reactive oxygen in chloroplasts, peroxisomes and mitochondria
    • Foyer CH, Noctor G. Redox sensing and signalling associated with reactive oxygen in chloroplasts, peroxisomes and mitochondria. Physiol Plant 2003, 119:355-364.
    • (2003) Physiol Plant , vol.119 , pp. 355-364
    • Foyer, C.H.1    Noctor, G.2
  • 45
    • 25844468618 scopus 로고    scopus 로고
    • Redox homeostasis and antioxidant signaling: a metabolic interface between stress perception and physiological responses
    • Foyer CH, Noctor G. Redox homeostasis and antioxidant signaling: a metabolic interface between stress perception and physiological responses. Plant Cell 2005, 17:1866-1875.
    • (2005) Plant Cell , vol.17 , pp. 1866-1875
    • Foyer, C.H.1    Noctor, G.2
  • 46
    • 60749136076 scopus 로고    scopus 로고
    • Redox regulation in photosynthetic organisms: signaling, acclimation, and practical implications
    • Foyer CH, Noctor G. Redox regulation in photosynthetic organisms: signaling, acclimation, and practical implications. Antioxid Redox Signal 2009, 11:861-905.
    • (2009) Antioxid Redox Signal , vol.11 , pp. 861-905
    • Foyer, C.H.1    Noctor, G.2
  • 47
    • 67651049051 scopus 로고    scopus 로고
    • Photorespiratory metabolism: genes, mutants, energetics, and redox signaling
    • Foyer CH, Bloom AJ, Queval G, Noctor G. Photorespiratory metabolism: genes, mutants, energetics, and redox signaling. Annu Rev Plant Biol 2009, 60:455-484.
    • (2009) Annu Rev Plant Biol , vol.60 , pp. 455-484
    • Foyer, C.H.1    Bloom, A.J.2    Queval, G.3    Noctor, G.4
  • 49
    • 0142011184 scopus 로고    scopus 로고
    • Mitochondrial potassium transport: the K+ cycle
    • Garlid KD, Paucek P. Mitochondrial potassium transport: the K+ cycle. Biochim Biophys Acta Bioenerg 2003, 1606:23-41.
    • (2003) Biochim Biophys Acta Bioenerg , vol.1606 , pp. 23-41
    • Garlid, K.D.1    Paucek, P.2
  • 50
    • 62549115324 scopus 로고    scopus 로고
    • Hunting for plant nitric oxide synthase provides new evidence of a central role for plastids in nitric oxide metabolism
    • Gas E, Flores-Pérez U, Sauret-Gueto S, Rodriguez- Concepcion M. Hunting for plant nitric oxide synthase provides new evidence of a central role for plastids in nitric oxide metabolism. Plant Cell 2009, 21:18-23.
    • (2009) Plant Cell , vol.21 , pp. 18-23
    • Gas, E.1    Flores-Pérez, U.2    Sauret-Gueto, S.3    Rodriguez- Concepcion, M.4
  • 52
    • 0042415622 scopus 로고    scopus 로고
    • A function for novel uncoupling proteins: antioxidant defense of mitochondrial matrix by translocating fatty acid peroxides from the inner to the outer membrane leaflet
    • Goglia F, Skulachev VP. A function for novel uncoupling proteins: antioxidant defense of mitochondrial matrix by translocating fatty acid peroxides from the inner to the outer membrane leaflet. FASEB J 2003, 17:1585-1591.
    • (2003) FASEB J , vol.17 , pp. 1585-1591
    • Goglia, F.1    Skulachev, V.P.2
  • 53
    • 33646785052 scopus 로고    scopus 로고
    • Mechanisms and functions of nonphosphorylating electron transport in respiratory chain of plant mitochondria
    • Grabel'nykh O, Kolesnichenko A, Pobezhimova T, Zykova V, Voinikov VK. Mechanisms and functions of nonphosphorylating electron transport in respiratory chain of plant mitochondria. Russ J Plant Physiol 2006, 53:418-429.
    • (2006) Russ J Plant Physiol , vol.53 , pp. 418-429
    • Grabel'nykh, O.1    Kolesnichenko, A.2    Pobezhimova, T.3    Zykova, V.4    Voinikov, V.K.5
  • 55
    • 33645239665 scopus 로고    scopus 로고
    • Nitric oxide and gene regulation in plants
    • Grun S, Lindermayr C, Sell S, Durner J. Nitric oxide and gene regulation in plants. J Exp Bot 2006, 57:507-516.
    • (2006) J Exp Bot , vol.57 , pp. 507-516
    • Grun, S.1    Lindermayr, C.2    Sell, S.3    Durner, J.4
  • 56
    • 30644480616 scopus 로고    scopus 로고
    • Arabidopsis nitric oxide synthase1 is targeted to mitochondria and protects against oxidative damage and dark-induced senescence [Review]
    • Guo FQ, Crawford NM. Arabidopsis nitric oxide synthase1 is targeted to mitochondria and protects against oxidative damage and dark-induced senescence [Review]. Plant Cell 2005, 17:3436-3450.
    • (2005) Plant Cell , vol.17 , pp. 3436-3450
    • Guo, F.Q.1    Crawford, N.M.2
  • 57
    • 0141531067 scopus 로고    scopus 로고
    • Identification of a plant nitric oxide synthase gene involved in hormonal signaling
    • Guo FQ, Okamoto M, Crawford NM. Identification of a plant nitric oxide synthase gene involved in hormonal signaling. Science 2003, 302:100-103.
    • (2003) Science , vol.302 , pp. 100-103
    • Guo, F.Q.1    Okamoto, M.2    Crawford, N.M.3
  • 58
    • 24744437064 scopus 로고    scopus 로고
    • In higher plants, only root mitochondria, but not leaf mitochondria reduce nitrite to NO, in vitro and in situ
    • Gupta KJ, Stoimenova M, Kaiser WM. In higher plants, only root mitochondria, but not leaf mitochondria reduce nitrite to NO, in vitro and in situ. J Exp Bot 2005, 56:2601-2609.
    • (2005) J Exp Bot , vol.56 , pp. 2601-2609
    • Gupta, K.J.1    Stoimenova, M.2    Kaiser, W.M.3
  • 59
    • 33745662190 scopus 로고    scopus 로고
    • Reactive species and antioxidants. Redox biology is a fundamental theme of aerobic life.
    • Halliwell B. Reactive species and antioxidants. Redox biology is a fundamental theme of aerobic life. Plant Physiol 2006, 141:312-322.
    • (2006) Plant Physiol , vol.141 , pp. 312-322
    • Halliwell, B.1
  • 60
    • 59249102083 scopus 로고    scopus 로고
    • The wanderings of a free radical
    • Halliwell B. The wanderings of a free radical. Free Rad Biol Med 2009, 46:531-542.
    • (2009) Free Rad Biol Med , vol.46 , pp. 531-542
    • Halliwell, B.1
  • 61
    • 0842270043 scopus 로고    scopus 로고
    • Experimental analysis of the Arabidopsis mitochondrial proteome highlights signaling and regulatory components, provides assessment of targeting prediction programs, and indicates plant-specific mitochondrial proteins
    • Heazlewood JL, Tonti-Filippini JS, Gout AM, Day DA, Whelan J, Millar AH. Experimental analysis of the Arabidopsis mitochondrial proteome highlights signaling and regulatory components, provides assessment of targeting prediction programs, and indicates plant-specific mitochondrial proteins. Plant Cell 2004, 16:241-256.
    • (2004) Plant Cell , vol.16 , pp. 241-256
    • Heazlewood, J.L.1    Tonti-Filippini, J.S.2    Gout, A.M.3    Day, D.A.4    Whelan, J.5    Millar, A.H.6
  • 62
    • 34447576465 scopus 로고    scopus 로고
    • Metabolic effects of hemoglobin gene expression in plants
    • Hebelstrup KH, Igamberdiev AU, Hill RD. Metabolic effects of hemoglobin gene expression in plants. Gene 2007, 398:86-93.
    • (2007) Gene , vol.398 , pp. 86-93
    • Hebelstrup, K.H.1    Igamberdiev, A.U.2    Hill, R.D.3
  • 64
    • 40849094258 scopus 로고    scopus 로고
    • The structure and function of plant hemoglobins
    • Hoy JA, Hargrove MS. The structure and function of plant hemoglobins. Plant Physiol Biochem 2008, 46:371-379.
    • (2008) Plant Physiol Biochem , vol.46 , pp. 371-379
    • Hoy, J.A.1    Hargrove, M.S.2
  • 65
    • 0036944847 scopus 로고    scopus 로고
    • Nitric oxide induces transcriptional activation of the nitric oxide-tolerant alternative oxidase in Arabidopsis suspension cells
    • Huang X, von Rad U, Durner J. Nitric oxide induces transcriptional activation of the nitric oxide-tolerant alternative oxidase in Arabidopsis suspension cells. Planta 2002, 215:914-923.
    • (2002) Planta , vol.215 , pp. 914-923
    • Huang, X.1    von Rad, U.2    Durner, J.3
  • 66
    • 43049176655 scopus 로고    scopus 로고
    • Does anoxia tolerance involve altering the energy currency towards PPi?
    • Huang S, Colmer TD, Millar AH. Does anoxia tolerance involve altering the energy currency towards PPi? Trends Plant Sci 2008, 13:221-227.
    • (2008) Trends Plant Sci , vol.13 , pp. 221-227
    • Huang, S.1    Colmer, T.D.2    Millar, A.H.3
  • 67
    • 58549098533 scopus 로고    scopus 로고
    • Plant mitochondrial function during anaerobiosis
    • Igamberdiev AU, Hill RD. Plant mitochondrial function during anaerobiosis. Ann Bot 2009, 103:259-268.
    • (2009) Ann Bot , vol.103 , pp. 259-268
    • Igamberdiev, A.U.1    Hill, R.D.2
  • 68
    • 24744469876 scopus 로고    scopus 로고
    • The haemoglobin/nitric oxide cycle: Involvement in flooding stress and effects on hormone signalling [Review]
    • Igamberdiev AU, Baron K, Manac'h-Little N, Stoimenova M, Hill RD. The haemoglobin/nitric oxide cycle: Involvement in flooding stress and effects on hormone signalling [Review]. Ann Bot 2005, 96:557-564.
    • (2005) Ann Bot , vol.96 , pp. 557-564
    • Igamberdiev, A.U.1    Baron, K.2    Manac'h-Little, N.3    Stoimenova, M.4    Hill, R.D.5
  • 69
    • 33751110470 scopus 로고    scopus 로고
    • Chloroplasts as a nitric oxide cellular source. Effect of reactive nitrogen species on chloroplastic lipids and proteins.
    • Jasid S, Simontacchi M, Bartoli CG, Puntarulo S. Chloroplasts as a nitric oxide cellular source. Effect of reactive nitrogen species on chloroplastic lipids and proteins. Plant Physiol 2006, 142:1246-1255.
    • (2006) Plant Physiol , vol.142 , pp. 1246-1255
    • Jasid, S.1    Simontacchi, M.2    Bartoli, C.G.3    Puntarulo, S.4
  • 70
    • 25844520458 scopus 로고    scopus 로고
    • Mitochondria in homeostasis of reactive oxygen species in cell, tissues, and organism
    • Jezek P, Hlavata L. Mitochondria in homeostasis of reactive oxygen species in cell, tissues, and organism. Int J Biochem Cell Biol 2005, 37:2478-2503.
    • (2005) Int J Biochem Cell Biol , vol.37 , pp. 2478-2503
    • Jezek, P.1    Hlavata, L.2
  • 71
    • 67650865895 scopus 로고    scopus 로고
    • Intrinsic non-symbiotic and truncated haemoglobins and heterologous Vitreoscilla haemoglobin expression in plants
    • Jokipii-Lukkari S, Frey AD, Kallio PT, Haggman H. Intrinsic non-symbiotic and truncated haemoglobins and heterologous Vitreoscilla haemoglobin expression in plants. J Exp Bot 2009, 60:409-422.
    • (2009) J Exp Bot , vol.60 , pp. 409-422
    • Jokipii-Lukkari, S.1    Frey, A.D.2    Kallio, P.T.3    Haggman, H.4
  • 72
    • 2342575458 scopus 로고    scopus 로고
    • Alternative oxidase in higher plants
    • Juszczuk IM, Rychter AM. Alternative oxidase in higher plants. Acta Biochim Pol 2003, 50:1257-1271.
    • (2003) Acta Biochim Pol , vol.50 , pp. 1257-1271
    • Juszczuk, I.M.1    Rychter, A.M.2
  • 75
    • 33845201164 scopus 로고    scopus 로고
    • On the mechanism of the ascorbic acid-induced release of nitric oxide from n-nitrosated tryptophan derivatives: scavenging of NO by ascorbyl radicals
    • Kytzia A, Korth H, Sustmann R, Groot Hd, Kirsch M. On the mechanism of the ascorbic acid-induced release of nitric oxide from n-nitrosated tryptophan derivatives: scavenging of NO by ascorbyl radicals. Chemistry 2006, 12:8786-8797.
    • (2006) Chemistry , vol.12 , pp. 8786-8797
    • Kytzia, A.1    Korth, H.2    Sustmann, R.3    Groot, H.4    Kirsch, M.5
  • 76
    • 47249145524 scopus 로고    scopus 로고
    • Plant inner membrane anion channel (PIMAC) function in plant mitochondria
    • Laus MN, Soccio M, Trono D, Cattivelli L, Pastore D. Plant inner membrane anion channel (PIMAC) function in plant mitochondria. Plant Cell Physiol 2008, 49:1039-1055.
    • (2008) Plant Cell Physiol , vol.49 , pp. 1039-1055
    • Laus, M.N.1    Soccio, M.2    Trono, D.3    Cattivelli, L.4    Pastore, D.5
  • 78
    • 33845193273 scopus 로고    scopus 로고
    • Suppression of Arabidopsis vesicle-SNARE expression inhibited fusion of H2O2-containing vesicles with tonoplast and increased salt tolerance
    • Leshem Y, Melamed-Book N, Cagnac O, Ronen G, Nishri Y, Solomon M, Cohen G, Levine A. Suppression of Arabidopsis vesicle-SNARE expression inhibited fusion of H2O2-containing vesicles with tonoplast and increased salt tolerance. Proc Natl Acad Sci USA 2006, 103:18008-18013.
    • (2006) Proc Natl Acad Sci USA , vol.103 , pp. 18008-18013
    • Leshem, Y.1    Melamed-Book, N.2    Cagnac, O.3    Ronen, G.4    Nishri, Y.5    Solomon, M.6    Cohen, G.7    Levine, A.8
  • 79
    • 0033529335 scopus 로고    scopus 로고
    • The alternative oxidase lowers mitochondrial reactive oxygen production in plant cells
    • Maxwell DP, Wang Y, McIntosh L. The alternative oxidase lowers mitochondrial reactive oxygen production in plant cells. Proc Natl Acad Sci USA 1999, 96:8271-8276.
    • (1999) Proc Natl Acad Sci USA , vol.96 , pp. 8271-8276
    • Maxwell, D.P.1    Wang, Y.2    McIntosh, L.3
  • 80
    • 50249100204 scopus 로고    scopus 로고
    • Alternative oxidase: an inter-kingdom perspective on the function and regulation of this broadly distributed 'cyanide-resistant' terminal oxidase
    • McDonald AE. Alternative oxidase: an inter-kingdom perspective on the function and regulation of this broadly distributed 'cyanide-resistant' terminal oxidase. Funct Plant Biol 2008, 35:535-552.
    • (2008) Funct Plant Biol , vol.35 , pp. 535-552
    • McDonald, A.E.1
  • 81
    • 84948104508 scopus 로고    scopus 로고
    • The Organization and Control of Plant Mitochondrial Metabolism. Control of Primary Metabolism in Plants
    • McDonald AE, Vanlerberghe GC. The Organization and Control of Plant Mitochondrial Metabolism. Control of Primary Metabolism in Plants. 2007, 290-324. pp
    • (2007) , pp. 290-324
    • McDonald, A.E.1    Vanlerberghe, G.C.2
  • 82
    • 68249124533 scopus 로고    scopus 로고
    • Alternative oxidase in animals: unique characteristics and taxonomic distribution
    • McDonald AE, Vanlerberghe GC, Staples JF. Alternative oxidase in animals: unique characteristics and taxonomic distribution. J Exp Biol 2009, 212:2627-2634.
    • (2009) J Exp Biol , vol.212 , pp. 2627-2634
    • McDonald, A.E.1    Vanlerberghe, G.C.2    Staples, J.F.3
  • 83
  • 84
    • 0037265815 scopus 로고    scopus 로고
    • The alternative oxidase: in vivo regulation and function [Review]
    • Millenaar FF, Lambers H. The alternative oxidase: in vivo regulation and function [Review]. Plant Biol 2003, 5:2-15.
    • (2003) Plant Biol , vol.5 , pp. 2-15
    • Millenaar, F.F.1    Lambers, H.2
  • 85
    • 0035781005 scopus 로고    scopus 로고
    • Plant mitochondria and oxidative stress: electron transport, NADPH turnover, and metabolism of reactive oxygen species
    • Møller IM. Plant mitochondria and oxidative stress: electron transport, NADPH turnover, and metabolism of reactive oxygen species. Annu Rev Plant Physiol Plant Mol Biol 2001, 52:561-591.
    • (2001) Annu Rev Plant Physiol Plant Mol Biol , vol.52 , pp. 561-591
    • Møller, I.M.1
  • 86
    • 34250849635 scopus 로고    scopus 로고
    • Oxidative modifications to cellular components in plants
    • Møller IM, Jensen PE, Hansson A. Oxidative modifications to cellular components in plants. Annu Rev Plant Biol 2007, 58:459-481.
    • (2007) Annu Rev Plant Biol , vol.58 , pp. 459-481
    • Møller, I.M.1    Jensen, P.E.2    Hansson, A.3
  • 87
    • 58249093939 scopus 로고    scopus 로고
    • How mitochondria produce reactive oxygen species
    • Murphy MP. How mitochondria produce reactive oxygen species. Biochem J 2009, 417:1-17.
    • (2009) Biochem J , vol.417 , pp. 1-17
    • Murphy, M.P.1
  • 88
    • 0033967446 scopus 로고    scopus 로고
    • Characterization of two cDNA clones encoding isozymes of the F1F0-ATPase inhibitor protein of rice mitochondria
    • Nakazono M, Imamura T, Tsutsumi N, Sasaki T, Hirai A. Characterization of two cDNA clones encoding isozymes of the F1F0-ATPase inhibitor protein of rice mitochondria. Planta 2000, 210:188-194.
    • (2000) Planta , vol.210 , pp. 188-194
    • Nakazono, M.1    Imamura, T.2    Tsutsumi, N.3    Sasaki, T.4    Hirai, A.5
  • 90
    • 33845667960 scopus 로고    scopus 로고
    • Reactive oxygen species generation and antioxidant systems in plant mitochondria
    • Navrot N, Rouhier N, Gelhaye E, Jacquot J. Reactive oxygen species generation and antioxidant systems in plant mitochondria. Physiol Plant 2007, 129:185-195.
    • (2007) Physiol Plant , vol.129 , pp. 185-195
    • Navrot, N.1    Rouhier, N.2    Gelhaye, E.3    Jacquot, J.4
  • 92
    • 33847613456 scopus 로고    scopus 로고
    • Mitochondrial redox biology and homeostasis in plants
    • Noctor G, De Paepe R, Foyer CH. Mitochondrial redox biology and homeostasis in plants. Trends Plant Sci 2007, 12:125-134.
    • (2007) Trends Plant Sci , vol.12 , pp. 125-134
    • Noctor, G.1    De Paepe, R.2    Foyer, C.H.3
  • 93
    • 37249063139 scopus 로고    scopus 로고
    • Interaction between photosynthesis and respiration in illuminated leaves
    • Noguchi K, Yoshida K. Interaction between photosynthesis and respiration in illuminated leaves. Mitochondrion 2008, 8:87-99.
    • (2008) Mitochondrion , vol.8 , pp. 87-99
    • Noguchi, K.1    Yoshida, K.2
  • 95
    • 67650218317 scopus 로고    scopus 로고
    • Nitric oxide signalling in plants
    • Palavan-Unsal N, Arisan D. Nitric oxide signalling in plants. Bot Rev 2009, 75:203-229.
    • (2009) Bot Rev , vol.75 , pp. 203-229
    • Palavan-Unsal, N.1    Arisan, D.2
  • 97
    • 0037051961 scopus 로고    scopus 로고
    • Reactive oxygen species inhibit the succinate oxidation-supported generation of membrane potential in wheat mitochondria
    • Pastore D, Laus MN, Di Fonzo N, Passarella S. Reactive oxygen species inhibit the succinate oxidation-supported generation of membrane potential in wheat mitochondria. FEBS Lett 2002, 516:15-19.
    • (2002) FEBS Lett , vol.516 , pp. 15-19
    • Pastore, D.1    Laus, M.N.2    Di Fonzo, N.3    Passarella, S.4
  • 98
    • 33846841016 scopus 로고    scopus 로고
    • Possible plant mitochondria involvement in cell adaptation to drought stress: a case study: durum wheat mitochondria
    • Pastore D, Trono D, Laus MN, Di Fonzo N, Flagella Z. Possible plant mitochondria involvement in cell adaptation to drought stress: a case study: durum wheat mitochondria. J Exp Bot 2007, 58:195-210.
    • (2007) J Exp Bot , vol.58 , pp. 195-210
    • Pastore, D.1    Trono, D.2    Laus, M.N.3    Di Fonzo, N.4    Flagella, Z.5
  • 99
    • 27944502603 scopus 로고    scopus 로고
    • Plant uncoupling protein in mitochondria from aged-dehydrated slices of Jerusalem artichoke tubers becomes sensitive to superoxide and to hydrogen peroxide without increase in protein level
    • Paventi G, Pastore D, Bobba A, Pizzuto R, Di Pede S, Passarella S. Plant uncoupling protein in mitochondria from aged-dehydrated slices of Jerusalem artichoke tubers becomes sensitive to superoxide and to hydrogen peroxide without increase in protein level. Biochimie 2006, 88:179-188.
    • (2006) Biochimie , vol.88 , pp. 179-188
    • Paventi, G.1    Pastore, D.2    Bobba, A.3    Pizzuto, R.4    Di Pede, S.5    Passarella, S.6
  • 100
    • 31544434556 scopus 로고    scopus 로고
    • Modulation of nitric oxide bioactivity by plant haemoglobins
    • Perazzolli M, Romero-Puertas MC, Delledonne M. Modulation of nitric oxide bioactivity by plant haemoglobins. J Exp Bot 2006, 57:479-488.
    • (2006) J Exp Bot , vol.57 , pp. 479-488
    • Perazzolli, M.1    Romero-Puertas, M.C.2    Delledonne, M.3
  • 103
    • 0033859612 scopus 로고    scopus 로고
    • Flavonoids as antioxidants
    • Pietta PG. Flavonoids as antioxidants. J Nat Prod 2000, 63:1035-1042.
    • (2000) J Nat Prod , vol.63 , pp. 1035-1042
    • Pietta, P.G.1
  • 104
    • 14844289535 scopus 로고    scopus 로고
    • Nitric oxide emission from tobacco leaves and cell suspensions: rate limiting factors and evidence for the involvement of mitochondrial electron transport
    • Planchet E, Jagadis Gupta K, Sonoda M, Kaiser WM. Nitric oxide emission from tobacco leaves and cell suspensions: rate limiting factors and evidence for the involvement of mitochondrial electron transport. Plant J 2005, 41:732-743.
    • (2005) Plant J , vol.41 , pp. 732-743
    • Planchet, E.1    Jagadis Gupta, K.2    Sonoda, M.3    Kaiser, W.M.4
  • 105
    • 0028906768 scopus 로고
    • Primary structure and properties of the inhibitory protein of the mitochondrial ATPase (H+-ATP synthase) from potato
    • Polgreen KE, Featherstone J, Willis AC, Harris DA. Primary structure and properties of the inhibitory protein of the mitochondrial ATPase (H+-ATP synthase) from potato. Biochim Biophys Acta Bioenerg 1995, 1229:175-180.
    • (1995) Biochim Biophys Acta Bioenerg , vol.1229 , pp. 175-180
    • Polgreen, K.E.1    Featherstone, J.2    Willis, A.C.3    Harris, D.A.4
  • 106
    • 0034973677 scopus 로고    scopus 로고
    • Dissecting the superoxide dismutase-ascorbate-glutathione-pathway in chloroplasts by metabolic modeling. computer simulations as a step towards flux analysis.
    • Polle A. Dissecting the superoxide dismutase-ascorbate-glutathione-pathway in chloroplasts by metabolic modeling. computer simulations as a step towards flux analysis. Plant Physiol 2001, 126:445-462.
    • (2001) Plant Physiol , vol.126 , pp. 445-462
    • Polle, A.1
  • 108
    • 53549114759 scopus 로고    scopus 로고
    • Nitric oxide signaling in plant responses to abiotic stresses
    • Qiao W, Fan L. Nitric oxide signaling in plant responses to abiotic stresses. J Integr Plant Biol 2008, 50:1238-1246.
    • (2008) J Integr Plant Biol , vol.50 , pp. 1238-1246
    • Qiao, W.1    Fan, L.2
  • 109
    • 0034306267 scopus 로고    scopus 로고
    • Mitochondria, oxygen free radicals, disease and ageing
    • Raha S, Robinson BH. Mitochondria, oxygen free radicals, disease and ageing. Trends Biochem Sci 2000, 25:502-508.
    • (2000) Trends Biochem Sci , vol.25 , pp. 502-508
    • Raha, S.1    Robinson, B.H.2
  • 110
  • 111
    • 37249058385 scopus 로고    scopus 로고
    • The multiplicity of dehydrogenases in the electron transport chain of plant mitochondria
    • Rasmusson AG, Geisler DA, Møller IM. The multiplicity of dehydrogenases in the electron transport chain of plant mitochondria. Mitochondrion 2008, 8:47-60.
    • (2008) Mitochondrion , vol.8 , pp. 47-60
    • Rasmusson, A.G.1    Geisler, D.A.2    Møller, I.M.3
  • 112
    • 70450267629 scopus 로고    scopus 로고
    • Alternative oxidase: a defence against metabolic fluctuations?
    • Rasmusson AG, Fernie AR, van Dongen JT. Alternative oxidase: a defence against metabolic fluctuations? Physiol Plant 2009, 137:371-382.
    • (2009) Physiol Plant , vol.137 , pp. 371-382
    • Rasmusson, A.G.1    Fernie, A.R.2    van Dongen, J.T.3
  • 113
    • 33745676828 scopus 로고    scopus 로고
    • Mitochondrial reactive oxygen species. Contribution to oxidative stress and interorganellar signaling.
    • Rhoads DM, Umbach AL, Subbaiah CC, Siedow JN. Mitochondrial reactive oxygen species. Contribution to oxidative stress and interorganellar signaling. Plant Physiol 2006, 141:357-366.
    • (2006) Plant Physiol , vol.141 , pp. 357-366
    • Rhoads, D.M.1    Umbach, A.L.2    Subbaiah, C.C.3    Siedow, J.N.4
  • 114
    • 55249125700 scopus 로고    scopus 로고
    • Redox proteomics: basic principles and future perspectives for the detection of protein oxidation in plants
    • Rinalducci S, Murgiano L, Zolla L. Redox proteomics: basic principles and future perspectives for the detection of protein oxidation in plants. J Exp Bot 2008, 59:3781-3801.
    • (2008) J Exp Bot , vol.59 , pp. 3781-3801
    • Rinalducci, S.1    Murgiano, L.2    Zolla, L.3
  • 115
    • 0036006867 scopus 로고    scopus 로고
    • Regulation of nitric oxide (NO) production by plant nitrate reductase in vivo and in vitro
    • Rockel P, Strube F, Rockel A, Wildt J, Kaiser WM. Regulation of nitric oxide (NO) production by plant nitrate reductase in vivo and in vitro. J Exp Bot 2002, 53:103-110.
    • (2002) J Exp Bot , vol.53 , pp. 103-110
    • Rockel, P.1    Strube, F.2    Rockel, A.3    Wildt, J.4    Kaiser, W.M.5
  • 116
    • 0026319258 scopus 로고
    • Regulation of the mitochondrial ATPasein situ in cardiac muscle: role of the inhibitor subunit
    • Rouslin W. Regulation of the mitochondrial ATPasein situ in cardiac muscle: role of the inhibitor subunit. J Bioenerg Biomembr 1991, 23:873-888.
    • (1991) J Bioenerg Biomembr , vol.23 , pp. 873-888
    • Rouslin, W.1
  • 117
    • 0026100891 scopus 로고
    • Succinate-driven reverse electron transport in the respiratory chain of plant mitochondria. The effects of rotenone and adenylates in relation to malate and oxaloacetate metabolism.
    • Rustin P, Lance C. Succinate-driven reverse electron transport in the respiratory chain of plant mitochondria. The effects of rotenone and adenylates in relation to malate and oxaloacetate metabolism. Biochem J 1991, 274:249-255.
    • (1991) Biochem J , vol.274 , pp. 249-255
    • Rustin, P.1    Lance, C.2
  • 118
    • 46449087496 scopus 로고    scopus 로고
    • Fatty acids as modulators of the cellular production of reactive oxygen species
    • Schönfeld P, Wojtczak L. Fatty acids as modulators of the cellular production of reactive oxygen species. Free Rad Biol Med 2008, 45:231-241.
    • (2008) Free Rad Biol Med , vol.45 , pp. 231-241
    • Schönfeld, P.1    Wojtczak, L.2
  • 119
    • 65449157678 scopus 로고    scopus 로고
    • Monitoring the in vivo redox state of plant mitochondria: effect of respiratory inhibitors, abiotic stress and assessment of recovery from oxidative challenge
    • Schwarzländer M, Fricker MD, Sweetlove LJ. Monitoring the in vivo redox state of plant mitochondria: effect of respiratory inhibitors, abiotic stress and assessment of recovery from oxidative challenge. Biochim Biophys Acta Bioenerg 2009, 1787:468-475.
    • (2009) Biochim Biophys Acta Bioenerg , vol.1787 , pp. 468-475
    • Schwarzländer, M.1    Fricker, M.D.2    Sweetlove, L.J.3
  • 120
    • 0029780524 scopus 로고    scopus 로고
    • Mechanism of nitric oxide release from S-nitrosothiols
    • Singh RJ, Hogg N, Joseph J, Kalyanaraman B. Mechanism of nitric oxide release from S-nitrosothiols. J Biol Chem 1996, 271:18596-18603.
    • (1996) J Biol Chem , vol.271 , pp. 18596-18603
    • Singh, R.J.1    Hogg, N.2    Joseph, J.3    Kalyanaraman, B.4
  • 121
    • 0032564864 scopus 로고    scopus 로고
    • Uncoupling: new approaches to an old problem of bioenergetics
    • Skulachev VP. Uncoupling: new approaches to an old problem of bioenergetics. Biochim Biophys Acta Bioenerg 1998, 1363:100-124.
    • (1998) Biochim Biophys Acta Bioenerg , vol.1363 , pp. 100-124
    • Skulachev, V.P.1
  • 122
    • 0032555379 scopus 로고    scopus 로고
    • Free fatty acids regulate the uncoupling protein and alternative oxidase activities in plant mitochondria
    • Sluse FE, Almeida AM, Jarmuszkiewicz W, Vercesi AE. Free fatty acids regulate the uncoupling protein and alternative oxidase activities in plant mitochondria. FEBS Lett 1998, 433:237-240.
    • (1998) FEBS Lett , vol.433 , pp. 237-240
    • Sluse, F.E.1    Almeida, A.M.2    Jarmuszkiewicz, W.3    Vercesi, A.E.4
  • 123
    • 33645237112 scopus 로고    scopus 로고
    • Formation and possible roles of nitric oxide in plant roots
    • Stohr C, Stremlau S. Formation and possible roles of nitric oxide in plant roots. J Exp Bot 2006, 57:463-470.
    • (2006) J Exp Bot , vol.57 , pp. 463-470
    • Stohr, C.1    Stremlau, S.2
  • 124
    • 0035037361 scopus 로고    scopus 로고
    • A plasma membrane-bound enzyme of tobacco roots catalyses the formation of nitric oxide from nitrite
    • Stohr C, Strube F, Marx G, Ullrich WR, Rockel P. A plasma membrane-bound enzyme of tobacco roots catalyses the formation of nitric oxide from nitrite. Planta 2001, 212:835-841.
    • (2001) Planta , vol.212 , pp. 835-841
    • Stohr, C.1    Strube, F.2    Marx, G.3    Ullrich, W.R.4    Rockel, P.5
  • 125
    • 34249990700 scopus 로고    scopus 로고
    • Nitrite-driven anaerobic ATP synthesis in barley and rice root mitochondria
    • Stoimenova M, Igamberdiev AU, Gupta K, Hill RD. Nitrite-driven anaerobic ATP synthesis in barley and rice root mitochondria. Planta 2007, 226:465-474.
    • (2007) Planta , vol.226 , pp. 465-474
    • Stoimenova, M.1    Igamberdiev, A.U.2    Gupta, K.3    Hill, R.D.4
  • 127
    • 57749113172 scopus 로고    scopus 로고
    • The structure of YqeH: An AtNOS1/AtNOA1 ortholog that couples GTP hydrolysis to molecular recognition
    • Sudhamsu J, Lee GI, Klessig DF, Crane BR. The structure of YqeH: An AtNOS1/AtNOA1 ortholog that couples GTP hydrolysis to molecular recognition. J Biol Chem 2008, 283:32968-32976.
    • (2008) J Biol Chem , vol.283 , pp. 32968-32976
    • Sudhamsu, J.1    Lee, G.I.2    Klessig, D.F.3    Crane, B.R.4
  • 128
  • 130
    • 33845682100 scopus 로고    scopus 로고
    • Dehydroascorbate reduction in plant mitochondria is coupled to the respiratory electron transfer chain
    • Szarka A, Horemans N, Kovács Z, Gróf P, Mayer M, Bánhegyi G. Dehydroascorbate reduction in plant mitochondria is coupled to the respiratory electron transfer chain. Physiol Plant 2007, 129:225-232.
    • (2007) Physiol Plant , vol.129 , pp. 225-232
    • Szarka, A.1    Horemans, N.2    Kovács, Z.3    Gróf, P.4    Mayer, M.5    Bánhegyi, G.6
  • 131
    • 60649095810 scopus 로고    scopus 로고
    • K+ transport in plants: physiology and molecular biology
    • Szczerba MW, Britto DT, Kronzucker HJ. K+ transport in plants: physiology and molecular biology. J Plant Physiol 2009, 166:447-466.
    • (2009) J Plant Physiol , vol.166 , pp. 447-466
    • Szczerba, M.W.1    Britto, D.T.2    Kronzucker, H.J.3
  • 133
    • 57749091580 scopus 로고    scopus 로고
    • The mitochondrial connection: arginine degradation versus arginine conversion to nitric oxide
    • Tovar-Mendez A, Todd CD, Polacco JC. The mitochondrial connection: arginine degradation versus arginine conversion to nitric oxide. Plant Sign Behav 2008, 3:1106-1108.
    • (2008) Plant Sign Behav , vol.3 , pp. 1106-1108
    • Tovar-Mendez, A.1    Todd, C.D.2    Polacco, J.C.3
  • 135
    • 0142150051 scopus 로고    scopus 로고
    • Mitochondrial formation of reactive oxygen species
    • Turrens JF. Mitochondrial formation of reactive oxygen species. J Physiol (Lond) 2003, 552:335-344.
    • (2003) J Physiol (Lond) , vol.552 , pp. 335-344
    • Turrens, J.F.1
  • 136
    • 0019083215 scopus 로고
    • Generation of superoxide anion by the NADH dehydrogenase of bovine heart mitochondria
    • Turrens JF, Boveris A. Generation of superoxide anion by the NADH dehydrogenase of bovine heart mitochondria. Biochem J 1980, 421-427.
    • (1980) Biochem J , pp. 421-427
    • Turrens, J.F.1    Boveris, A.2
  • 137
    • 33645011305 scopus 로고    scopus 로고
    • Characterization of transformed Arabidopsis with altered alternative oxidase levels and analysis of effects on reactive oxygen species in tissue
    • Umbach AL, Fiorani F, Siedow JN. Characterization of transformed Arabidopsis with altered alternative oxidase levels and analysis of effects on reactive oxygen species in tissue. Plant Physiol 2005, 139:1806-1820.
    • (2005) Plant Physiol , vol.139 , pp. 1806-1820
    • Umbach, A.L.1    Fiorani, F.2    Siedow, J.N.3
  • 139
    • 2642557177 scopus 로고    scopus 로고
    • Endogenous superoxide production and the nitrite/nitrate ratio control the concentration of bioavailable free nitric oxide in leaves
    • Vanin AF, Svistunenko DA, Mikoyan VD, Serezhenkov VA, Fryer MJ, Baker NR, Cooper CE. Endogenous superoxide production and the nitrite/nitrate ratio control the concentration of bioavailable free nitric oxide in leaves. J Biol Chem 2004, 279:24100-24107.
    • (2004) J Biol Chem , vol.279 , pp. 24100-24107
    • Vanin, A.F.1    Svistunenko, D.A.2    Mikoyan, V.D.3    Serezhenkov, V.A.4    Fryer, M.J.5    Baker, N.R.6    Cooper, C.E.7
  • 143
    • 0032171420 scopus 로고    scopus 로고
    • Chemical biology of nitric oxide: insights into regulatory, cytotoxic, and cytoprotective mechanisms of nitric oxide
    • Wink DA, Mitchell JB. Chemical biology of nitric oxide: insights into regulatory, cytotoxic, and cytoprotective mechanisms of nitric oxide. Free Rad Biol Med 1998, 25:434-456.
    • (1998) Free Rad Biol Med , vol.25 , pp. 434-456
    • Wink, D.A.1    Mitchell, J.B.2
  • 144
    • 68149162554 scopus 로고    scopus 로고
    • Nitrite reduction and superoxide-dependent nitric oxide degradation by Arabidopsis mitochondria: Influence of external NAD(P)H dehydrogenases and alternative oxidase in the control of nitric oxide levels
    • Wulff A, Oliveira HC, Saviani EE, Salgado I. Nitrite reduction and superoxide-dependent nitric oxide degradation by Arabidopsis mitochondria: Influence of external NAD(P)H dehydrogenases and alternative oxidase in the control of nitric oxide levels. Nitric Oxide 2009, 21:132-139.
    • (2009) Nitric Oxide , vol.21 , pp. 132-139
    • Wulff, A.1    Oliveira, H.C.2    Saviani, E.E.3    Salgado, I.4
  • 145
    • 0034968202 scopus 로고    scopus 로고
    • Inhibitory effects of nitric oxide on oxidative phosphorylation in plant mitochondria
    • Yamasaki H, Shimoji H, Ohshiro Y, Sakihama Y. Inhibitory effects of nitric oxide on oxidative phosphorylation in plant mitochondria. Nitric Oxide 2001, 5:261-270.
    • (2001) Nitric Oxide , vol.5 , pp. 261-270
    • Yamasaki, H.1    Shimoji, H.2    Ohshiro, Y.3    Sakihama, Y.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.