-
2
-
-
84881660442
-
Exposure to low dose ionising radiation: Molecular and clinical consequences
-
[2] Martin LM, Marples B, Lynch TH, Hollywood D, Marignol L. Exposure to low dose ionising radiation: molecular and clinical consequences. Cancer Lett. 2013; 338: 209-218.
-
(2013)
Cancer Lett
, vol.338
, pp. 209-218
-
-
Martin, L.M.1
Marples, B.2
Lynch, T.H.3
Hollywood, D.4
Marignol, L.5
-
3
-
-
33847608750
-
Radioadaptive response revisited
-
[3] Tapio S, Jacob V. Radioadaptive response revisited. Radiat Environ Biophys. 2007; 46: 1-12.
-
(2007)
Radiat Environ Biophys
, vol.46
, pp. 1-12
-
-
Tapio, S.1
Jacob, V.2
-
4
-
-
84923072117
-
Molecular mechanisms of low dose ionizing radiation induced hormesis, adaptive responses, radioresistance, bystander effects, and genomic instability
-
[4] Tang FR, Loke WK. Molecular mechanisms of low dose ionizing radiation induced hormesis, adaptive responses, radioresistance, bystander effects, and genomic instability. Int J Radiat Biol. 2015; 91: 13-27.
-
(2015)
Int J Radiat Biol
, vol.91
, pp. 13-27
-
-
Tang, F.R.1
Loke, W.K.2
-
5
-
-
36248973110
-
NF-kappa B-mediated adaptive resistance to ionizing radiation
-
[5] Ahmed KM, Li JJ. NF-kappa B-mediated adaptive resistance to ionizing radiation. Free Radic Biol Med. 2008; 44: 1-13.
-
(2008)
Free Radic Biol Med
, vol.44
, pp. 1-13
-
-
Ahmed, K.M.1
Li, J.J.2
-
6
-
-
78649400419
-
Low-dose pretreatment for radiation therapy
-
[6] Blankenbecler R. Low-dose pretreatment for radiation therapy. Dose Response. 2010; 8: 534-542.
-
(2010)
Dose Response
, vol.8
, pp. 534-542
-
-
Blankenbecler, R.1
-
7
-
-
84898052710
-
Low-dose radiation exposure induces a HIF-1-mediated adaptive and protective metabolic response
-
[7] Lall R, Ganapathy S, Yang M, Xiao S, Xu T, Su H, Shadfan M, Asara JM, Ha CS, Ben-Sahra I, Manning BD, Little JB, Yuan ZM. Low-dose radiation exposure induces a HIF-1-mediated adaptive and protective metabolic response. Cell Death Differ. 2014; 21: 836-844.
-
(2014)
Cell Death Differ
, vol.21
, pp. 836-844
-
-
Lall, R.1
Ganapathy, S.2
Yang, M.3
Xiao, S.4
Xu, T.5
Su, H.6
Shadfan, M.7
Asara, J.M.8
Ha, C.S.9
Ben-Sahra, I.10
Manning, B.D.11
Little, J.B.12
Yuan, Z.M.13
-
8
-
-
0036964814
-
Low-dose radiation-induced adaptive response in the murine system
-
[8] Seong J, Kim SH, Pyo HR, Chung EJ, Suh CO. Low-dose radiation-induced adaptive response in the murine system. Ann N Y Acad Sci. 2002; 973: 255-257.
-
(2002)
Ann N Y Acad Sci
, vol.973
, pp. 255-257
-
-
Seong, J.1
Kim, S.H.2
Pyo, H.R.3
Chung, E.J.4
Suh, C.O.5
-
9
-
-
1242319531
-
STAT1 is overexpressed in tumors selected for radioresistance and confers protection from radiation in transduced sensitive cells
-
[9] Khodarev NN, Beckett M, Labay E, Darga T, Roizman B, Weichselbaum RR. STAT1 is overexpressed in tumors selected for radioresistance and confers protection from radiation in transduced sensitive cells. Proc Natl Acad Sci USA. 2004; 101: 1714-1719.
-
(2004)
Proc Natl Acad Sci USA
, vol.101
, pp. 1714-1719
-
-
Khodarev, N.N.1
Beckett, M.2
Labay, E.3
Darga, T.4
Roizman, B.5
Weichselbaum, R.R.6
-
10
-
-
49649098837
-
Induction of cytogenetic adaptive response in spermatogonia and spermatocytes by pre-exposure of mouse testis to low-dose (12)C(6+) ions
-
[10] Zhang H, Zhao W, Wang Y, Li N, Wu Z, Liu Y, Chen J, Cai Y. Induction of cytogenetic adaptive response in spermatogonia and spermatocytes by pre-exposure of mouse testis to low-dose (12)C(6+) ions. Mutat Res. 2008; 653: 109-112.
-
(2008)
Mutat Res
, vol.653
, pp. 109-112
-
-
Zhang, H.1
Zhao, W.2
Wang, Y.3
Li, N.4
Wu, Z.5
Liu, Y.6
Chen, J.7
Cai, Y.8
-
11
-
-
67349234430
-
Coactivation of ATM/ERK/NF-kappaB in the low-dose radiation-induced radioadaptive response in human skin keratinocytes
-
[11] Ahmed KM, Nantajit D, Fan M, Murley JS, Grdina DJ, Li JJ. Coactivation of ATM/ERK/NF-kappaB in the low-dose radiation-induced radioadaptive response in human skin keratinocytes. Free Radic Biol Med. 2009; 46: 1543-1550.
-
(2009)
Free Radic Biol Med
, vol.46
, pp. 1543-1550
-
-
Ahmed, K.M.1
Nantajit, D.2
Fan, M.3
Murley, J.S.4
Grdina, D.J.5
Li, J.J.6
-
13
-
-
0036015519
-
Exposure to low-level chemicals and ionizing radiation: Reactive oxygen species and cellular pathways
-
[13] Lehnert BE, Iyer R. Exposure to low-level chemicals and ionizing radiation: reactive oxygen species and cellular pathways. Hum Exp Toxicol. 2002; 21: 65-69.
-
(2002)
Hum Exp Toxicol
, vol.21
, pp. 65-69
-
-
Lehnert, B.E.1
Iyer, R.2
-
14
-
-
13844266168
-
Oxidative stress, radiation-adaptive responses, and aging
-
[14] Miura Y. Oxidative stress, radiation-adaptive responses, and aging. J Radiat Res. 2004; 45: 357-372.
-
(2004)
J Radiat Res
, vol.45
, pp. 357-372
-
-
Miura, Y.1
-
15
-
-
84867385052
-
Manganese superoxide dismutase interacts with a large scale of cellular and mitochondrial proteins in low-dose radiation-induced adaptive radioprotection
-
[15] Eldridge A, Fan M, Woloschak G, Grdina DJ, Chromy BA, Li JJ. Manganese superoxide dismutase interacts with a large scale of cellular and mitochondrial proteins in low-dose radiation-induced adaptive radioprotection. Free Radic Biol Med. 2012; 53: 1838-1847.
-
(2012)
Free Radic Biol Med
, vol.53
, pp. 1838-1847
-
-
Eldridge, A.1
Fan, M.2
Woloschak, G.3
Grdina, D.J.4
Chromy, B.A.5
Li, J.J.6
-
16
-
-
0033800922
-
Regulation of genes encoding NAD(P)H:Quinone oxidoreductases
-
[16] Jaiswal AK. Regulation of genes encoding NAD(P)H:quinone oxidoreductases. Free Radic Biol Med. 2000; 29: 254-262.
-
(2000)
Free Radic Biol Med
, vol.29
, pp. 254-262
-
-
Jaiswal, A.K.1
-
17
-
-
14044254798
-
Molecular mechanisms activating the Nrf2-Keap1 pathway of antioxidant gene regulation
-
[17] Kobayashi M, Yamamoto M. Molecular mechanisms activating the Nrf2-Keap1 pathway of antioxidant gene regulation. Antioxid Redox Signal. 2005; 7: 385-394.
-
(2005)
Antioxid Redox Signal
, vol.7
, pp. 385-394
-
-
Kobayashi, M.1
Yamamoto, M.2
-
18
-
-
28844471992
-
Molecular mechanisms involved in enhancing HO-1 expression: De-repression by heme and activation by Nrf2, the "one-two" punch
-
[18] Srisook K, Kim C, Cha YN. Molecular mechanisms involved in enhancing HO-1 expression: de-repression by heme and activation by Nrf2, the "one-two" punch. Antioxid Redox Signal. 2005; 7: 1674-1687.
-
(2005)
Antioxid Redox Signal
, vol.7
, pp. 1674-1687
-
-
Srisook, K.1
Kim, C.2
Cha, Y.N.3
-
19
-
-
84867034260
-
Role of Nrf2 in oxidative stress and toxicity
-
[19] Ma Q. Role of Nrf2 in oxidative stress and toxicity. Annu Rev Pharmacol Toxicol. 2013; 53: 401-426.
-
(2013)
Annu Rev Pharmacol Toxicol
, vol.53
, pp. 401-426
-
-
Ma, Q.1
-
20
-
-
84864348569
-
NRF2 and cancer: The good, the bad and the importance of context
-
[20] Sporn MB, Liby KT. NRF2 and cancer: the good, the bad and the importance of context. Nat Rev Cancer. 2012; 12: 564-571.
-
(2012)
Nat Rev Cancer
, vol.12
, pp. 564-571
-
-
Sporn, M.B.1
Liby, K.T.2
-
21
-
-
84885944468
-
The emerging role of the Nrf2-Keap1 signaling pathway in cancer
-
[21] Jaramillo MC, Zhang DD. The emerging role of the Nrf2-Keap1 signaling pathway in cancer. Genes Dev. 2013; 27: 2179-2191.
-
(2013)
Genes Dev
, vol.27
, pp. 2179-2191
-
-
Jaramillo, M.C.1
Zhang, D.D.2
-
22
-
-
84873469216
-
The transcription factor NF-E2-related factor 2 (Nrf2): A protooncogene?
-
[22] Shelton P, Jaiswal AK. The transcription factor NF-E2-related factor 2 (Nrf2): a protooncogene?. FASEB J. 2013; 27: 414-423.
-
(2013)
FASEB J
, vol.27
, pp. 414-423
-
-
Shelton, P.1
Jaiswal, A.K.2
-
23
-
-
84893836947
-
NRF2-mediated Notch pathway activation enhances hematopoietic reconstitution following myelosuppressive radiation
-
[23] Kim JH, Thimmulappa RK, Kumar V, Cui W, Kumar S, Kombairaju P, Zhang H, Margolick J, Matsui W, Macvittie T, Malhotra SV, Biswal S. NRF2-mediated Notch pathway activation enhances hematopoietic reconstitution following myelosuppressive radiation. J Clin Invest. 2014; 124: 730-741.
-
(2014)
J Clin Invest
, vol.124
, pp. 730-741
-
-
Kim, J.H.1
Thimmulappa, R.K.2
Kumar, V.3
Cui, W.4
Kumar, S.5
Kombairaju, P.6
Zhang, H.7
Margolick, J.8
Matsui, W.9
Macvittie, T.10
Malhotra, S.V.11
Biswal, S.12
-
24
-
-
84880638935
-
Low-dose radiation activates Nrf1/2 through reactive species and the Ca(2+)/ERK1/2 signaling pathway in human skin fibroblast cells
-
[24] Lee EK, Kim JA, Park SJ, Kim JK, Heo K, Yang KM, Son TG. Low-dose radiation activates Nrf1/2 through reactive species and the Ca(2+)/ERK1/2 signaling pathway in human skin fibroblast cells. BMB Rep. 2013; 46: 258-263.
-
(2013)
BMB Rep
, vol.46
, pp. 258-263
-
-
Lee, E.K.1
Kim, J.A.2
Park, S.J.3
Kim, J.K.4
Heo, K.5
Yang, K.M.6
Son, T.G.7
-
25
-
-
78449270816
-
Ionizing radiation activates the Nrf2 antioxidant response
-
[25] McDonald JT, Kim K, Norris AJ, Vlashi E, Phillips TM, Lagadec C, Della Donna L, Ratikan J, Szelag H, Hlatky L, McBride WH. Ionizing radiation activates the Nrf2 antioxidant response. Cancer Res. 2010; 70: 8886-8895.
-
(2010)
Cancer Res
, vol.70
, pp. 8886-8895
-
-
McDonald, J.T.1
Kim, K.2
Norris, A.J.3
Vlashi, E.4
Phillips, T.M.5
Lagadec, C.6
Della Donna, L.7
Ratikan, J.8
Szelag, H.9
Hlatky, L.10
McBride, W.H.11
-
26
-
-
77953977999
-
Low-dose gamma-ray irradiation induces translocation of Nrf2 into nuclear in mouse macrophage RAW264.7 cells
-
[26] Tsukimoto M, Tamaishi N, Homma T, Kojima S. Low-dose gamma-ray irradiation induces translocation of Nrf2 into nuclear in mouse macrophage RAW264.7 cells. J Radiat Res. 2010; 51: 349-353.
-
(2010)
J Radiat Res
, vol.51
, pp. 349-353
-
-
Tsukimoto, M.1
Tamaishi, N.2
Homma, T.3
Kojima, S.4
-
27
-
-
84897489983
-
Repeated Nrf2 stimulation using sulforaphane protects fibroblasts from ionizing radiation
-
[27] Mathew ST, Bergström P, Hammarsten O. Repeated Nrf2 stimulation using sulforaphane protects fibroblasts from ionizing radiation. Toxicol Appl Pharmacol. 2014; 276: 188-194.
-
(2014)
Toxicol Appl Pharmacol
, vol.276
, pp. 188-194
-
-
Mathew, S.T.1
Bergström, P.2
Hammarsten, O.3
-
28
-
-
79957963355
-
Pro-oxidants ameliorate radiation-induced apoptosis through activation of the calcium-ERK1/2-Nrf2 pathway
-
[28] Khan NM, Sandur SK, Checker R, Sharma D, Poduval TB, Sainis KB. Pro-oxidants ameliorate radiation-induced apoptosis through activation of the calcium-ERK1/2-Nrf2 pathway. Free Radic Biol Med. 2011; 51: 115-128.
-
(2011)
Free Radic Biol Med
, vol.51
, pp. 115-128
-
-
Khan, N.M.1
Sandur, S.K.2
Checker, R.3
Sharma, D.4
Poduval, T.B.5
Sainis, K.B.6
-
29
-
-
0014949207
-
Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4
-
[29] Laemmli UK. Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4. Nature. 1970; 227: 680-685.
-
(1970)
Nature
, vol.227
, pp. 680-685
-
-
Laemmli, U.K.1
-
30
-
-
84873057913
-
Understanding the adaptive response in vertebrates: The phenomenon of ease and ease response during post-stress acclimation
-
[30] Subhash Peter MC. Understanding the adaptive response in vertebrates: the phenomenon of ease and ease response during post-stress acclimation. Gen Comp Endocrinol. 2013; 181: 59-64.
-
(2013)
Gen Comp Endocrinol
, vol.181
, pp. 59-64
-
-
Subhash Peter, M.C.1
-
31
-
-
0141757460
-
MAPK pathways in radiation responses
-
[31] Dent P, Yacoub A, Fisher PB, Hagan MP, Grant S. MAPK pathways in radiation responses. Oncogene. 2003; 22: 5885-5896.
-
(2003)
Oncogene
, vol.22
, pp. 5885-5896
-
-
Dent, P.1
Yacoub, A.2
Fisher, P.B.3
Hagan, M.P.4
Grant, S.5
-
32
-
-
0034769605
-
MAPK dependence of DNA damage repair: Ionizing radiation and the induction of expression of the DNA repair genes XRCC1 and ERCC1 in DU145 human prostate carcinoma cells in a MEK1/2 dependent fashion
-
[32] Yacoub A, Park JS, Qiao L, Dent P, Hagan MP. MAPK dependence of DNA damage repair: ionizing radiation and the induction of expression of the DNA repair genes XRCC1 and ERCC1 in DU145 human prostate carcinoma cells in a MEK1/2 dependent fashion. Int J Radiat Biol. 2001; 77: 1067-1078.
-
(2001)
Int J Radiat Biol
, vol.77
, pp. 1067-1078
-
-
Yacoub, A.1
Park, J.S.2
Qiao, L.3
Dent, P.4
Hagan, M.P.5
-
33
-
-
82255169231
-
Extracellular signal-regulated kinases modulate DNA damage response - a contributing factor to using MEK inhibitors in cancer therapy
-
[33] Wei F, Yan J, Tang D. Extracellular signal-regulated kinases modulate DNA damage response - a contributing factor to using MEK inhibitors in cancer therapy. Curr Med Chem. 2011; 18: 5476-5482.
-
(2011)
Curr Med Chem
, vol.18
, pp. 5476-5482
-
-
Wei, F.1
Yan, J.2
Tang, D.3
-
34
-
-
46949099638
-
Nrf2 enhances resistance of cancer cells to chemotherapeutic drugs, the dark side of Nrf2
-
[34] Wang XJ, Sun Z, Villeneuve NF, Zhang S, Zhao F, Li Y, Chen W, Yi X, Zheng W, Wondrak GT, Wong PK, Zhang DD. Nrf2 enhances resistance of cancer cells to chemotherapeutic drugs, the dark side of Nrf2. Carcinogenesis. 2008; 29: 1235-1243.
-
(2008)
Carcinogenesis
, vol.29
, pp. 1235-1243
-
-
Wang, X.J.1
Sun, Z.2
Villeneuve, N.F.3
Zhang, S.4
Zhao, F.5
Li, Y.6
Chen, W.7
Yi, X.8
Zheng, W.9
Wondrak, G.T.10
Wong, P.K.11
Zhang, D.D.12
-
35
-
-
84871824970
-
Low-dose radiation activates Akt and Nrf2 in the kidney of diabetic mice: a potential mechanism to prevent diabetic nephropathy
-
[35] Xing X, Zhang C, Shao M, Tong Q, Zhang G, Li C, Cheng J, Jin S, Ma J, Wang G, Li X, Cai L. Low-dose radiation activates Akt and Nrf2 in the kidney of diabetic mice: a potential mechanism to prevent diabetic nephropathy. Oxid Med Cell Longev. 2012; doi: 10.1155/2012/291087
-
(2012)
Oxid Med Cell Longev
-
-
Xing, X.1
Zhang, C.2
Shao, M.3
Tong, Q.4
Zhang, G.5
Li, C.6
Cheng, J.7
Jin, S.8
Ma, J.9
Wang, G.10
Li, X.11
Cai, L.12
-
36
-
-
0028300334
-
Heme oxygenase 1 mediates an adaptive response to oxidative stress in human skin fibroblasts
-
[36] Vile GF, Basu-Modak S, Waltner C, Tyrrell RM. Heme oxygenase 1 mediates an adaptive response to oxidative stress in human skin fibroblasts. Proc Natl Acad Sci USA. 1994; 91: 2607-2610.
-
(1994)
Proc Natl Acad Sci USA
, vol.91
, pp. 2607-2610
-
-
Vile, G.F.1
Basu-Modak, S.2
Waltner, C.3
Tyrrell, R.M.4
-
37
-
-
80052300274
-
Heme oxygenase-1 and carbon monoxide modulate DNA repair through ataxia-telangiectasia mutated (ATM) protein
-
[37] Otterbein LE, Hedblom A, Harris C, Csizmadia E, Gallo D, Wegiel B. Heme oxygenase-1 and carbon monoxide modulate DNA repair through ataxia-telangiectasia mutated (ATM) protein. Proc Natl Acad Sci USA. 2011; 108: 14491-14496.
-
(2011)
Proc Natl Acad Sci USA
, vol.108
, pp. 14491-14496
-
-
Otterbein, L.E.1
Hedblom, A.2
Harris, C.3
Csizmadia, E.4
Gallo, D.5
Wegiel, B.6
-
38
-
-
84867182336
-
Autophagy and ionizing radiation in tumors: The "survive or not survive" dilemma
-
[38] Palumbo S, Comincini S. Autophagy and ionizing radiation in tumors: the "survive or not survive" dilemma. J Cell Physiol. 2013; 228: 1-8.
-
(2013)
J Cell Physiol
, vol.228
, pp. 1-8
-
-
Palumbo, S.1
Comincini, S.2
-
39
-
-
77649265091
-
The selective autophagy substrate p62 activates the stress responsive transcription factor Nrf2 through inactivation of Keap1
-
[39] Komatsu M, Kurokawa H, Waguri S, Taguchi K, Kobayashi A, Ichimura Y, Sou YS, Ueno I, Sakamoto A, Tong KI, Kim M, Nishito Y, Iemura S, Natsume T, Ueno T, Kominami E, Motohashi H, Tanaka K, Yamamoto M. The selective autophagy substrate p62 activates the stress responsive transcription factor Nrf2 through inactivation of Keap1. Nat Cell Biol. 2010; 12: 213-223.
-
(2010)
Nat Cell Biol
, vol.12
, pp. 213-223
-
-
Komatsu, M.1
Kurokawa, H.2
Waguri, S.3
Taguchi, K.4
Kobayashi, A.5
Ichimura, Y.6
Sou, Y.S.7
Ueno, I.8
Sakamoto, A.9
Tong, K.I.10
Kim, M.11
Nishito, Y.12
Iemura, S.13
Natsume, T.14
Ueno, T.15
Kominami, E.16
Motohashi, H.17
Tanaka, K.18
Yamamoto, M.19
-
40
-
-
84865287281
-
Keap1 degradation by autophagy for the maintenance of redox homeostasis
-
[40] Taguchi K, Fujikawa N, Komatsu M, Ishii T, Unno M, Akaike T, Motohashi H, Yamamoto M. Keap1 degradation by autophagy for the maintenance of redox homeostasis. Proc Natl Acad Sci USA. 2012; 109: 13561-13566.
-
(2012)
Proc Natl Acad Sci USA
, vol.109
, pp. 13561-13566
-
-
Taguchi, K.1
Fujikawa, N.2
Komatsu, M.3
Ishii, T.4
Unno, M.5
Akaike, T.6
Motohashi, H.7
Yamamoto, M.8
-
41
-
-
79960060305
-
Oncogene-induced Nrf2 transcription promotes ROS detoxification and tumorigenesis
-
[41] DeNicola GM, Karreth FA, Humpton TJ, Gopinathan A, Wei C, Frese K, Mangal D, Yu KH, Yeo CJ, Calhoun ES, Scrimieri F, Winter JM, Hruban RH, Iacobuzio-Donahue C, Kern SE, Blair IA, Tuveson DA. Oncogene-induced Nrf2 transcription promotes ROS detoxification and tumorigenesis. Nature. 2011; 475: 106-109.
-
(2011)
Nature
, vol.475
, pp. 106-109
-
-
Denicola, G.M.1
Karreth, F.A.2
Humpton, T.J.3
Gopinathan, A.4
Wei, C.5
Frese, K.6
Mangal, D.7
Yu, K.H.8
Yeo, C.J.9
Calhoun, E.S.10
Scrimieri, F.11
Winter, J.M.12
Hruban, R.H.13
Iacobuzio-Donahue, C.14
Kern, S.E.15
Blair, I.A.16
Tuveson, D.A.17
-
42
-
-
67449128222
-
Direct interaction between Nrf2 and p21(Cip1/WAF1) upregulates the Nrf2-mediated antioxidant response
-
[42] Chen W, Sun Z, Wang XJ, Jiang T, Huang Z, Fang D, Zhang DD. Direct interaction between Nrf2 and p21(Cip1/WAF1) upregulates the Nrf2-mediated antioxidant response. Mol Cell. 2009; 34: 663-673.
-
(2009)
Mol Cell
, vol.34
, pp. 663-673
-
-
Chen, W.1
Sun, Z.2
Wang, X.J.3
Jiang, T.4
Huang, Z.5
Fang, D.6
Zhang, D.D.7
-
44
-
-
34548714260
-
Nitric oxide radicals choreograph a radioadaptive response
-
[44] Matsumoto H, Takahashi A, Ohnishi T. Nitric oxide radicals choreograph a radioadaptive response. Cancer Res. 2007; 67: 8574-8579.
-
(2007)
Cancer Res
, vol.67
, pp. 8574-8579
-
-
Matsumoto, H.1
Takahashi, A.2
Ohnishi, T.3
-
45
-
-
60749108379
-
Regulation of autophagy by reactive oxygen species (ROS): Implications for cancer progression and treatment
-
[45] Azad MB, Chen Y, Gibson SB. Regulation of autophagy by reactive oxygen species (ROS): implications for cancer progression and treatment. Antioxid Redox Signal. 2009; 11: 777-790.
-
(2009)
Antioxid Redox Signal
, vol.11
, pp. 777-790
-
-
Azad, M.B.1
Chen, Y.2
Gibson, S.B.3
-
46
-
-
0037146679
-
Loss of cardiolipin and mitochondria during programmed neuronal death: Evidence of a role for lipid peroxidation and autophagy
-
[46] Kirkland RA, Adibhatla RM, Hatcher JF, Franklin JL. Loss of cardiolipin and mitochondria during programmed neuronal death: evidence of a role for lipid peroxidation and autophagy. Neuroscience. 2002; 115: 587-602.
-
(2002)
Neuroscience
, vol.115
, pp. 587-602
-
-
Kirkland, R.A.1
Adibhatla, R.M.2
Hatcher, J.F.3
Franklin, J.L.4
-
47
-
-
34247186472
-
Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4
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Scherz-Shouval R, Shvets E, Fass E, Shorer H, Gil L, Elazar Z. Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4. EMBO J. 2007; 26: 1749-1760.
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(2007)
EMBO J
, vol.26
, pp. 1749-1760
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Scherz-Shouval, R.1
Shvets, E.2
Fass, E.3
Shorer, H.4
Gil, L.5
Elazar, Z.6
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