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Volumn 14, Issue 8, 2015, Pages 979-987

Interplay between nitric oxide and brain-derived neurotrophic factor in neuronal plasticity

Author keywords

Brain derived neurotrophic factor; Nitration; Nitric oxide; Plasticity; S nitrosylation; Tropomyosin related kinase receptors

Indexed keywords

ADENOSINE; BRAIN DERIVED NEUROTROPHIC FACTOR; CYCLIC AMP RESPONSIVE ELEMENT BINDING PROTEIN; EPIDERMAL GROWTH FACTOR; G PROTEIN COUPLED RECEPTOR; GLUCOCORTICOID RECEPTOR; MEMBRANE PROTEIN; MESSENGER RNA; NERVE GROWTH FACTOR; NEUROTROPHIN RECEPTOR; NITRIC OXIDE; NITRIC OXIDE SYNTHASE; PHOSPHOLIPASE C GAMMA; PROTEIN P75; TROPOMYOSIN RELATED KINASE RECEPTOR; UNCLASSIFIED DRUG;

EID: 84945404597     PISSN: 18715273     EISSN: 19963181     Source Type: Journal    
DOI: 10.2174/1871527314666150909113727     Document Type: Article
Times cited : (46)

References (88)
  • 1
    • 0037064058 scopus 로고    scopus 로고
    • Biochemistry of mitochondrial nitric-oxide synthase
    • Elfering SL, Sarkela TM, Giulivi C. Biochemistry of mitochondrial nitric-oxide synthase. J Biol Chem 2002; 277(41): 38079-86.
    • (2002) J Biol Chem , vol.277 , Issue.41 , pp. 38079-38086
    • Elfering, S.L.1    Sarkela, T.M.2    Giulivi, C.3
  • 2
    • 0039558662 scopus 로고    scopus 로고
    • Expressional control of the 'constitutive' isoforms of nitric oxide synthase (NOS I and NOS III)
    • Forstermann U, Boissel JP, Kleinert H. Expressional control of the 'constitutive' isoforms of nitric oxide synthase (NOS I and NOS III). FASEB J 1998; 12(10): 773-90.
    • (1998) FASEB J , vol.12 , Issue.10 , pp. 773-790
    • Forstermann, U.1    Boissel, J.P.2    Kleinert, H.3
  • 3
    • 77956318603 scopus 로고    scopus 로고
    • Nitric oxide signaling in brain function, dysfunction, and dementia
    • Steinert JR, Chernova T, Forsythe ID. Nitric oxide signaling in brain function, dysfunction, and dementia. Neuroscientist 2010; 16(4): 435-52.
    • (2010) Neuroscientist , vol.16 , Issue.4 , pp. 435-452
    • Steinert, J.R.1    Chernova, T.2    Forsythe, I.D.3
  • 4
    • 24144494527 scopus 로고    scopus 로고
    • The physiology and pathophysiology of nitric oxide in the brain
    • Guix FX, Uribesalgo I, Coma M, Munoz FJ. The physiology and pathophysiology of nitric oxide in the brain. Prog Neurobiol 2005; 76(2): 126-52.
    • (2005) Prog Neurobiol , vol.76 , Issue.2 , pp. 126-152
    • Guix, F.X.1    Uribesalgo, I.2    Coma, M.3    Munoz, F.J.4
  • 5
    • 77956012154 scopus 로고    scopus 로고
    • Nitric oxide and neuronal death
    • Brown GC. Nitric oxide and neuronal death. Nitric Oxide 2010; 23(3): 153-65.
    • (2010) Nitric Oxide , vol.23 , Issue.3 , pp. 153-165
    • Brown, G.C.1
  • 6
    • 10444280038 scopus 로고    scopus 로고
    • Structure-function studies on nitric oxide synthases
    • Li H, Poulos TL. Structure-function studies on nitric oxide synthases. J Inorg Biochem 2005; 99(1): 293-305.
    • (2005) J Inorg Biochem , vol.99 , Issue.1 , pp. 293-305
    • Li, H.1    Poulos, T.L.2
  • 8
    • 0030988217 scopus 로고    scopus 로고
    • Structure-function aspects in the nitric oxide synthases
    • Stuehr DJ. Structure-function aspects in the nitric oxide synthases. Annu Rev Pharmacol Toxicol 1997; 37: 339-59.
    • (1997) Annu Rev Pharmacol Toxicol , vol.37 , pp. 339-359
    • Stuehr, D.J.1
  • 9
    • 45149088480 scopus 로고    scopus 로고
    • Concepts of neural nitric oxide-mediated transmission
    • Garthwaite J. Concepts of neural nitric oxide-mediated transmission. Eur J Neurosci 2008; 27(11): 2783-802.
    • (2008) Eur J Neurosci , vol.27 , Issue.11 , pp. 2783-2802
    • Garthwaite, J.1
  • 10
    • 67349230279 scopus 로고    scopus 로고
    • Neuronal nitric oxide synthase: Structure, subcellular localization, regulation, and clinical implications
    • Zhou L, Zhu DY. Neuronal nitric oxide synthase: structure, subcellular localization, regulation, and clinical implications. Nitric Oxide 2009; 20(4): 223-30.
    • (2009) Nitric Oxide , vol.20 , Issue.4 , pp. 223-230
    • Zhou, L.1    Zhu, D.Y.2
  • 11
    • 0031749519 scopus 로고    scopus 로고
    • Involvement of endogenous nitric oxide signalling system in brain muscarinic acetylcholine receptor activation
    • Borda T, Genaro A, Sterin-Borda L, Cremaschi G. Involvement of endogenous nitric oxide signalling system in brain muscarinic acetylcholine receptor activation. J Neural Transm 1998; 105(2-3): 193-204.
    • (1998) J Neural Transm , vol.105 , Issue.2-3 , pp. 193-204
    • Borda, T.1    Genaro, A.2    Sterin-Borda, L.3    Cremaschi, G.4
  • 13
    • 0027975453 scopus 로고
    • Nitric oxide: A physiologic messenger molecule
    • Bredt DS, Snyder SH. Nitric oxide: a physiologic messenger molecule. Annu Rev Biochem 1994; 63: 175-95.
    • (1994) Annu Rev Biochem , vol.63 , pp. 175-195
    • Bredt, D.S.1    Snyder, S.H.2
  • 14
    • 0026531143 scopus 로고
    • Histochemical mapping of nitric oxide synthase in the rat brain
    • Vincent SR, Kimura H. Histochemical mapping of nitric oxide synthase in the rat brain. Neuroscience 1992; 46(4): 755-84.
    • (1992) Neuroscience , vol.46 , Issue.4 , pp. 755-784
    • Vincent, S.R.1    Kimura, H.2
  • 15
    • 0030873515 scopus 로고    scopus 로고
    • Synaptic signaling by nitric oxide
    • Brenman JE, Bredt DS. Synaptic signaling by nitric oxide. Curr Opin Neurobiol 1997; 7(3): 374-8.
    • (1997) Curr Opin Neurobiol , vol.7 , Issue.3 , pp. 374-378
    • Brenman, J.E.1    Bredt, D.S.2
  • 16
    • 0035101782 scopus 로고    scopus 로고
    • Nitric oxide as modulator of neuronal function
    • Prast H, Philippu A. Nitric oxide as modulator of neuronal function. Prog Neurobiol 2001; 64(1): 51-68.
    • (2001) Prog Neurobiol , vol.64 , Issue.1 , pp. 51-68
    • Prast, H.1    Philippu, A.2
  • 18
    • 0033838748 scopus 로고    scopus 로고
    • Role of nitric oxide in the regulation of monoaminergic neurotransmission
    • Kiss JP. Role of nitric oxide in the regulation of monoaminergic neurotransmission. Brain Res Bull 2000; 52(6): 459-66.
    • (2000) Brain Res Bull , vol.52 , Issue.6 , pp. 459-466
    • Kiss, J.P.1
  • 19
    • 75049085878 scopus 로고    scopus 로고
    • New insight into the functioning of nitric oxidereceptive guanylyl cyclase: Physiological and pharmacological implications
    • Garthwaite J. New insight into the functioning of nitric oxidereceptive guanylyl cyclase: physiological and pharmacological implications. Mol Cell Biochem 2010; 334(1-2): 221-32.
    • (2010) Mol Cell Biochem , vol.334 , Issue.1-2 , pp. 221-232
    • Garthwaite, J.1
  • 20
    • 0033832073 scopus 로고    scopus 로고
    • Guanylyl cyclases and signaling by cyclic GMP
    • Lucas KA, Pitari GM, Kazerounian S, et al. Guanylyl cyclases and signaling by cyclic GMP. Pharmacol Rev 2000; 52(3): 375-414.
    • (2000) Pharmacol Rev , vol.52 , Issue.3 , pp. 375-414
    • Lucas, K.A.1    Pitari, G.M.2    Kazerounian, S.3
  • 22
    • 84860484051 scopus 로고    scopus 로고
    • Protein S-nitrosylation: Role for nitric oxide signaling in neuronal death
    • Shahani N, Sawa A. Protein S-nitrosylation: role for nitric oxide signaling in neuronal death. Biochim Biophys Acta 2012; 1820(6): 736-42.
    • (2012) Biochim Biophys Acta , vol.1820 , Issue.6 , pp. 736-742
    • Shahani, N.1    Sawa, A.2
  • 24
    • 78649353334 scopus 로고    scopus 로고
    • Physiologic role for "inducible" nitric oxide synthase: A new form of astrocytic-neuronal interface
    • Amitai Y. Physiologic role for "inducible" nitric oxide synthase: a new form of astrocytic-neuronal interface. Glia 2010; 58(15): 1775-81.
    • (2010) Glia , vol.58 , Issue.15 , pp. 1775-1781
    • Amitai, Y.1
  • 25
    • 84886813109 scopus 로고    scopus 로고
    • The role of nitric oxide in presynaptic plasticity and homeostasis
    • Hardingham N, Dachtler J, Fox K. The role of nitric oxide in presynaptic plasticity and homeostasis. Front Cell Neurosci 2013; 7: 190.
    • (2013) Front Cell Neurosci , vol.7 , pp. 190
    • Hardingham, N.1    Dachtler, J.2    Fox, K.3
  • 26
    • 39349090970 scopus 로고    scopus 로고
    • NO/cGMP-dependent modulation of synaptic transmission
    • Feil R, Kleppisch T. NO/cGMP-dependent modulation of synaptic transmission. Handb Exp Pharmacol 2008; 184: 529-60.
    • (2008) Handb Exp Pharmacol , vol.184 , pp. 529-560
    • Feil, R.1    Kleppisch, T.2
  • 27
    • 70350018288 scopus 로고    scopus 로고
    • Mechanisms of activitydependent plasticity in cellular nitric oxide-cGMP signaling
    • Halvey EJ, Vernon J, Roy B, Garthwaite J. Mechanisms of activitydependent plasticity in cellular nitric oxide-cGMP signaling. J Biol Chem 2009; 284(38): 25630-41.
    • (2009) J Biol Chem , vol.284 , Issue.38 , pp. 25630-25641
    • Halvey, E.J.1    Vernon, J.2    Roy, B.3    Garthwaite, J.4
  • 28
    • 30744455255 scopus 로고    scopus 로고
    • A nitric oxide signaling pathway controls CREB-mediated gene expression in neurons
    • Riccio A, Alvania RS, Lonze BE, et al. A nitric oxide signaling pathway controls CREB-mediated gene expression in neurons. Mol Cell 2006; 21(2): 283-94.
    • (2006) Mol Cell , vol.21 , Issue.2 , pp. 283-294
    • Riccio, A.1    Alvania, R.S.2    Lonze, B.E.3
  • 29
    • 55749110026 scopus 로고    scopus 로고
    • A role for cGMP-dependent protein kinase II in AMPA receptor trafficking and synaptic plasticity
    • Serulle Y, Arancio O, Ziff EB. A role for cGMP-dependent protein kinase II in AMPA receptor trafficking and synaptic plasticity. Channels 2008; 2(4): 230-2.
    • (2008) Channels , vol.2 , Issue.4 , pp. 230-232
    • Serulle, Y.1    Arancio, O.2    Ziff, E.B.3
  • 30
    • 61749098258 scopus 로고    scopus 로고
    • cGMP signalling in the mammalian brain: Role in synaptic plasticity and behaviour
    • Kleppisch T, Feil R. cGMP signalling in the mammalian brain: role in synaptic plasticity and behaviour. Handb Exp Pharmacol 2009; 191: 549-79.
    • (2009) Handb Exp Pharmacol , vol.191 , pp. 549-579
    • Kleppisch, T.1    Feil, R.2
  • 31
    • 0036305484 scopus 로고    scopus 로고
    • AMPA receptor trafficking and synaptic plasticity
    • Malinow R, Malenka RC. AMPA receptor trafficking and synaptic plasticity. Annu Rev Neurosci 2002; 25: 103-26.
    • (2002) Annu Rev Neurosci , vol.25 , pp. 103-126
    • Malinow, R.1    Malenka, R.C.2
  • 32
    • 36049014047 scopus 로고    scopus 로고
    • Ubiquitous plasticity and memory storage
    • Kim SJ, Linden DJ. Ubiquitous plasticity and memory storage. Neuron 2007; 56(4): 582-92.
    • (2007) Neuron , vol.56 , Issue.4 , pp. 582-592
    • Kim, S.J.1    Linden, D.J.2
  • 33
    • 5344241223 scopus 로고    scopus 로고
    • LTP and LTD: An embarrassment of riches
    • Malenka RC, Bear MF. LTP and LTD: an embarrassment of riches. Neuron 2004; 44(1): 5-21.
    • (2004) Neuron , vol.44 , Issue.1 , pp. 5-21
    • Malenka, R.C.1    Bear, M.F.2
  • 34
    • 84863963956 scopus 로고    scopus 로고
    • Presynaptic LTP and LTD of excitatory and inhibitory synapses
    • pii: a005728
    • Castillo PE. Presynaptic LTP and LTD of excitatory and inhibitory synapses. Cold Spring Harb Perspect Biol 2012; 4(2): pii: a005728.
    • (2012) Cold Spring Harb Perspect Biol , vol.4 , Issue.2
    • Castillo, P.E.1
  • 35
    • 0040830408 scopus 로고    scopus 로고
    • Nitric oxide, the enigmatic neuronal messenger: Its role in synaptic plasticity
    • Holscher C. Nitric oxide, the enigmatic neuronal messenger: its role in synaptic plasticity. Trends Neurosci 1997; 20(7): 298-303.
    • (1997) Trends Neurosci , vol.20 , Issue.7 , pp. 298-303
    • Holscher, C.1
  • 36
    • 0031104935 scopus 로고    scopus 로고
    • Synaptic plasticity: A role for nitric oxide in LTP
    • Huang EP. Synaptic plasticity: a role for nitric oxide in LTP. Curr Biol 1997; 7(3): R141-3.
    • (1997) Curr Biol , vol.7 , Issue.3 , pp. 141-143
    • Huang, E.P.1
  • 37
    • 33746079663 scopus 로고    scopus 로고
    • The role of nitric oxide and GluR1 in presynaptic and postsynaptic components of neocortical potentiation
    • Hardingham N, Fox K. The role of nitric oxide and GluR1 in presynaptic and postsynaptic components of neocortical potentiation. J Neurosci 2006; 26(28): 7395-404.
    • (2006) J Neurosci , vol.26 , Issue.28 , pp. 7395-7404
    • Hardingham, N.1    Fox, K.2
  • 38
    • 58249083501 scopus 로고    scopus 로고
    • PSD- 95 promotes synaptogenesis and multiinnervated spine formation through nitric oxide signaling
    • Nikonenko I, Boda B, Steen S, Knott G, Welker E, Muller D. PSD- 95 promotes synaptogenesis and multiinnervated spine formation through nitric oxide signaling. J Cell Biol 2008; 183(6): 1115-27.
    • (2008) J Cell Biol , vol.183 , Issue.6 , pp. 1115-1127
    • Nikonenko, I.1    Boda, B.2    Steen, S.3    Knott, G.4    Welker, E.5    Muller, D.6
  • 39
    • 80051924099 scopus 로고    scopus 로고
    • Ultrastructural modifications of spine and synapse morphology by SAP97
    • Poglia L, Muller D, Nikonenko I. Ultrastructural modifications of spine and synapse morphology by SAP97. Hippocampus 2011; 21(9): 990-8.
    • (2011) Hippocampus , vol.21 , Issue.9 , pp. 990-998
    • Poglia, L.1    Muller, D.2    Nikonenko, I.3
  • 40
    • 84905396442 scopus 로고    scopus 로고
    • NGF, BDNF, NT3, and NT4
    • Bothwell M. NGF, BDNF, NT3, and NT4. Handb Exp Pharmacol 2014; 220: 3-15.
    • (2014) Handb Exp Pharmacol , vol.220 , pp. 3-15
    • Bothwell, M.1
  • 41
    • 0034927081 scopus 로고    scopus 로고
    • Neurotrophins: Roles in neuronal development and function
    • Huang EJ, Reichardt LF. Neurotrophins: roles in neuronal development and function. Annu Rev Neurosci 2001; 24: 677-736.
    • (2001) Annu Rev Neurosci , vol.24 , pp. 677-736
    • Huang, E.J.1    Reichardt, L.F.2
  • 42
    • 84900530338 scopus 로고    scopus 로고
    • BDNF and synaptic plasticity, cognitive function, and dysfunction
    • Lu B, Nagappan G, Lu Y. BDNF and synaptic plasticity, cognitive function, and dysfunction. Handb Exp Pharmacol 2014; 220: 223- 50.
    • (2014) Handb Exp Pharmacol , vol.220 , pp. 223-250
    • Lu, B.1    Nagappan, G.2    Lu, Y.3
  • 43
    • 84871408179 scopus 로고    scopus 로고
    • Neurotrophin regulation of neural circuit development and function
    • Park H, Poo MM. Neurotrophin regulation of neural circuit development and function. Nat Rev Neurosci 2013; 14(1): 7-23.
    • (2013) Nat Rev Neurosci , vol.14 , Issue.1 , pp. 7-23
    • Park, H.1    Poo, M.M.2
  • 45
    • 0041488911 scopus 로고    scopus 로고
    • Trk receptors: Roles in neuronal signal transduction
    • Huang EJ, Reichardt LF. Trk receptors: roles in neuronal signal transduction. Annu Rev Biochem 2003; 72: 609-42.
    • (2003) Annu Rev Biochem , vol.72 , pp. 609-642
    • Huang, E.J.1    Reichardt, L.F.2
  • 46
    • 70450196195 scopus 로고    scopus 로고
    • TrkB signalling pathways in LTP and learning
    • Minichiello L. TrkB signalling pathways in LTP and learning. Nat Rev Neurosci 2009; 10(12): 850-60.
    • (2009) Nat Rev Neurosci , vol.10 , Issue.12 , pp. 850-860
    • Minichiello, L.1
  • 47
    • 84905386927 scopus 로고    scopus 로고
    • The biological functions and signaling mechanisms of the p75 neurotrophin receptor
    • Kraemer BR, Yoon SO, Carter BD. The biological functions and signaling mechanisms of the p75 neurotrophin receptor. Handb Exp Pharmacol 2014; 220: 121-64.
    • (2014) Handb Exp Pharmacol , vol.220 , pp. 121-164
    • Kraemer, B.R.1    Yoon, S.O.2    Carter, B.D.3
  • 48
    • 84906540009 scopus 로고    scopus 로고
    • Neurotrophins in the regulation of cellular survival and death
    • Ceni C, Unsain N, Zeinieh MP, Barker PA. Neurotrophins in the regulation of cellular survival and death. Handb Exp Pharmacol 2014; 220: 193-221.
    • (2014) Handb Exp Pharmacol , vol.220 , pp. 193-221
    • Ceni, C.1    Unsain, N.2    Zeinieh, M.P.3    Barker, P.A.4
  • 49
    • 0028806187 scopus 로고
    • Effects of brain-derived neurotrophic factor on optic axon branching and remodelling in vivo
    • Cohen-Cory S, Fraser SE. Effects of brain-derived neurotrophic factor on optic axon branching and remodelling in vivo. Nature 1995; 378(6553): 192-6.
    • (1995) Nature , vol.378 , Issue.6553 , pp. 192-196
    • Cohen-Cory, S.1    Fraser, S.E.2
  • 50
    • 0028858681 scopus 로고
    • Neurotrophins regulate dendritic growth in developing visual cortex
    • McAllister AK, Lo DC, Katz LC. Neurotrophins regulate dendritic growth in developing visual cortex. Neuron 1995; 15(4): 791-803.
    • (1995) Neuron , vol.15 , Issue.4 , pp. 791-803
    • McAllister, A.K.1    Lo, D.C.2    Katz, L.C.3
  • 51
    • 27644487162 scopus 로고    scopus 로고
    • BDNF stabilizes synapses and maintains the structural complexity of optic axons in vivo
    • Hu B, Nikolakopoulou AM, Cohen-Cory S. BDNF stabilizes synapses and maintains the structural complexity of optic axons in vivo. Development 2005; 132(19): 4285-98.
    • (2005) Development , vol.132 , Issue.19 , pp. 4285-4298
    • Hu, B.1    Nikolakopoulou, A.M.2    Cohen-Cory, S.3
  • 53
    • 0037174622 scopus 로고    scopus 로고
    • The developing synapse: Construction and modulation of synaptic structures and circuits
    • Cohen-Cory S. The developing synapse: construction and modulation of synaptic structures and circuits. Science 2002; 298(5594): 770-6.
    • (2002) Science , vol.298 , Issue.5594 , pp. 770-776
    • Cohen-Cory, S.1
  • 54
    • 0027281189 scopus 로고
    • Potentiation of developing neuromuscular synapses by the neurotrophins NT-3 and BDNF
    • Lohof AM, Ip NY, Poo MM. Potentiation of developing neuromuscular synapses by the neurotrophins NT-3 and BDNF. Nature 1993; 363(6427): 350-3.
    • (1993) Nature , vol.363 , Issue.6427 , pp. 350-353
    • Lohof, A.M.1    Ip, N.Y.2    Poo, M.M.3
  • 55
    • 0029970008 scopus 로고    scopus 로고
    • Regulation of synaptic responses to high-frequency stimulation and LTP by neurotrophins in the hippocampus
    • Figurov A, Pozzo-Miller LD, Olafsson P, Wang T, Lu B. Regulation of synaptic responses to high-frequency stimulation and LTP by neurotrophins in the hippocampus. Nature 1996; 381(6584): 706-9.
    • (1996) Nature , vol.381 , Issue.6584 , pp. 706-709
    • Figurov, A.1    Pozzo-Miller, L.D.2    Olafsson, P.3    Wang, T.4    Lu, B.5
  • 56
    • 0028988240 scopus 로고
    • Long-lasting neurotrophin-induced enhancement of synaptic transmission in the adult hippocampus
    • Kang H, Schuman EM. Long-lasting neurotrophin-induced enhancement of synaptic transmission in the adult hippocampus. Science 1995; 267(5204): 1658-62.
    • (1995) Science , vol.267 , Issue.5204 , pp. 1658-1662
    • Kang, H.1    Schuman, E.M.2
  • 57
    • 23044488902 scopus 로고    scopus 로고
    • The yin and yang of neurotrophin action
    • Lu B, Pang PT, Woo NH. The yin and yang of neurotrophin action. Nat Rev Neurosci 2005; 6(8): 603-14.
    • (2005) Nat Rev Neurosci , vol.6 , Issue.8 , pp. 603-614
    • Lu, B.1    Pang, P.T.2    Woo, N.H.3
  • 58
    • 0035976524 scopus 로고    scopus 로고
    • Regulation of cell survival by secreted proneurotrophins
    • Lee R, Kermani P, Teng KK, Hempstead BL. Regulation of cell survival by secreted proneurotrophins. Science 2001; 294(5548): 1945-8.
    • (2001) Science , vol.294 , Issue.5548 , pp. 1945-1948
    • Lee, R.1    Kermani, P.2    Teng, K.K.3    Hempstead, B.L.4
  • 59
    • 0029787071 scopus 로고    scopus 로고
    • Induction of cell death by endogenous nerve growth factor through its p75 receptor
    • Frade JM, Rodriguez-Tebar A, Barde YA. Induction of cell death by endogenous nerve growth factor through its p75 receptor. Nature 1996; 383(6596): 166-8.
    • (1996) Nature , vol.383 , Issue.6596 , pp. 166-168
    • Frade, J.M.1    Rodriguez-Tebar, A.2    Barde, Y.A.3
  • 60
    • 27344442733 scopus 로고    scopus 로고
    • The p75 neurotrophin receptor negatively modulates dendrite complexity and spine density in hippocampal neurons
    • Zagrebelsky M, Holz A, Dechant G, Barde YA, Bonhoeffer T, Korte M. The p75 neurotrophin receptor negatively modulates dendrite complexity and spine density in hippocampal neurons. J Neurosci 2005; 25(43): 9989-99.
    • (2005) J Neurosci , vol.25 , Issue.43 , pp. 9989-9999
    • Zagrebelsky, M.1    Holz, A.2    Dechant, G.3    Barde, Y.A.4    Bonhoeffer, T.5    Korte, M.6
  • 61
    • 23044464168 scopus 로고    scopus 로고
    • Activation of p75NTR by proBDNF facilitates hippocampal long-term depression
    • Woo NH, Teng HK, Siao CJ, et al. Activation of p75NTR by proBDNF facilitates hippocampal long-term depression. Nat Neurosci 2005; 8(8): 1069-77.
    • (2005) Nat Neurosci , vol.8 , Issue.8 , pp. 1069-1077
    • Woo, N.H.1    Teng, H.K.2    Siao, C.J.3
  • 62
    • 0035853065 scopus 로고    scopus 로고
    • Activation of Trk neurotrophin receptors in the absence of neurotrophins
    • Lee FS, Chao MV. Activation of Trk neurotrophin receptors in the absence of neurotrophins. Proc Natl Acad Sci USA 2001; 98(6): 3555-60.
    • (2001) Proc Natl Acad Sci USA , vol.98 , Issue.6 , pp. 3555-3560
    • Lee, F.S.1    Chao, M.V.2
  • 63
    • 30044439768 scopus 로고    scopus 로고
    • Endocannabinoids regulate interneuron migration and morphogenesis by transactivating the TrkB receptor
    • Berghuis P, Dobszay MB, Wang X, et al. Endocannabinoids regulate interneuron migration and morphogenesis by transactivating the TrkB receptor. Proc Natl Acad Sci USA 2005; 102(52): 19115-20.
    • (2005) Proc Natl Acad Sci USA , vol.102 , Issue.52 , pp. 19115-19120
    • Berghuis, P.1    Dobszay, M.B.2    Wang, X.3
  • 64
    • 42349100686 scopus 로고    scopus 로고
    • Activation of Trk neurotrophin receptors by glucocorticoids provides a neuroprotective effect
    • Jeanneteau F, Garabedian MJ, Chao MV. Activation of Trk neurotrophin receptors by glucocorticoids provides a neuroprotective effect. Proc Natl Acad Sci USA 2008; 105(12): 4862-7.
    • (2008) Proc Natl Acad Sci USA , vol.105 , Issue.12 , pp. 4862-4867
    • Jeanneteau, F.1    Garabedian, M.J.2    Chao, M.V.3
  • 65
    • 0037088607 scopus 로고    scopus 로고
    • Activation of Trk neurotrophin receptor signaling by pituitary adenylate cyclaseactivating polypeptides
    • Lee FS, Rajagopal R, Kim AH, Chang PC, Chao MV. Activation of Trk neurotrophin receptor signaling by pituitary adenylate cyclaseactivating polypeptides. J Biol Chem 2002; 277(11): 9096-102.
    • (2002) J Biol Chem , vol.277 , Issue.11 , pp. 9096-9102
    • Lee, F.S.1    Rajagopal, R.2    Kim, A.H.3    Chang, P.C.4    Chao, M.V.5
  • 66
    • 39449099067 scopus 로고    scopus 로고
    • Zinc-mediated transactivation of TrkB potentiates the hippocampal mossy fiber- CA3 pyramid synapse
    • Huang YZ, Pan E, Xiong ZQ, McNamara JO. Zinc-mediated transactivation of TrkB potentiates the hippocampal mossy fiber- CA3 pyramid synapse. Neuron 2008; 57(4): 546-58.
    • (2008) Neuron , vol.57 , Issue.4 , pp. 546-558
    • Huang, Y.Z.1    Pan, E.2    Xiong, Z.Q.3    McNamara, J.O.4
  • 67
    • 84875643749 scopus 로고    scopus 로고
    • EGF transactivation of Trk receptors regulates the migration of newborn cortical neurons
    • Puehringer D, Orel N, Luningschror P, et al. EGF transactivation of Trk receptors regulates the migration of newborn cortical neurons. Nat Neurosci 2013; 16(4): 407-15.
    • (2013) Nat Neurosci , vol.16 , Issue.4 , pp. 407-415
    • Puehringer, D.1    Orel, N.2    Luningschror, P.3
  • 68
    • 79958150004 scopus 로고    scopus 로고
    • Antidepressant drugs transactivate TrkB neurotrophin receptors in the adult rodent brain independently of BDNF and monoamine transporter blockade
    • Rantamaki T, Vesa L, Antila H, et al. Antidepressant drugs transactivate TrkB neurotrophin receptors in the adult rodent brain independently of BDNF and monoamine transporter blockade. PLoS One 2011; 6(6): e20567.
    • (2011) PLoS One , vol.6 , Issue.6
    • Rantamaki, T.1    Vesa, L.2    Antila, H.3
  • 69
    • 0038545591 scopus 로고    scopus 로고
    • Nitric oxide acts in a positive feedback loop with BDNF to regulate neural progenitor cell proliferation and differentiation in the mammalian brain
    • Cheng A, Wang S, Cai J, Rao MS, Mattson MP. Nitric oxide acts in a positive feedback loop with BDNF to regulate neural progenitor cell proliferation and differentiation in the mammalian brain. Dev Biol 2003; 258(2): 319-33.
    • (2003) Dev Biol , vol.258 , Issue.2 , pp. 319-333
    • Cheng, A.1    Wang, S.2    Cai, J.3    Rao, M.S.4    Mattson, M.P.5
  • 70
    • 84860359394 scopus 로고    scopus 로고
    • Stimulation of the neurotrophin receptor TrkB on astrocytes drives nitric oxide production and neurodegeneration
    • Colombo E, Cordiglieri C, Melli G, et al. Stimulation of the neurotrophin receptor TrkB on astrocytes drives nitric oxide production and neurodegeneration. J Exp Med 2012; 209(3): 521- 35.
    • (2012) J Exp Med , vol.209 , Issue.3 , pp. 521-535
    • Colombo, E.1    Cordiglieri, C.2    Melli, G.3
  • 71
    • 52149108919 scopus 로고    scopus 로고
    • SNitrosylation of histone deacetylase 2 induces chromatin remodelling in neurons
    • Nott A, Watson PM, Robinson JD, Crepaldi L, Riccio A. SNitrosylation of histone deacetylase 2 induces chromatin remodelling in neurons. Nature 2008; 455(7211): 411-5.
    • (2008) Nature , vol.455 , Issue.7211 , pp. 411-415
    • Nott, A.1    Watson, P.M.2    Robinson, J.D.3    Crepaldi, L.4    Riccio, A.5
  • 72
    • 0030994296 scopus 로고    scopus 로고
    • Differential susceptibility to neurotoxicity mediated by neurotrophins and neuronal nitric oxide synthase
    • Samdani AF, Newcamp C, Resink A, et al. Differential susceptibility to neurotoxicity mediated by neurotrophins and neuronal nitric oxide synthase. J Neurosci 1997; 17(12): 4633-41.
    • (1997) J Neurosci , vol.17 , Issue.12 , pp. 4633-4641
    • Samdani, A.F.1    Newcamp, C.2    Resink, A.3
  • 73
    • 80051792428 scopus 로고    scopus 로고
    • Homeostatic NMDA receptor down-regulation via brain derived neurotrophic factor and nitric oxide-dependent signalling in cortical but not in hippocampal neurons
    • Sandoval R, Gonzalez A, Caviedes A, et al. Homeostatic NMDA receptor down-regulation via brain derived neurotrophic factor and nitric oxide-dependent signalling in cortical but not in hippocampal neurons. J Neurochem 2011; 118(5): 760-72.
    • (2011) J Neurochem , vol.118 , Issue.5 , pp. 760-772
    • Sandoval, R.1    Gonzalez, A.2    Caviedes, A.3
  • 74
    • 0032929554 scopus 로고    scopus 로고
    • Mutual regulation between the intercellular messengers nitric oxide and brain-derived neurotrophic factor in rodent neocortical neurons
    • Xiong H, Yamada K, Han D, et al. Mutual regulation between the intercellular messengers nitric oxide and brain-derived neurotrophic factor in rodent neocortical neurons. Eur J Neurosci 1999; 11(5): 1567-76.
    • (1999) Eur J Neurosci , vol.11 , Issue.5 , pp. 1567-1576
    • Xiong, H.1    Yamada, K.2    Han, D.3
  • 75
    • 0037022590 scopus 로고    scopus 로고
    • Nitric oxide down-regulates brain-derived neurotrophic factor secretion in cultured hippocampal neurons
    • Canossa M, Giordano E, Cappello S, Guarnieri C, Ferri S. Nitric oxide down-regulates brain-derived neurotrophic factor secretion in cultured hippocampal neurons. Proc Natl Acad Sci USA 2002; 99(5): 3282-7.
    • (2002) Proc Natl Acad Sci USA , vol.99 , Issue.5 , pp. 3282-3287
    • Canossa, M.1    Giordano, E.2    Cappello, S.3    Guarnieri, C.4    Ferri, S.5
  • 76
    • 44649160040 scopus 로고    scopus 로고
    • Brain-derived neurotropic factor and neurogenesis in the adult rat dentate gyrus: Interactions with corticosterone
    • Pinnock SB, Herbert J. Brain-derived neurotropic factor and neurogenesis in the adult rat dentate gyrus: interactions with corticosterone. Eur J Neurosci 2008; 27(10): 2493-500.
    • (2008) Eur J Neurosci , vol.27 , Issue.10 , pp. 2493-2500
    • Pinnock, S.B.1    Herbert, J.2
  • 77
    • 0034626916 scopus 로고    scopus 로고
    • Nitric oxide activation of TrkB through peroxynitrite
    • Yuen EC, Gunther EC, Bothwell M. Nitric oxide activation of TrkB through peroxynitrite. Neuroreport 2000; 11(16): 3593-7.
    • (2000) Neuroreport , vol.11 , Issue.16 , pp. 3593-3597
    • Yuen, E.C.1    Gunther, E.C.2    Bothwell, M.3
  • 78
    • 84865524289 scopus 로고    scopus 로고
    • Interactions between the NO-citrulline cycle and brain-derived neurotrophic factor in differentiation of neural stem cells
    • Lameu C, Trujillo CA, Schwindt TT, et al. Interactions between the NO-citrulline cycle and brain-derived neurotrophic factor in differentiation of neural stem cells. J Biol Chem 2012; 287(35): 29690-701.
    • (2012) J Biol Chem , vol.287 , Issue.35 , pp. 29690-29701
    • Lameu, C.1    Trujillo, C.A.2    Schwindt, T.T.3
  • 79
    • 0034652197 scopus 로고    scopus 로고
    • Stabilization of growing retinal axons by the combined signaling of nitric oxide and brain-derived neurotrophic factor
    • Ernst AF, Gallo G, Letourneau PC, McLoon SC. Stabilization of growing retinal axons by the combined signaling of nitric oxide and brain-derived neurotrophic factor. J Neurosci 2000; 20(4): 1458-69.
    • (2000) J Neurosci , vol.20 , Issue.4 , pp. 1458-1469
    • Ernst, A.F.1    Gallo, G.2    Letourneau, P.C.3    McLoon, S.C.4
  • 80
    • 79952689992 scopus 로고    scopus 로고
    • GPS-YNO2: Computational prediction of tyrosine nitration sites in proteins
    • Liu Z, Cao J, Ma Q, Gao X, Ren J, Xue Y. GPS-YNO2: computational prediction of tyrosine nitration sites in proteins. Mol Biosyst 2011; 7(4): 1197-204.
    • (2011) Mol Biosyst , vol.7 , Issue.4 , pp. 1197-1204
    • Liu, Z.1    Cao, J.2    Ma, Q.3    Gao, X.4    Ren, J.5    Xue, Y.6
  • 81
    • 77955283497 scopus 로고    scopus 로고
    • GPS-SNO: Computational prediction of protein S-nitrosylation sites with a modified GPS algorithm
    • Xue Y, Liu Z, Gao X, et al. GPS-SNO: computational prediction of protein S-nitrosylation sites with a modified GPS algorithm. PLoS One 2010; 5(6): e11290.
    • (2010) PLoS One , vol.5 , Issue.6
    • Xue, Y.1    Liu, Z.2    Gao, X.3
  • 82
    • 0029120693 scopus 로고
    • Extracellular domain of neurotrophin receptor trkB: Disulfide structure, N-glycosylation sites, and ligand binding
    • Haniu M, Talvenheimo J, Le J, Katta V, Welcher A, Rohde MF. Extracellular domain of neurotrophin receptor trkB: disulfide structure, N-glycosylation sites, and ligand binding. Arch Biochem Biophys 1995; 322(1): 256-64.
    • (1995) Arch Biochem Biophys , vol.322 , Issue.1 , pp. 256-264
    • Haniu, M.1    Talvenheimo, J.2    Le, J.3    Katta, V.4    Welcher, A.5    Rohde, M.F.6
  • 83
    • 33845960772 scopus 로고    scopus 로고
    • Nitric oxide synthase generates nitric oxide locally to regulate compartmentalized protein S-nitrosylation and protein trafficking
    • Iwakiri Y, Satoh A, Chatterjee S, et al. Nitric oxide synthase generates nitric oxide locally to regulate compartmentalized protein S-nitrosylation and protein trafficking. Proc Natl Acad Sci USA 2006; 103(52): 19777-82.
    • (2006) Proc Natl Acad Sci USA , vol.103 , Issue.52 , pp. 19777-19782
    • Iwakiri, Y.1    Satoh, A.2    Chatterjee, S.3
  • 85
    • 0038731081 scopus 로고    scopus 로고
    • Biological selectivity and functional aspects of protein tyrosine nitration
    • Ischiropoulos H. Biological selectivity and functional aspects of protein tyrosine nitration. Biochem Biophys Res Commun 2003; 305(3): 776-83.
    • (2003) Biochem Biophys Res Commun , vol.305 , Issue.3 , pp. 776-783
    • Ischiropoulos, H.1
  • 86
    • 84908344979 scopus 로고    scopus 로고
    • Target-selective protein Snitrosylation by sequence motif recognition
    • Jia J, Arif A, Terenzi F, et al. Target-selective protein Snitrosylation by sequence motif recognition. Cell 2014; 159(3): 623-34.
    • (2014) Cell , vol.159 , Issue.3 , pp. 623-634
    • Jia, J.1    Arif, A.2    Terenzi, F.3
  • 87
    • 84870689957 scopus 로고    scopus 로고
    • Emerging role of protein-protein transnitrosylation in cell signaling pathways
    • Nakamura T, Lipton SA. Emerging role of protein-protein transnitrosylation in cell signaling pathways. Antioxid Redox Signal 2013; 18(3): 239-49.
    • (2013) Antioxid Redox Signal , vol.18 , Issue.3 , pp. 239-249
    • Nakamura, T.1    Lipton, S.A.2
  • 88
    • 1842370285 scopus 로고    scopus 로고
    • Nerve growth factor protects PC12 cells against peroxynitriteinduced apoptosis via a mechanism dependent on phosphatidylinositol 3-kinase
    • Spear N, Estevez AG, Barbeito L, Beckman JS, Johnson GV. Nerve growth factor protects PC12 cells against peroxynitriteinduced apoptosis via a mechanism dependent on phosphatidylinositol 3-kinase. J Neurochem 1997; 69(1): 53-9.
    • (1997) J Neurochem , vol.69 , Issue.1 , pp. 53-59
    • Spear, N.1    Estevez, A.G.2    Barbeito, L.3    Beckman, J.S.4    Johnson, G.V.5


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