リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

リケラボ 全国の大学リポジトリにある学位論文・教授論文を一括検索するならリケラボ論文検索大学・研究所にある論文を検索できる

大学・研究所にある論文を検索できる 「Neuronal activity-dependent local activation of dendritic unfolded protein response promotes expression of brain-derived neurotrophic factor in cell soma」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

コピーが完了しました

URLをコピーしました

論文の公開元へ論文の公開元へ
書き出し

Neuronal activity-dependent local activation of dendritic unfolded protein response promotes expression of brain-derived neurotrophic factor in cell soma

蔡 龍杰 広島大学

2020.09.18

概要

Unfolded protein response (UPR) has roles not only in
resolving the accumulation of unfolded proteins owing to
endoplasmic reticulum (ER) stress, but also in regulation of
cellular physiological functions. ER stress transducers providing the branches of UPR signaling are known to localize in
distal dendritic ER of neurons. These reports suggest that
local activation of UPR branches may produce integrated
outputs for distant communication, and allow regulation of
local events in highly polarized neurons. Here, we demonstrated that synaptic activity- and brain-derived neurotrophic
factor (BDNF)-dependent local activation of UPR signaling
could be associated with dendritic functions through retrograde signal propagation by using murine neuroblastoma cell
line, Neuro-2A and primary cultured hippocampal neurons
derived from postnatal day 0 litter C57BL/6 mice. ER stress
transducer, inositol-requiring kinase 1 (IRE1), was activated at
postsynapses in response to excitatory synaptic activation. ...

この論文で使われている画像

参考文献

Acosta-Alvear D., Zhou Y., Blais A., Tsikitis M., Lents N. H., Arias C.,

Lennon C. J., Kluger Y. and Dynlacht B. D. (2007) XBP1 controls

diverse cell type- and condition-specific transcriptional regulatory

networks. Mol. Cell 27, 53–66.

Asada R., Kanemoto S., Matsuhisa K., Hino K., Cui M., Cui X., Kaneko

M. and Imaizumi K. (2015) IRE1alpha-XBP1 is a novel branch in

the transcriptional regulation of Ucp1 in brown adipocytes. Sci.

Rep. 5, 16580.

Barde Y. A., Edgar D. and Thoenen H. (1982) Purification of a new

neurotrophic factor from mammalian brain. EMBO J. 1, 549–

553.

Binder D. K. and Scharfman H. E. (2004) Brain-derived neurotrophic

factor. Growth Factors 22, 123–131.

Bolsover S. R. (2005) Calcium signalling in growth cone migration. Cell

Calcium 37, 395–402.

Broadwell R. D. and Cataldo A. M. (1983) The neuronal endoplasmic

reticulum: its cytochemistry and contribution to the endomembrane

system. I. Cell bodies and dendrites. J. Histochem. Cytochem. 31,

1077–1088.

Calfon M., Zeng H., Urano F., Till J. H., Hubbard S. R., Harding H. P.,

Clark S. G. and Ron D. (2002) IRE1 couples endoplasmic

reticulum load to secretory capacity by processing the XBP-1

mRNA. Nature 415, 92–96.

Chen G., Kolbeck R., Barde Y. A., Bonhoeffer T. and Kossel A. (1999)

Relative contribution of endogenous neurotrophins in hippocampal

long-term potentiation. J. Neurosci. 19, 7983–7990.

Citri A. and Malenka R. C. (2008) Synaptic plasticity: multiple forms,

functions, and mechanisms. Neuropsychopharmacology 33, 18–41.

© 2017 The Authors. Journal of Neurochemistry published by John Wiley & Sons Ltd on behalf of

International Society for Neurochemistry, J. Neurochem. (2018) 144, 35--49

48

A. Saito et al.

Davies S. P., Reddy H., Caivano M. and Cohen P. (2000) Specificity and

mechanism of action of some commonly used protein kinase

inhibitors. Biochem. J. 351, 95–105.

Delghandi M. P., Johannessen M. and Moens U. (2005) The cAMP

signalling pathway activates CREB through PKA, p38 and MSK1

in NIH 3T3 cells. Cell. Signal. 17, 1343–1351.

Gulledge A. T., Kampa B. M. and Stuart G. J. (2005) Synaptic

integration in dendritic trees. J. Neurobiol. 64, 75–90.

Harding H. P., Zhang Y. and Ron D. (1999) Protein translation and

folding are coupled by an endoplasmic-reticulum-resident kinase.

Nature 397, 271–274.

Harding H. P., Novoa I., Zhang Y., Zeng H., Wek R., Schapira M. and Ron

D. (2000) Regulated translation initiation controls stress-induced

gene expression in mammalian cells. Mol. Cell 6, 1099–1108.

Hayashi A., Kasahara T., Iwamoto K., Ishiwata M., Kametani M.,

Kakiuchi C., Furuichi T. and Kato T. (2007) The role of brainderived neurotrophic factor (BDNF)-induced XBP1 splicing during

brain development. J. Biol. Chem. 282, 34525–34534.

Hayashi A., Kasahara T., Kametani M. and Kato T. (2008) Attenuated

BDNF-induced upregulation of GABAergic markers in neurons

lacking Xbp1. Biochem. Biophys. Res. Comm. 376, 758–763.

Headley P. M. and Grillner S. (1990) Excitatory amino acids and

synaptic transmission: the evidence for a physiological function.

Trends Pharmacol. Sci. 11, 205–211.

Hetz C., Thielen P., Matus S. et al. (2009) XBP-1 deficiency in the

nervous system protects against amyotrophic lateral sclerosis by

increasing autophagy. Genes Dev. 23, 2294–2306.

Hu Y., Park K. K., Yang L. et al. (2012) Differential effects of unfolded

protein response pathways on axon injury-induced death of retinal

ganglion cells. Neuron 73, 445–452.

Iida J., Ishizaki H., Okamoto-Tanaka M. et al. (2007) Synaptic

scaffolding molecule alpha is a scaffold to mediate N-methyl-Daspartate receptor-dependent RhoA activation in dendrites. Mol.

Cell. Biol. 27, 4388–4405.

Kakiuchi C., Iwamoto K., Ishiwata M. et al. (2003) Impaired feedback

regulation of XBP1 as a genetic risk factor for bipolar disorder.

Nat. Genet. 35, 171–175.

Kakiuchi C., Ishiwata M., Umekage T., Tochigi M., Kohda K., Sasaki T.

and Kato T. (2004) Association of the XBP1-116C/G

polymorphism with schizophrenia in the Japanese population.

Psychiatry Clin. Neurosci. 58, 438–440.

Kaufman R. J. (2002) Orchestrating the unfolded protein response in

health and disease. J. Clin. Investig. 110, 1389–1398.

Kitao Y., Ozawa K., Miyazaki M. et al. (2001) Expression of the

endoplasmic reticulum molecular chaperone (ORP150) rescues

hippocampal neurons from glutamate toxicity. J. Clin. Investig.

108, 1439–1450.

Kondo S., Murakami T., Tatsumi K., Ogata M., Kanemoto S., Otori K.,

Iseki K., Wanaka A. and Imaizumi K. (2005) OASIS, a CREB/

ATF-family member, modulates UPR signalling in astrocytes. Nat.

Cell Biol. 7, 186–194.

Korte M., Carroll P., Wolf E., Brem G., Thoenen H. and Bonhoeffer T.

(1995) Hippocampal long-term potentiation is impaired in mice

lacking brain-derived neurotrophic factor. Proc. Natl Acad. Sci.

USA 92, 8856–8860.

Koscielny A., Malik A. R., Liszewska E., Zmorzynska J., Tempes A.,

Tarkowski B. and Jaworski J. (2017) Adaptor complex 2 controls

dendrite morphology via mTOR-dependent expression of GluA2.

Mol. Neurobiol. doi: 10.1007/s12035-017-0436-3.

Lee J., Sun C., Zhou Y., Lee J., Gokalp D., Herrema H., Park S. W., Davis

R. J. and Ozcan U. (2011) p38 MAPK-mediated regulation of

Xbp1s is crucial for glucose homeostasis. Nat. Med. 17, 1251–1260.

Leibrock J., Lottspeich F., Hohn A., Hofer M., Hengerer B.,

Masiakowski P., Thoenen H. and Barde Y. A. (1989) Molecular

cloning and expression of brain-derived neurotrophic actor. Nature

341, 149–152.

Lessmann V., Gottmann K. and Heumann R. (1994) BDNF and NT-4/5

enhance glutamatergic synaptic transmission in cultured

hippocampal neurones. NeuroReport 6, 21–25.

Li M., Baumeister P., Roy B., Phan T., Foti D., Luo S. and Lee A. S.

(2000) ATF6 as a transcription activator of the endoplasmic

reticulum stress element: thapsigargin stress-induced changes and

synergistic interactions with NF-Y and YY1. Mol. Cell. Biol. 20,

5096–5106.

Lin G., Bella A. J., Lue T. F. and Lin C. S. (2006) Brain-derived

neurotrophic factor (BDNF) acts primarily via the JAK/STAT

pathway to promote neurite growth in the major pelvic ganglion of

the rat: part 2. J. Sex. Med. 3, 821–827; discussion 828–829.

Liu S. Y., Wang W., Cai Z. Y., Yao L. F., Chen Z. W., Wang C. Y.,

Zhao B. and Li K. S. (2013) Polymorphism -116C/G of human Xbox-binding protein 1 promoter is associated with risk of

Alzheimer’s disease. CNS Neurosci. Ther. 19, 229–234.

Lohof A. M., Ip N. Y. and Poo M. M. (1993) Potentiation of developing

neuromuscular synapses by the neurotrophins NT-3 and BDNF.

Nature 363, 350–353.

Lommatzsch M., Braun A., Mannsfeldt A., Botchkarev V. A.,

Botchkareva N. V., Paus R., Fischer A., Lewin G. R. and Renz

H. (1999) Abundant production of brain-derived neurotrophic

factor by adult visceral epithelia. Implications for paracrine and

target-derived Neurotrophic functions. Am. J. Pathol. 155, 1183–

1193.

Lu H., Park H. and Poo M. M. (2014) Spike-timing-dependent BDNF

secretion and synaptic plasticity. Philos. Trans. R. Soc. Lond. B

Biol. Sci. 369, 20130132.

Madeo F., Eisenberg T. and Kroemer G. (2009) Autophagy for the

avoidance of neurodegeneration. Genes Dev. 23, 2253–2259.

Malenka R. C. and Bear M. F. (2004) LTP and LTD: an embarrassment

of riches. Neuron 44, 5–21.

Malik A. R., Urbanska M., Gozdz A., Swiech L. J., Nagalski A., Perycz

M., Blazejczyk M. and Jaworski J. (2013) Cyr61, a matricellular

protein, is needed for dendritic arborization of hippocampal

neurons. J. Biol. Chem. 288, 8544–8559.

Mao T., Shao M., Qiu Y. et al. (2011) PKA phosphorylation couples

hepatic inositol-requiring enzyme 1alpha to glucagon signaling in

glucose metabolism. Proc. Natl Acad. Sci. USA 108, 15852–15857.

Martinez G., Vidal R. L., Mardones P. et al. (2016) Regulation of

Memory Formation by the Transcription Factor XBP1. Cell Rep.

14, 1382–1394.

Mazer C., Muneyyirci J., Taheny K., Raio N., Borella A. and WhitakerAzmitia P. (1997) Serotonin depletion during synaptogenesis leads

to decreased synaptic density and learning deficits in the adult rat: a

possible model of neurodevelopmental disorders with cognitive

deficits. Brain Res. 760, 68–73.

Minichiello L. (2009) TrkB signalling pathways in LTP and learning.

Nat. Rev. Neurosci. 10, 850–860.

Miyamoto Y., Yamauchi J., Tanoue A., Wu C. and Mobley W. C. (2006)

TrkB binds and tyrosine-phosphorylates Tiam1, leading to

activation of Rac1 and induction of changes in cellular

morphology. Proc. Natl Acad. Sci. USA 103, 10444–10449.

Murakami T., Hino S. I., Saito A. and Imaizumi K. (2007) Endoplasmic

reticulum stress response in dendrites of cultured primary neurons.

Neuroscience 146, 1–8.

Negro A., Tavella A., Grandi C. and Skaper S. D. (1994) Production and

characterization of recombinant rat brain-derived neurotrophic

factor and neurotrophin-3 from insect cells. J. Neurochem. 62,

471–478.

Ng D. T., Spear E. D. and Walter P. (2000) The unfolded protein

response regulates multiple aspects of secretory and membrane

© 2017 The Authors. Journal of Neurochemistry published by John Wiley & Sons Ltd on behalf of

International Society for Neurochemistry, J. Neurochem. (2018) 144, 35--49

Dendritic IRE1 handles neurofunction via BDNF

protein biogenesis and endoplasmic reticulum quality control.

J. Cell Biol. 150, 77–88.

Nicholls D. and Attwell D. (1990) The release and uptake of excitatory

amino acids. Trends Pharmacol. Sci. 11, 462–468.

Nicoll R. A. and Schmitz D. (2005) Synaptic plasticity at hippocampal

mossy fibre synapses. Nat. Rev. Neurosci. 6, 863–876.

Ogura A., Miyamoto M. and Kudo Y. (1988) Neuronal death in vitro:

parallelism between survivability of hippocampal neurones and

sustained elevation of cytosolic Ca2 + after exposure to glutamate

receptor agonist. Exp. Brain Res. 73, 447–458.

Okubo Y., Suzuki J., Kanemaru K., Nakamura N., Shibata T. and Iino

M. (2015) Visualization of Ca2 + Filling Mechanisms upon

Synaptic Inputs in the Endoplasmic Reticulum of Cerebellar

Purkinje Cells. J. Neurosci. 35, 15837–15846.

Olson M. F. (2004) Contraction reaction: mechanical regulation of Rho

GTPase. Trends Cell Biol. 14, 111–114.

Park H. and Poo M. M. (2013) Neurotrophin regulation of neural circuit

development and function. Nat. Rev. Neurosci. 14, 7–23.

Ron D. (2002) Translational control in the endoplasmic reticulum stress

response. J. Clin. Investig. 110, 1383–1388.

Ron D. and Walter P. (2007) Signal integration in the endoplasmic

reticulum unfolded protein response. Nat. Rev. Mol. Cell Biol. 8,

519–529.

Rutkowski D. T. and Kaufman R. J. (2004) A trip to the ER: coping with

stress. Trends Cell Biol. 14, 20–28.

Sandhya V. K., Raju R., Verma R. et al. (2013) A network map of

BDNF/TRKB and BDNF/p75NTR signaling system. J. Cell

Commun. Signal. 7, 301–307.

Saneyoshi T., Fortin D. A. and Soderling T. R. (2010) Regulation of

spine and synapse formation by activity-dependent intracellular

signaling pathways. Curr. Opin. Neurobiol. 20, 108–115.

Sfakianos M. K., Eisman A., Gourley S. L. et al. (2007) Inhibition of

Rho via Arg and p190RhoGAP in the postnatal mouse

hippocampus regulates dendritic spine maturation, synapse and

dendrite stability, and behavior. J. Neurosci. 27, 10982–10992.

Shah S. Z., Zhao D., Khan S. H. and Yang L. (2015) Unfolded protein

response pathways in neurodegenerative diseases. J. Mol.

Neurosci. 57, 529–537.

Spruston N. (2008) Pyramidal neurons: dendritic structure and synaptic

integration. Nat. Rev. Neurosci. 9, 206–221.

Thakker-Varia S., Alder J., Crozier R. A., Plummer M. R. and Black I.

B. (2001) Rab3A is required for brain-derived neurotrophic factorinduced synaptic plasticity: transcriptional analysis at the

population and single-cell levels. J. Neurosci. 21, 6782–6790.

Tirasophon W., Welihinda A. A. and Kaufman R. J. (1998) A stress

response pathway from the endoplasmic reticulum to the nucleus

requires a novel bifunctional protein kinase/endoribonuclease

(Ire1p) in mammalian cells. Genes Dev. 12, 1812–1824.

Travers K. J., Patil C. K., Wodicka L., Lockhart D. J., Weissman J. S.

and Walter P. (2000) Functional and genomic analyses reveal an

essential coordination between the unfolded protein response and

ER-associated degradation. Cell 101, 249–258.

Trinh M. A., Ma T., Kaphzan H., Bhattacharya A., Antion M. D.,

Cavener D. R., Hoeffer C. A. and Klann E. (2014) The eIF2alpha

kinase PERK limits the expression of hippocampal metabotropic

49

glutamate receptor-dependent long-term depression. Learn. Mem.

21, 298–304.

Tsukita S. and Ishikawa H. (1976) Three-dimensional distribution of

smooth endoplasmic reticulum in myelinated axons. J. Electron

Microsc. 25, 141–149.

Urban P., Pavlikova M., Sivonova M., Kaplan P., Tatarkova Z.,

Kaminska B. and Lehotsky J. (2009) Molecular analysis of

endoplasmic reticulum stress response after global forebrain

ischemia/reperfusion in rats: effect of neuroprotectant

simvastatin. Cell. Mol. Neurobiol. 29, 181–192.

Valenzuela V., Collyer E., Armentano D., Parsons G. B., Court F. A. and

Hetz C. (2012) Activation of the unfolded protein response

enhances motor recovery after spinal cord injury. Cell Death Dis.

3, e272.

Wang X. Z., Harding H. P., Zhang Y., Jolicoeur E. M., Kuroda M. and

Ron D. (1998) Cloning of mammalian Ire1 reveals diversity in the

ER stress responses. EMBO J. 17, 5708–5717.

Wei X., Howell A. S., Dong X., Taylor C. A., Cooper R. C., Zhang J.,

Zou W., Sherwood D. R. and Shen K. (2015) The unfolded protein

response is required for dendrite morphogenesis. eLife 4, e06963.

Wetmore C., Olson L. and Bean A. J. (1994) Regulation of brain-derived

neurotrophic factor (BDNF) expression and release from

hippocampal neurons is mediated by non-NMDA type glutamate

receptors. J. Neurosci. 14, 1688–1700.

Yoshida H., Haze K., Yanagi H., Yura T. and Mori K. (1998)

Identification of the cis-acting endoplasmic reticulum stress

response element responsible for transcriptional induction of

mammalian glucose-regulated proteins. Involvement of basic

leucine zipper transcription factors. J. Biol. Chem. 273, 33741–

33749.

Yoshida H., Okada T., Haze K., Yanagi H., Yura T., Negishi M. and

Mori K. (2000) ATF6 activated by proteolysis binds in the

presence of NF-Y (CBF) directly to the cis-acting element

responsible for the mammalian unfolded protein response. Mol.

Cell. Biol. 20, 6755–6767.

Yoshida H., Matsui T., Yamamoto A., Okada T. and Mori K. (2001)

XBP1 mRNA is induced by ATF6 and spliced by IRE1 in response

to ER stress to produce a highly active transcription factor. Cell

107, 881–891.

Yoshida H., Matsui T., Hosokawa N., Kaufman R. J., Nagata K. and

Mori K. (2003) A time-dependent phase shift in the mammalian

unfolded protein response. Dev. Cell 4, 265–271.

Yu Z., Luo H., Fu W. and Mattson M. P. (1999) The endoplasmic

reticulum stress-responsive protein GRP78 protects neurons

against excitotoxicity and apoptosis: suppression of oxidative

stress and stabilization of calcium homeostasis. Exp. Neurol. 155,

302–314.

Zachor D. A., Moore J. F., Brezausek C., Theibert A. and Percy A. K.

(2000) Cocaine inhibits NGF-induced PC12 cells differentiation

through D(1)-type dopamine receptors. Brain Res. 869, 85–97.

Zafra F., Castren E., Thoenen H. and Lindholm D. (1991) Interplay

between glutamate and gamma-aminobutyric acid transmitter

systems in the physiological regulation of brain-derived

neurotrophic factor and nerve growth factor synthesis in

hippocampal neurons. Proc. Natl Acad. Sci. USA 88, 10037–10041.

© 2017 The Authors. Journal of Neurochemistry published by John Wiley & Sons Ltd on behalf of

International Society for Neurochemistry, J. Neurochem. (2018) 144, 35--49

...

参考文献をもっと見る