Elucidation of the Molecular Mechanism and Exploration of Novel Therapeutics for Spinocerebellar Ataxia Caused by Mutant Protein Kinase Cγ
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概要
- 論文の詳細を見る
Spinocerebellar ataxia (SCA) is an inherited neurodegenerative disorder that is characterized by cerebellar atrophy and progressive ataxia and is classified into 31 types by the genetic locus. Recently, missense mutations of PRKCG genes that code protein kinase Cγ (γPKC) have been identified as a causal gene of SCA14. To explore the molecular mechanism of SCA14 pathogenesis, we investigated how mutant γPKC causes the neurodegeneration of cerebellar Purkinje cells (PCs) by expressing mutant γPKC-GFP in cell lines and primary cultured PCs. Mutant γPKC was susceptible to aggregation in the cytoplasm, which led to an impairment of the ubiquitin–proteasome system and apoptosis. Furthermore, mutant γPKC induced improper dendritic development of cultured PCs in an aggregation-independent manner. Stimulation-induced translocation of mutant γPKC in PC dendrites was prominently attenuated by the reduced mobility of oligomerized mutant γPKC, which resulted in attenuated signal transduction and the improper morphology of PC dendrites. These findings suggested that the oligomerization and aggregation of mutant γPKC caused improper dendritic development and apoptosis of PCs, which led to cerebellar dysfunction and SCA14 pathogenesis. We screened the chemicals that improved these cellular dysfunctions and identified several compounds, including trehalose and Congo red, which could be novel therapeutics for SCA14.
著者
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Seki Takahiro
Department Of Molecular And Pharmacological Neuroscience Graduate School Of Biomedical Sciences Hiro
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Seki T
Department Of Molecular And Pharmacological Neuroscience Graduate School Of Biomedical Sciences Hiro
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Takahashi Hideyuki
Laboratory of Molecular Pharmacology, Biosignal Research Center, Kobe University, Japan
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Adachi Naoko
Laboratory of Molecular Pharmacology, Biosignal Research Center, Kobe University, Japan
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Yamamoto Kazuhiro
Department Of Biotechnology And Chemistry Kinki University
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Saito Naoaki
Laboratory Of Molecular Pharmacology Biosignal Research Center Kobe Univ.
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Sakai Norio
Department Of Developmental Medicine (pediatrics) D-5 Osaka University Graduate School Of Medicine.
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Abe-Seki Nana
Department of Molecular and Pharmacological Neuroscience, Graduate School of Biomedical Sciences, Hi
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Shimahara Takayuki
Department of Molecular and Pharmacological Neuroscience, Graduate School of Biomedical Sciences, Hi
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Seki Takahiro
Department Of Computer Science Tokyo Institute Of Technology:(present Address)ibm Global Service-jap
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Sakai Norio
Department Of Biopharmaceutics And Drug Rational Research Center School Of Pharmacy Tokyo University
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Takahashi Hideyuki
Laboratory Of Genetic Engineering Graduate School Of Agriculture Kyoto Prefectural University
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