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   RNA-Processing Protein TDP-43 Regulates FOXO-Dependent Protein Quality Control in Stress Response  
   
نویسنده zhang t. ,baldie g. ,periz g. ,wang j.
منبع plos genetics - 2014 - دوره : 10 - شماره : 10
چکیده    Protein homeostasis is critical for cell survival and functions during stress and is regulated at both rna and protein levels. however,how the cell integrates rna-processing programs with post-translational protein quality control systems is unknown. transactive response dna-binding protein (tardbp/tdp-43) is an rna-processing protein that is involved in the pathogenesis of major neurodegenerative diseases,including amyotrophic lateral sclerosis (als) and frontotemporal dementia (ftd). here,we report a conserved role for tdp-43,from c. elegans to mammals,in the regulation of protein clearance via activation of foxo transcription factors. in response to proteotoxic insults,tdp-43 redistributes from the nucleus to the cytoplasm,promoting nuclear translocation of foxos and relieving an inhibition of foxo activity in the nucleus. the interaction between tdp-43 and the foxo pathway in mammalian cells is mediated by their competitive binding to 14-3-3 proteins. consistent with foxo-dependent protein quality control,tdp-43 regulates the levels of misfolded proteins. therefore,tdp-43 mediates stress responses and couples the regulation of rna metabolism and protein quality control in a foxo-dependent manner. the results suggest that compromising the function of tdp-43 in regulating protein homeostasis may contribute to the pathogenesis of related neurodegenerative diseases. © 2014 zhang et al.
آدرس department of biochemistry and molecular biology,bloomberg school of public health,the johns hopkins university,baltimore,md,united states,department of neuroscience,school of medicine,the johns hopkins university,baltimore,md, United States, department of biochemistry and molecular biology,bloomberg school of public health,the johns hopkins university,baltimore,md,united states,department of neuroscience,school of medicine,the johns hopkins university,baltimore,md, United States, department of biochemistry and molecular biology,bloomberg school of public health,the johns hopkins university,baltimore,md,united states,department of neuroscience,school of medicine,the johns hopkins university,baltimore,md, United States, department of biochemistry and molecular biology,bloomberg school of public health,the johns hopkins university,baltimore,md,united states,department of neuroscience,school of medicine,the johns hopkins university,baltimore,md, United States
 
     
   
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