Literature DB >> 31666338

Emerging roles for the ER stress sensor IRE1α in metabolic regulation and disease.

Shijia Huang1, Yuying Xing1, Yong Liu2.   

Abstract

Inositol-requiring enzyme 1 (IRE1) is an endoplasmic reticulum (ER)-resident transmembrane protein that senses ER stress and is evolutionarily conserved from yeast to humans. IRE1 possesses both Ser/Thr protein kinase and endoribonuclease (RNase) activities within its cytoplasmic domain and is activated through autophosphorylation and dimerization/oligomerization. It mediates a critical arm of the unfolded protein response to manage ER stress provoked by lumenal overload of unfolded/misfolded proteins. Emerging lines of evidence have revealed that in mammals, IRE1α functions as a multifunctional signal transducer that responds to metabolic cues and nutrient stress conditions, exerting profound and broad effects on metabolic homeostasis. In this review, we cover recent advances in our understanding of how IRE1α integrates a variety of metabolic and stress signals and highlight its tissue-specific or context-dependent metabolic activities. We also discuss how dysregulation of this metabolic stress sensor during handling of excessive nutrients in cells contributes to the progression of obesity and metabolic disorders.
© 2019 Huang et al.

Entities:  

Keywords:  ER-associated degradation; IRE1α; X-box–binding protein 1 (XBP1); endoplasmic reticulum stress (ER stress); endoplasmic reticulum to nucleus signaling 1 (Ern1); metabolic inflammation; nutrient sensing; regulated IRE1-dependent decay (RIDD); signal transduction; unfolded protein response (UPR)

Mesh:

Substances:

Year:  2019        PMID: 31666338      PMCID: PMC6901316          DOI: 10.1074/jbc.REV119.007036

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  166 in total

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Journal:  Mol Cell       Date:  2018-01-18       Impact factor: 17.970

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Authors:  Alexei V Korennykh; Pascal F Egea; Andrei A Korostelev; Janet Finer-Moore; Chao Zhang; Kevan M Shokat; Robert M Stroud; Peter Walter
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7.  Protective effects of tetramethylpyrazine on dysfunction of the locus coeruleus in rats exposed to single prolonged stress by anti-ER stress mechanism.

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9.  Multi-OMICS study of a CHCHD10 variant causing ALS demonstrates metabolic rewiring and activation of endoplasmic reticulum and mitochondrial unfolded protein responses.

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10.  Diabetic nephropathy in mice is aggravated by the absence of podocyte IRE1 and is correlated with reduced kidney ADH1 expression.

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