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Nonmuscle myosin IIB links cytoskeleton to IRE1? signaling during ER stress.


ABSTRACT: Here we identify and characterize a cytoskeletal myosin protein required for IRE1? oligomerization, activation, and signaling. Proteomic screening identified nonmuscle myosin heavy chain IIB (NMHCIIB), a subunit of nonmuscle myosin IIB (NMIIB), as an ER stress-dependent interacting protein specific to IRE1?. Loss of NMIIB compromises XBP1s and UPR target gene expression with no effect on the PERK pathway. Mechanistically, NMIIB is required for IRE1? aggregation and foci formation under ER stress. The NMIIB-mediated effect on IRE1? signaling is in part dependent on the phosphorylation of myosin regulatory light chain and the actomyosin contractility of NMIIB. Biologically, the function of NMIIB in ER stress response is conserved as both mammalian cells and C. elegans lacking NMIIB exhibit hypersensitivity to ER stress. Thus, optimal IRE1? activation and signaling require concerted coordination between the ER and cytoskeleton.

SUBMITTER: He Y 

PROVIDER: S-EPMC3547290 | biostudies-literature | 2012 Dec

REPOSITORIES: biostudies-literature

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Nonmuscle myosin IIB links cytoskeleton to IRE1α signaling during ER stress.

He Yin Y   Beatty Alexander A   Han Xuemei X   Ji Yewei Y   Ma Xuefei X   Adelstein Robert S RS   Yates John R JR   Kemphues Kenneth K   Qi Ling L  

Developmental cell 20121201 6


Here we identify and characterize a cytoskeletal myosin protein required for IRE1α oligomerization, activation, and signaling. Proteomic screening identified nonmuscle myosin heavy chain IIB (NMHCIIB), a subunit of nonmuscle myosin IIB (NMIIB), as an ER stress-dependent interacting protein specific to IRE1α. Loss of NMIIB compromises XBP1s and UPR target gene expression with no effect on the PERK pathway. Mechanistically, NMIIB is required for IRE1α aggregation and foci formation under ER stress  ...[more]

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