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Phosphorylation of EIF2S1 (eukaryotic translation initiation factor 2 subunit alpha) is indispensable for nuclear translocation of TFEB and TFE3 during ER stress

Authors
 Thao Thi Dang  ;  Mi-Jeong Kim  ;  Yoon Young Lee  ;  Hien Thi Le  ;  Kook Hwan Kim  ;  Somi Nam  ;  Seung Hwa Hyun  ;  Hong Lim Kim  ;  Su Wol Chung  ;  Hun Taeg Chung  ;  Eek-Hoon Jho  ;  Hiderou Yoshida  ;  Kyoungmi Kim  ;  Chan Young Park  ;  Myung-Shik Lee  ;  Sung Hoon Back 
Citation
 AUTOPHAGY, Vol.19(7) : 2111-2142, 2023-07 
Journal Title
AUTOPHAGY
ISSN
 1554-8627 
Issue Date
2023-07
MeSH
Animals ; Autophagy / genetics ; Basic Helix-Loop-Helix Leucine Zipper Transcription Factors / metabolism ; Calcineurin / metabolism ; Endoplasmic Reticulum-Associated Degradation ; Endoribonucleases* / metabolism ; Fibroblasts / metabolism ; Lysosomes / metabolism ; Mice ; Microtubule-Associated Proteins / metabolism ; Phosphorylation ; Prokaryotic Initiation Factor-2 / metabolism ; Protein Serine-Threonine Kinases* / metabolism ; Sodium Dodecyl Sulfate / metabolism
Keywords
ATF6 ; EIF2S1 phosphorylation ; ER stress ; TFEB ; autophagy ; nuclear translocation ; phosphorylation TFE3 ; transcription factor E3 ; transcription factor EB
Abstract
There are diverse links between macroautophagy/autophagy pathways and unfolded protein response (UPR) pathways under endoplasmic reticulum (ER) stress conditions to restore ER homeostasis. Phosphorylation of EIF2S1/eIF2 alpha is an important mechanism that can regulate all three UPR pathways through transcriptional and translational reprogramming to maintain cellular homeostasis and overcome cellular stresses. In this study, to investigate the roles of EIF2S1 phosphorylation in regulation of autophagy during ER stress, we used EIF2S1 phosphorylation-deficient (A/A) cells in which residue 51 was mutated from serine to alanine. A/A cells exhibited defects in several steps of autophagic processes (such as autophagosome and autolysosome formation) that are regulated by the transcriptional activities of the autophagy master transcription factors TFEB and TFE3 under ER stress conditions. EIF2S1 phosphorylation was required for nuclear translocation of TFEB and TFE3 during ER stress. In addition, EIF2AK3/PERK, PPP3/calcineurin-mediated dephosphorylation of TFEB and TFE3, and YWHA/14-3-3 dissociation were required for their nuclear translocation, but were insufficient to induce their nuclear retention during ER stress. Overexpression of the activated ATF6/ATF6 alpha form, XBP1s, and ATF4 differentially rescued defects of TFEB and TFE3 nuclear translocation in A/A cells during ER stress. Consequently, overexpression of the activated ATF6 or TFEB form more efficiently rescued autophagic defects, although XBP1s and ATF4 also displayed an ability to restore autophagy in A/A cells during ER stress. Our results suggest that EIF2S1 phosphorylation is important for autophagy and UPR pathways, to restore ER homeostasis and reveal how EIF2S1 phosphorylation connects UPR pathways to autophagy.
Files in This Item:
T992023221.pdf Download
DOI
10.1080/15548627.2023.2173900
Appears in Collections:
1. College of Medicine (의과대학) > BioMedical Science Institute (의생명과학부) > 1. Journal Papers
Yonsei Authors
Kim, Kook Hwan(김국환)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/199486
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