Back to Search Start Over

XBP1-KLF9 Axis Acts as a Molecular Rheostat to Control the Transition from Adaptive to Cytotoxic Unfolded Protein Response

Authors :
Emily E. Fink
Sudha Moparthy
Archis Bagati
Anna Bianchi-Smiraglia
Brittany C. Lipchick
David W. Wolff
Matthew V. Roll
Jianmin Wang
Song Liu
Andrei V. Bakin
Eugene S. Kandel
Ann-Hwee Lee
Mikhail A. Nikiforov
Source :
Cell Reports, Vol 25, Iss 1, Pp 212-223.e4 (2018)
Publication Year :
2018
Publisher :
Elsevier, 2018.

Abstract

Summary: Transcription factor XBP1s, activated by endoplasmic reticulum (ER) stress in a dose-dependent manner, plays a central role in adaptive unfolded protein response (UPR) via direct activation of multiple genes controlling protein refolding. Here, we report that elevation of ER stress above a critical threshold causes accumulation of XBP1s protein sufficient for binding to the promoter and activation of a gene encoding a transcription factor KLF9. In comparison to other XBP1s targets, KLF9 promoter contains an evolutionary conserved lower-affinity binding site that requires higher amounts of XBP1s for activation. In turn, KLF9 induces expression of two regulators of ER calcium storage, TMEM38B and ITPR1, facilitating additional calcium release from ER, exacerbation of ER stress, and cell death. Accordingly, Klf9 deficiency attenuates tunicamycin-induced ER stress in mouse liver. These data reveal a role for XBP1s in cytotoxic UPR and provide insights into mechanisms of life-or-death decisions in cells under ER stress. : The transcription factor XBP1s plays a central role in suppression of endoplasmic reticulum (ER) stress through direct activation of multiple genes controlling protein refolding. Fink et al. report that elevation of ER stress above a certain threshold triggers an XBP1s-dependent transcriptional program, leading to exacerbation of ER stress and cell death. Keywords: endoplasmic reticulum stress, XBP1s, KLF9, TMEM38B, ITPR1, calcium channel, UPR

Subjects

Subjects :
Biology (General)
QH301-705.5

Details

Language :
English
ISSN :
22111247 and 33867763
Volume :
25
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Cell Reports
Publication Type :
Academic Journal
Accession number :
edsdoj.841b33867763433eac7653bce6e3839f
Document Type :
article
Full Text :
https://doi.org/10.1016/j.celrep.2018.09.013