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Ring domains are essential for GATOR2-dependent mTORC1 activation

Authors :
Cong Jiang
Xiaoming Dai
Shaohui He
Hongfei Zhou
Lan Fang
Jianping Guo
Songlei Liu
Tao Zhang
Weijuan Pan
Haihong Yu
Tianmin Fu
Dali Li
Hiroyuki Inuzuka
Ping Wang
Jianru Xiao
Wenyi Wei
Source :
Molecular Cell. 83:74-89.e9
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

The GATOR2-GATOR1 signaling axis is essential for amino-acid-dependent mTORC1 activation. However, the molecular function of the GATOR2 complex remains unknown. Here, we report that disruption of the Ring domains of Mios, WDR24, or WDR59 completely impedes amino-acid-mediated mTORC1 activation. Mechanistically, via interacting with Ring domains of WDR59 and WDR24, the Ring domain of Mios acts as a hub to maintain GATOR2 integrity, disruption of which leads to self-ubiquitination of WDR24. Physiologically, leucine stimulation dissociates Sestrin2 from the Ring domain of WDR24 and confers its availability to UBE2D3 and subsequent ubiquitination of NPRL2, contributing to GATOR2-mediated GATOR1 inactivation. As such, WDR24 ablation or Ring deletion prevents mTORC1 activation, leading to severe growth defects and embryonic lethality at E10.5 in mice. Hence, our findings demonstrate that Ring domains are essential for GATOR2 to transmit amino acid availability to mTORC1 and further reveal the essentiality of nutrient sensing during embryonic development.

Subjects

Subjects :
Cell Biology
Molecular Biology

Details

ISSN :
10972765
Volume :
83
Database :
OpenAIRE
Journal :
Molecular Cell
Accession number :
edsair.doi.dedup.....a8c4704be89165c0515f73431b656e43
Full Text :
https://doi.org/10.1016/j.molcel.2022.11.021