Energy stress promotes P-bodies formation via lysine-63-linked polyubiquitination of HAX1

Author:

Zhan Wanqi,Li Zhiyang,Zhang JieORCID,Liu YongfengORCID,Liu Guanglong,Li BingsongORCID,Shen Rong,Jiang Yi,Shang Wanjing,Gao Shenjia,Wu Han,Wang Ya’nan,Chen WankunORCID,Wang ZhizhangORCID

Abstract

AbstractEnergy stress, characterized by the reduction of intracellular ATP, has been implicated in various diseases, including cancer. Here, we show that energy stress promotes the formation of P-bodies in a ubiquitin-dependent manner. Upon ATP depletion, the E3 ubiquitin ligase TRIM23 catalyzes lysine-63 (K63)-linked polyubiquitination of HCLS1-associated protein X-1 (HAX1). HAX1 ubiquitination triggers its liquid‒liquid phase separation (LLPS) and contributes to P-bodies assembly induced by energy stress. Ubiquitinated HAX1 also interacts with the essential P-body proteins, DDX6 and LSM14A, promoting their condensation. Moreover, we find that this TRIM23/HAX1 pathway is critical for the inhibition of global protein synthesis under energy stress conditions. Furthermore, high HAX1 ubiquitination, and increased cytoplasmic localization of TRIM23 along with elevated HAX1 levels, promotes colorectal cancer (CRC)-cell proliferation and correlates with poor prognosis in CRC patients. Our data not only elucidate a ubiquitination-dependent LLPS mechanism in RNP granules induced by energy stress but also propose a promising target for CRC therapy.

Funder

MOST | National Natural Science Foundation of China

STCSM | Program of Shanghai Academic Research Leader

Guangzhou Science, Technology and Innovation Commission

Publisher

Springer Science and Business Media LLC

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