Insights into the mechanism of phospholipid hydrolysis by plant non-specific phospholipase C

Author:

fan ruyi,Zhao Fen1,Gong Zhou2,Chen Yanke3,Yang Bao1,Zhou Chen1,Zhang Jie1,Du Zhangmeng1,Wang Xuemin4ORCID,Yin Ping5ORCID,Guo Liang1ORCID,Liu Zhu1ORCID

Affiliation:

1. Huazhong Agricultural University

2. Wuhan Institute of Physics and Mathematics of Chinese Academy of Sciences

3. Innovation Academy for Precision Measurement Science and Technology, Chinese Academy of Sciences

4. University of Missouri and Danforth Plant Science Center

5. National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research, Huazhong Agricultural University, Wuhan 430070, China

Abstract

Abstract Non-specific phospholipase C (NPC) hydrolyzes major membrane phospholipids to release diacylglycerol (DAG), a potent lipid-derived messenger regulating cell functions. Despite extensive studies on NPCs reveal their fundamental roles in plant growth and development, the mechanistic understanding of phospholipid-hydrolyzing by NPCs, remains largely unknown. Here we report the crystal structure of Arabidopsis NPC4 at a resolution of 2.1 Å. NPC4 is divided into a phosphoesterase domain (PD) and a C-terminal domain (CTD), and is structurally distinct from other characterized phospholipases. The previously uncharacterized CTD is indispensable for the full activity of NPC4. Mechanistically, CTD contributes NPC4 activity mainly via CTDα1-PD interaction, which ultimately stabilizes the catalytic pocket in PD. Together with a series of structure-guided biochemical studies, our work elucidates the structural basis and provides molecular mechanism of phospholipid hydrolysis by NPC4, and adds new insights into the members of phospholipase family.

Publisher

Research Square Platform LLC

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