Structural basis for catalysis and selectivity of phospholipid synthesis by eukaryotic choline-phosphotransferase

Author:

Roberts Jacquelyn R.ORCID,Horibata YasuhiroORCID,Kwarcinski Frank E.,Lam Vinson,Raczkowski Ashleigh M.ORCID,Hubbard Akane,White Betsy,Sugimoto Hiroyuki,Tall Gregory G.ORCID,Ohi Melanie D.ORCID,Maeda ShojiORCID

Abstract

AbstractPhospholipids are the most abundant component in lipid membranes and are essential for the structural and functional integrity of the cell. In eukaryotic cells, phospholipids are primarily synthesizedde novothrough the Kennedy pathway that involves multiple enzymatic processes. The terminal reaction is mediated by a group of cytidine-5’-diphosphate (CDP)-choline /CDP-ethanolamine-phosphotransferases (CPT/EPT) that use 1,2-diacylglycerol (DAG) and CDP-choline or CDP-ethanolamine to produce phosphatidylcholine (PC) or phosphatidylethanolamine (PE) those are the main phospholipids in eukaryotic cells. Here we present the structure of the yeast CPT1 in multiple substrate-bound states. Structural and functional analysis of these binding-sites reveal the critical residues for the DAG acyl-chain preference and the choline/ethanolamine selectivity. Additionally, we present the structure in complex with a potent inhibitor characterized in this study. The ensemble of structures allows us to propose the reaction mechanism for phospholipid biosynthesis by the family of CDP-alcohol phosphatidyltransferases (CDP-APs).

Publisher

Cold Spring Harbor Laboratory

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