The Mechanism of Selective Recognition of Lipid Substrate by hDHHC20 Enzyme

Author:

Panina Irina S.ORCID,Krylov Nikolay A.ORCID,Chugunov Anton O.ORCID,Efremov Roman G.ORCID,Kordyukova Larisa V.ORCID

Abstract

S-acylation is a post-translational linkage of long chain fatty acids to cysteines, playing a key role in normal physiology and disease. In human cells, the reaction is catalyzed by a family of 23 membrane DHHC-acyltransferases (carrying an Asp-His-His-Cys catalytic motif) in two stages: (1) acyl-CoA-mediated autoacylation of the enzyme; and (2) further transfer of the acyl chain to a protein substrate. Despite the availability of a 3D-structure of human acyltransferase (hDHHC20), the molecular aspects of lipid selectivity of DHHC-acyltransferases remain unclear. In this paper, using molecular dynamics (MD) simulations, we studied membrane-bound hDHHC20 right before the acylation by C12-, C14-, C16-, C18-, and C20-CoA substrates. We found that: (1) regardless of the chain length, its terminal methyl group always reaches the “ceiling” of the enzyme’s cavity; (2) only for C16, an optimal “reactivity” (assessed by a simple geometric criterion) permits the autoacylation; (3) in MD, some key interactions between an acyl-CoA and a protein differ from those in the reference crystal structure of the C16-CoA-hDHHS20 mutant complex (probably, because this structure corresponds to a non-native dimer). These features of specific recognition of full-size acyl-CoA substrates support our previous hypothesis of “geometric and physicochemical selectivity” derived for simplified acyl-CoA analogues.

Funder

Russian Science Foundation

Russian Foundation for Basic Research

HSE University Basic Research Program

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference48 articles.

1. Synthetic Protein Lipidation;Curr. Opin. Chem. Biol.,2015

2. Global Profiling of Dynamic Protein Palmitoylation;Nat. Methods,2011

3. What Does S-Palmitoylation Do to Membrane Proteins?;FEBS J.,2013

4. Fatty Acylation of Proteins: The Long and the Short of It;Prog. Lipid Res.,2016

5. Stearic Acid Blunts Growth-Factor Signaling via Oleoylation of GNAI Proteins;Nat. Commun.,2021

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