Allosteric role of the citrate synthase homology domain of ATP citrate lyase

Nat Commun. 2023 Apr 19;14(1):2247. doi: 10.1038/s41467-023-37986-9.

Abstract

ATP citrate lyase (ACLY) is the predominant nucleocytosolic source of acetyl-CoA and is aberrantly regulated in many diseases making it an attractive therapeutic target. Structural studies of ACLY reveal a central homotetrameric core citrate synthase homology (CSH) module flanked by acyl-CoA synthetase homology (ASH) domains, with ATP and citrate binding the ASH domain and CoA binding the ASH-CSH interface to produce acetyl-CoA and oxaloacetate products. The specific catalytic role of the CSH module and an essential D1026A residue contained within it has been a matter of debate. Here, we report biochemical and structural analysis of an ACLY-D1026A mutant demonstrating that this mutant traps a (3S)-citryl-CoA intermediate in the ASH domain in a configuration that is incompatible with the formation of acetyl-CoA, is able to convert acetyl-CoA and OAA to (3S)-citryl-CoA in the ASH domain, and can load CoA and unload acetyl-CoA in the CSH module. Together, this data support an allosteric role for the CSH module in ACLY catalysis.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • ATP Citrate (pro-S)-Lyase* / genetics
  • ATP Citrate (pro-S)-Lyase* / metabolism
  • Acetyl Coenzyme A / metabolism
  • Catalysis
  • Citrate (si)-Synthase / genetics
  • Citrate (si)-Synthase / metabolism

Substances

  • ATP Citrate (pro-S)-Lyase
  • Citrate (si)-Synthase
  • Acetyl Coenzyme A