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Allosteric Site at the Biotin Carboxylase Dimer Interface Mediates Activation and Inhibition in Staphylococcus aureus Pyruvate Carboxylase.
Laseke, Amanda J; Boram, Trevor J; Schneider, Nicholas O; Lohman, Jeremy R; St Maurice, Martin.
Afiliação
  • Laseke AJ; Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin 53201-1881, United States.
  • Boram TJ; Department of Biochemistry, Purdue University, 175 S. University Street, West Lafayette, Indiana 47907, United States.
  • Schneider NO; Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin 53201-1881, United States.
  • Lohman JR; Department of Biochemistry, Purdue University, 175 S. University Street, West Lafayette, Indiana 47907, United States.
  • St Maurice M; Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin 53201-1881, United States.
Biochemistry ; 62(17): 2632-2644, 2023 09 05.
Article em En | MEDLINE | ID: mdl-37603581
ABSTRACT
Allosteric regulation of the essential anaplerotic enzyme, pyruvate carboxylase (PC), is vital for metabolic homeostasis. PC catalyzes the bicarbonate- and ATP-dependent carboxylation of pyruvate to form oxaloacetate. Dysregulation of PC activity can impact glucose and redox metabolism, which contributes to the pathogenicity of many diseases. To maintain homeostasis, PC is allosterically activated by acetyl-CoA and allosterically inhibited by l-aspartate. In this study, we further characterize the molecular basis of allosteric regulation in Staphylococcus aureus PC (SaPC) using slowly/nonhydrolyzable dethia analogues of acetyl-CoA and site-directed mutagenesis of residues at the biotin carboxylase homodimer interface. The dethia analogues fully activate SaPC but demonstrate significantly reduced binding affinities relative to acetyl-CoA. Residues Arg21, Lys46, and Glu418 of SaPC are located at the biotin carboxylase dimer interface and play a critical role in both allosteric activation and inhibition. A structure of R21A SaPC in complex with acetyl-CoA reveals an intact molecule of acetyl-CoA bound at the allosteric site, offering new molecular insights into the acetyl-CoA binding site. This study demonstrates that the biotin carboxylase domain dimer interface is a critical allosteric site in PC, serving as a convergence point for allosteric activation by acetyl-CoA and inhibition by l-aspartate.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Piruvato Carboxilase / Staphylococcus aureus Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Piruvato Carboxilase / Staphylococcus aureus Idioma: En Ano de publicação: 2023 Tipo de documento: Article