Bulutoglu Beyza, Garcia Kristen E, Wu Fei, Minteer Shelley D, Banta Scott
Department of Chemical Engineering, Columbia University , New York, New York 10027, United States.
Department of Chemistry, The University of Utah , Salt Lake City, Utah 84112, United States.
ACS Chem Biol. 2016 Oct 21;11(10):2847-2853. doi: 10.1021/acschembio.6b00523. Epub 2016 Sep 1.
Supramolecular assembly of enzymes into metabolon structures is thought to enable efficient transport of reactants between active sites via substrate channeling. Recombinant versions of porcine citrate synthase (CS), mitochondrial malate dehydrogenase (mMDH), and aconitase (Aco) were found to adopt a homogeneous native-like metabolon structure in vitro. Site-directed mutagenesis performed on highly conserved arginine residues located in the positively charged channel connecting mMDH and CS active sites led to the identification of CS(R65A) which retained high catalytic efficiency. Substrate channeling between the CS mutant and mMDH was severely impaired and the overall channeling probability decreased from 0.99 to 0.023. This work provides direct mechanistic evidence for the channeling of reaction intermediates, and disruption of this interaction would have important implications on the control of flux in central carbon metabolism.
酶超分子组装成代谢体结构被认为能够通过底物通道化实现反应物在活性位点之间的高效运输。研究发现,猪柠檬酸合酶(CS)、线粒体苹果酸脱氢酶(mMDH)和乌头酸酶(Aco)的重组版本在体外会形成一种均匀的、类似天然的代谢体结构。对位于连接mMDH和CS活性位点的带正电荷通道中的高度保守精氨酸残基进行定点诱变,鉴定出了保留高催化效率的CS(R65A)。CS突变体与mMDH之间的底物通道化严重受损,整体通道化概率从0.99降至0.023。这项工作为反应中间体的通道化提供了直接的机制证据,这种相互作用的破坏将对中心碳代谢通量的控制产生重要影响。