Amaro Rommie E, Sethi Anurag, Myers Rebecca S, Davisson V Jo, Luthey-Schulten Zaida A
Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Biochemistry. 2007 Feb 27;46(8):2156-73. doi: 10.1021/bi061708e. Epub 2007 Jan 30.
We have combined equilibrium and steered molecular dynamics (SMD) simulations with principal component and correlation analyses to probe the mechanism of allosteric regulation in imidazole glycerol phosphate (IGP) synthase. An evolutionary analysis of IGP synthase revealed a conserved network of interactions leading from the effector binding site to the glutaminase active site, forming conserved communication pathways between the remote active sites. SMD simulations of the undocking of the ribonucleotide effector N1-[(5'-phosphoribulosyl)-formino]-5'-aminoimidazole carboxamide ribonucleotide (PRFAR) resulted in a large scale hinge-opening motion at the interface. Principal component analysis and a correlation analysis of the equilibration protein motion indicate that the dynamics involved in the allosteric transition are mediated by coupled motion between sites that are more than 25 A apart. Furthermore, conserved residues at the substrate-binding site, within the barrel, and at the interface were found to exhibit highly correlated motion during the allosteric transition. The coupled motion between PRFAR unbinding and the directed opening of the interface is interpreted in combination with kinetic assays for the wild-type and mutant systems to develop a model of allosteric regulation in IGP synthase that is monitored and investigated with atomic resolution.
我们将平衡态和引导分子动力学(SMD)模拟与主成分分析和相关性分析相结合,以探究咪唑甘油磷酸(IGP)合酶的变构调节机制。对IGP合酶的进化分析揭示了一个从效应物结合位点到谷氨酰胺酶活性位点的保守相互作用网络,在远程活性位点之间形成了保守的通讯途径。核糖核苷酸效应物N1-[(5'-磷酸核糖基)-甲酰氨基]-5'-氨基咪唑甲酰胺核糖核苷酸(PRFAR)解离的SMD模拟导致界面处发生大规模的铰链打开运动。平衡态蛋白质运动的主成分分析和相关性分析表明,变构转变所涉及的动力学是由相距超过25 Å的位点之间的耦合运动介导的。此外,发现在变构转变过程中,底物结合位点、桶状结构内以及界面处的保守残基表现出高度相关的运动。结合野生型和突变体系统的动力学分析,对PRFAR解离与界面定向打开之间的耦合运动进行了解释,从而建立了一个IGP合酶变构调节模型,并以原子分辨率对其进行监测和研究。