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Two-step Ligand Binding in a (βα)8 Barrel Enzyme

机译:(βα)8桶形酶中的两步配体结合

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摘要

HisA is a (βα)8 barrel enzyme that catalyzes the Amadori rearrangement of N′-[(5′-phosphoribosyl)formimino]-5-aminoimidazole-4-carboxamide ribonucleotide (ProFAR) to N′-((5′-phosphoribulosyl) formimino)-5-aminoimidazole-4-carboxamide-ribonucleotide (PRFAR) in the histidine biosynthesis pathway, and it is a paradigm for the study of enzyme evolution. Still, its exact catalytic mechanism has remained unclear. Here, we present crystal structures of wild type Salmonella enterica HisA (SeHisA) in its apo-state and of mutants D7N and D7N/D176A in complex with two different conformations of the labile substrate ProFAR, which was structurally visualized for the first time. Site-directed mutagenesis and kinetics demonstrated that Asp-7 acts as the catalytic base, and Asp-176 acts as the catalytic acid. The SeHisA structures with ProFAR display two different states of the long loops on the catalytic face of the structure and demonstrate that initial binding of ProFAR to the active site is independent of loop interactions. When the long loops enclose the substrate, ProFAR adopts an extended conformation where its non-reacting half is in a product-like conformation. This change is associated with shifts in a hydrogen bond network including His-47, Asp-129, Thr-171, and Ser-202, all shown to be functionally important. The closed conformation structure is highly similar to the bifunctional HisA homologue PriA in complex with PRFAR, thus proving that structure and mechanism are conserved between HisA and PriA. This study clarifies the mechanistic cycle of HisA and provides a striking example of how an enzyme and its substrate can undergo coordinated conformational changes before catalysis.
机译:HisA是(βα)8桶酶,催化N'-[((5'-磷酸核糖基)甲亚胺基] -5-氨基咪唑-4-羧酰胺核糖核苷酸(ProFAR)的Amadori重排成N'-(((5'-磷酸核糖基))组胺的生物合成途径中使用的是(formimino)-5-aminoimidazole-4-carboxamide-ribonucleotide(PRFAR),它是酶进化研究的范例。但是,其确切的催化机理仍不清楚。在这里,我们介绍了野生型肠杆菌沙门氏菌HisA(SeHisA)的脱脂状态和突变体D7N和D7N / D176A的晶体结构,该结构具有两个不同构型的不稳定底物ProFAR,首次在结构上可视化。定点诱变和动力学表明,Asp-7充当催化碱,Asp-176充当催化酸。具有ProFAR的SeHisA结构在结构的催化面上显示出长环的两种不同状态,并表明ProFAR与活性位点的初始结合与环相互作用无关。当长环包围底物时,ProFAR会采用扩展构象,其中其非反应性一半为类似产物的构象。这种变化与包括His-47,Asp-129,Thr-171和Ser-202在内的氢键网络的转变有关,所有这些都显示出了重要的功能。封闭的构象结构与双功能HisA同源物PriA高度相似,与PRFAR复合,从而证明HisA和PriA之间的结构和机制是保守的。这项研究阐明了HisA的机制循环,并提供了一个惊人的例子,说明酶及其底物如何在催化之前经历协调的构象变化。

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