首页> 外文期刊>The Journal of biological chemistry >Novel Binding Motif and New Flexibility Revealed by Structural Analyses of a Pyruvate Dehydrogenase-Dihydrolipoyl Acetyltransferase Subcomplex from the Escherichia coli Pyruvate Dehydrogenase Multienzyme Complex
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Novel Binding Motif and New Flexibility Revealed by Structural Analyses of a Pyruvate Dehydrogenase-Dihydrolipoyl Acetyltransferase Subcomplex from the Escherichia coli Pyruvate Dehydrogenase Multienzyme Complex

机译:新型结合基质和新的柔韧性,通过大肠杆菌丙酮酸脱氢酶脱氢酶脱氢酶复合物的丙酮酸脱氢酶 - 二氢羟乙酰乙酰乙酰转移酶分组的结构分析揭示

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The Escherichia coli pyruvate dehydrogenase multienzyme complex contains multiple copies of three enzymatic components, E1p, E2p, and E3, that sequentially carry out distinct steps in the overall reaction converting pyruvate to acetyl-CoA. Efficient functioning requires the enzymatic components to assemble into a large complex, the integrity of which is maintained by tethering of the displaced, peripheral E1p and E3 components to the E2p core through non-covalent binding. We here report the crystal structure of a subcomplex between E1p and an E2p didomain containing a hybrid lipoyl domain along with the peripheral subunit-binding domain responsible for tethering to the core. In the structure, a region at the N terminus of each subunit in the E1p homodimer previously unseen due to crystallographic disorder was observed, revealing a new folding motif involved in E1p-E2p didomain interactions, and an additional, unexpected, flexibility was discovered in the E1p-E2p didomain subcomplex, both of which probably have consequences in the overall multienzyme complex assembly. This represents the first structure of an E1p-E2p didomain subcomplex involving a homodimeric E1p, and the results may be applicable to a large range of complexes with homodimeric E1 components. Results of HD exchange mass spectrometric experiments using the intact, wild type 3-lipoyl E2p and E1p are consistent with the crystallographic data obtained from the E1p-E2p didomain subcomplex as well as with other biochemical and NMR data reported from our groups, confirming that our findings are applicable to the entire E1p-E2p assembly.
机译:大肠杆菌丙酮酸脱氢酶脱氢酶络合物含有三个酶促成分,E1P,E2P和E3的多个拷贝,其在将丙酮酸转化为乙酰辅酶的总反应中依次执行不同的步骤。有效的功能需要酶促组分组装成大复合物,其完整性通过非共价结合通过置换的,外周E1p和E3组分的束缚来维持到E2P核心。我们在这里报道了E1P与含有杂交Lipoyl结构域的E2P脱母之间的子酶的晶体结构以及负责核心的周围亚基结合结构域。在该结构中,在E1P同源过二聚器中的每种亚基的N末端的区域被观察到,由于晶体紊乱,揭示了涉及E1P-E2P脱映的新的折叠基序,并在此处发现了额外的意外的灵活性E1P-E2P脱瘤子拷贝,两者都可能对整个偏见复合组件产生后果。这代表了涉及同源聚合物E1p的E1P-E2P脱瘤子酶的第一结构,结果可以适用于具有同型聚合物E1组分的大量复合物。使用完整的HD Exchange质谱实验的结果,野生型3-脂肪醇E2P和E1P与从E1P-E2P脱瘤脱母和来自我们的团体报告的其他生化和NMR数据中获得的晶体学数据一致,确认我们的调查结果适用于整个E1P-E2P组件。

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