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A Tetrahedral Transition State at the Active Sites of the 20S Proteasome Is Coupled to Opening of the alpha-Ring Channel

机译:在20S蛋白酶体的活动位点的四面体过渡态与α环通道的开放耦合。

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Intrinsic conformational transitions contribute to the catalytic action of many enzymes. Here we use a single-molecule approach to demonstrate how such transitions are linked to the catalytic sites of the eukaryotic proteasome, an essential protease of the ubiquitin pathway. The active sites of the cylindrical proteasomal core particle are located in a central chamber accessible through gated entry channels. By using atomic force microscopy, we found continual alternation between open and closed gate conformations. We analyzed the relative abundance of these conformers in wild-type and mutated yeast core particles upon exposure to substrates or inhibitors. Our data indicate that the dynamic gate can be opened by allosteric coupling to a tetrahedral transition state at any of the working active centers. The results point to the No-amine of the N-terminal active site threonyl residue as the major effector group responsible for triggering the essential conformational switch.
机译:固有的构象转变有助于许多酶的催化作用。在这里,我们使用单分子方法来证明这种过渡如何与真核生物蛋白酶体(泛素途径的必需蛋白酶)的催化位点相联系。圆柱形蛋白酶体核心颗粒的活性位点位于通过门控进入通道可进入的中央腔室中。通过使用原子力显微镜,我们发现开门和关门构象之间的连续交替。我们分析了暴露于底物或抑制剂后野生型和突变酵母核心颗粒中这些构象体的相对丰度。我们的数据表明动态闸门可以通过在任何工作的主动中心处通过变构偶联至四面体过渡状态来打开。结果表明,N-末端活性位点苏酰基残基的无胺是负责触发必要构象转换的主要效应子基团。

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