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Diiron Oxidation State Control of Substrate Access to the Active Site of Soluble Methane Monooxygenase Mediated by the Regulatory Component

机译:Diiron氧化态控制基质进入可溶性甲烷单加氧酶活性位点的调节成分介导

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摘要

The regulatory component (MMOB) of soluble methane monooxygenase (sMMO) has a unique N-terminal tail not found in regulatory proteins of other bacterial multicomponent monooxygenases. This N-terminal tail is indispensable for proper function, yet its solution structure and role in catalysis remain elusive. Here, by using double electron–electron resonance (DEER) spectroscopy, we show that the oxidation state of the hydroxylase component, MMOH, modulates the conformation of the N-terminal tail in the MMOH–2MMOB complex, which in turn facilitates catalysis. The results reveal that the N-terminal tail switches from a relaxed, flexible conformational state to an ordered state upon MMOH reduction from the diiron(III) to the diiron(II) state. This observation suggests that some of the crystallographically observed allosteric effects that result in the connection of substrate ingress cavities in the MMOH–2MMOB complex may not occur in solution in the diiron(III) state. Thus, O[subscript 2] may not have easy access to the active site until after reduction of the diiron center. The observed conformational change is also consistent with a higher binding affinity of MMOB to MMOH in the diiron(II) state, which may allow MMOB to displace more readily the reductase component (MMOR) from MMOH following reduction.
机译:可溶性甲烷单加氧酶(sMMO)的调节成分(MMOB)具有独特的N末端尾巴,而其他细菌多组分单加氧酶的调节蛋白中没有。该N末端尾部对于正常功能必不可少,但其溶液结构和催化作用仍然难以捉摸。在这里,通过使用双电子-电子共振(DEER)光谱,我们发现羟化酶成分MMOH的氧化态调节MMOH-2MMOB配合物中N末端尾巴的构象,进而促进了催化作用。结果表明,当MMOH从二价铁(III)还原为二价铁(II)时,N末端尾巴从松弛的柔性构象状态转换为有序状态。该观察结果表明,在晶体学中观察到的一些变构效应,可能导致在二铁(III)状态的溶液中不会发生MMOH-2MMOB配合物中底物进入腔的连接。因此,直到二铁中心还原后,O [下标2]可能无法轻易进入活性位点。观察到的构象变化也与在二铁(II)状态下MMOB与MMOH的更高结合亲和力一致,这可以使MMOB在还原后更容易地从MMOH置换还原酶组分(MMOR)。

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