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Probing substrate binding to the metal binding sites in metallo-β-lactamase L1 during catalysis

机译:探测在催化过程中底物与金属β-内酰胺酶L1中金属结合位点的结合

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摘要

Metal ions in metallo-β-lactamases (MBLs) play a major role in catalysis. In this study we investigated the role of the metal ions in the Zn1 and Zn2 sites of MBL L1 during catalysis. A ZnCo (with Zn(II) in the invariant Zn1 site and Co(II) in the Zn2 site) analog of MBL L1 was prepared by using a biological incorporation method. Extended X-ray Absorption Fine Structure (EXAFS) spectroscopic studies were used to confirm that the ZnCo analog was prepared. To study the roles of the Zn(II) and Co(II) ions during catalysis, rapid freeze quench (RFQ)-EXAFS studies were used to probe the reaction of the ZnCo-L1 analog with chromacef when quenched at 10 ms, 50 ms, and 100 ms. The L1-product complex was also analyzed with EXAFS spectroscopy. The data show that the Zn-Co distance is 3.49 Å in the resting enzyme and that this distance increases by 0.3 Å in the sample that was quenched at 10 ms. The average Zn-Co distance decreases at the other time points until reaching a distance of 3.58 Å in the L1-product complex. The data also show that a Co-S interaction is present in the 100 ms quenched sample and in the L1-product complex, which suggests that there is a significant rearrangement of product in the active site.
机译:金属β-内酰胺酶(MBL)中的金属离子在催化中起主要作用。在这项研究中,我们研究了金属离子在MBL L1的Zn1和Zn2位点催化过程中的作用。通过使用生物掺入方法制备了MBL L1的ZnCo(在不变的Zn1位点具有Zn(II),在Zn2位点具有Co(II))类似物。扩展的X射线吸收精细结构(EXAFS)光谱研究用于确认已制备ZnCo类似物。为了研究Zn(II)和Co(II)离子在催化过程中的作用,使用快速冷冻淬灭(RFQ)-EXAFS研究来探究ZnCo-L1类似物在10 ms,50 ms淬灭时与苯甲酰胺的反应。和100毫秒。还使用EXAFS光谱分析了L1产物配合物。数据显示,静止酶中的Zn-Co距离为3.49Å,在10 ms淬灭的样品中,该距离增加0.3Å。在其他时间点,平均Zn-Co距离会减小,直到在L1产品复合物中达到3.58Å的距离为止。数据还表明,在100 ms淬灭的样品和L1产物复合物中存在Co-S相互作用,这表明活性位点中产物发生了显着的重排。

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