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首页> 外文期刊>Archives of Biochemistry and Biophysics >Resolution of the uncertainty in the kinetic mechanism for the trans-3-Chloroacrylic acid dehalogenase-catalyzed reaction
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Resolution of the uncertainty in the kinetic mechanism for the trans-3-Chloroacrylic acid dehalogenase-catalyzed reaction

机译:分辨转铁酸酯的动力学机制的不确定性:斜体> -3-氯丙烯酸脱氢酶催化反应

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Abstract trans- and cis-3-Chloroacrylic acid dehalogenase (CaaD and cis-CaaD, respectively) catalyze the hydrolytic dehalogenation of their respective isomers and represent key steps in the bacterial conversion of 1,3-dichloropropene to acetaldehyde. In prior work, a kinetic mechanism for the CaaD-catalyzed reaction could not be unequivocally determined because (1) the order of product release could not be determined and (2) the fluorescence factor for the enzyme species, E*PQ (where P?=?bromide and Q?=?malonate semialdehyde, the two products of the reaction) could not be assigned. The ambiguities in the model have now been resolved by stopped-flow experiments following the reaction using an active site fluorescent probe, αY60W-CaaD and 3-bromopropiolate, previously shown to be a mechanism-based inhibitor of CaaD, coupled with the rate of bromide release in the course of CaaD inactivation. A global fit of the combined datasets provides a complete minimal model for the reaction of αY60W-CaaD and 3-bromoacrylate. In addition, the global fit produces kinetic constants for CaaD inactivation by 3-bromopropiolate and implicates the acyl bromide as the inactivating species. Finally, a comparison of the model with that for cis-CaaD shows that for both enzymes turnover is limited by product release and not chemistry.
机译:<![CDATA [ 抽象 trans - cis -3-氯丙烯酸脱氢酶(CAAD和 CIS -CAAD)催化它们各自异构体的水解除去,并表示1,3-细菌转化率的关键步骤二氯丙烯至乙醛。在现有的工作中,可以不明确地确定用于CAAD催化反应的动力学机制,因为(1)可以确定产物释放的顺序,并且(2)酶种类的荧光因子, E * PQ / Ce:斜体>(其中p?=溴和q?=α=αα=α,反应的两种产品)无法分配。现在已经通过使用活性位点荧光探针,αy60W-CAAD和3-溴丙酸酯的反应后反应后的停止流实验解决了模型中的歧义,以前所示是CAAD的机理抑制剂,与溴化物的速率相结合在CAAD灭活过程中释放。组合数据集的全球合适为αY60W-CAAD和3-溴丙烯酸酯的反应提供了完整的最小模型。此外,全球拟合为CAAD灭活产生动力学常数3-溴丙酸盐,并将酰基溴作为灭活物种。最后,具有 cis -caad的模型的比较显示,对于酶营业额,由产品释放而不是化学的影响。

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