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首页> 外文期刊>Bioorganic and medicinal chemistry >Probing the altered specificity and catalytic properties of mutant subtilisin chemically modified at position S156C and S166C in the S1 pocket.
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Probing the altered specificity and catalytic properties of mutant subtilisin chemically modified at position S156C and S166C in the S1 pocket.

机译:探索在S1口袋中S156C和S166C位置化学修饰的枯草杆菌蛋白酶突变体的特异性和催化特性的变化。

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摘要

A series of chemically modified mutants (CMMs) of subtilisin B. lentus (SBL) were generated employing the combination of site-directed mutagenesis and chemical modification. This strategy entails the mutation of a selected active site residue to cysteine and its subsequent modification with a methanethiosulfonate reagent CH3SO2S-R, where R may be infinitely variable. The present study was undertaken to evaluate the changes in specificity and pH-activity profiles that could be induced by modification of S156C and S166C in the S1 pocket of SBL with a representative range of side chain modifications, namely R=-CH3, -CH2C6H5, -CH2CH2NH3+ and CH2CH2SO3 . The side chain of S156C is surface exposed and well solvated while that of S166C points into the pocket. Kinetic evaluation of the CMMs with suc-AAPF-pNA as substrate showed that the kcat/K(M)s changed very little for the S156C CMMs, but varied by up to 11-fold for the S166C CMMs. pH-Activity profiles were also determined, and showed that a negatively or positively charged side chain modification increased or decreased respectively, the pKa of the catalytic triad histidine for both modification sites but with more dramatic changes for the interior pointing S166C than for the solvent exposed S156C site. As an additional probe of altered specificity, inhibition of the CMMs by a representative series of 5 boronic acid transition state analogue inhibitors was determined. The K(I)s observed ranged from a 3.5-fold improvement over the WT value, to a 12-fold decrease in binding. Overall, greater variability in all the parameters measured, activity, pKa, and boronic acid binding resulted from modification at the inward pointing 166 site than at the solvent-exposed 156 site.
机译:利用定点诱变和化学修饰相结合,产生了一系列枯草杆菌枯草芽孢杆菌(SBL)的化学修饰突变体(CMM)。该策略需要将选定的活性位点残基突变为半胱氨酸,并随后用甲硫代磺酸盐试剂CH3SO2S-R进行修饰,其中R可以是无限可变的。进行本研究是为了评估在SBL S1口袋中修饰S156C和S166C并引起侧链修饰的代表性范围,即R = -CH3,-CH2C6H5, -CH2CH2NH3 +和CH2CH2SO3。 S156C的侧链暴露在表面且溶剂化良好,而S166C的侧链则指向口袋。以suc-AAPF-pNA为底物的三坐标测量机的动力学评估表明,对于S156C三坐标测量机,kcat / K(M)的变化很小,而对于S166C三坐标测量机,其变化高达11倍。还确定了pH活性曲线,并显示带负电荷或带正电荷的侧链修饰分别增加或减少,两个修饰位点的催化三联组氨酸的pKa值,但内部指向S166C的变化比暴露于溶剂的情况大得多S156C网站。作为改变特异性的另一探针,确定了代表性的5种硼酸过渡态类似物抑制剂对CMM的抑制作用。观察到的K(I)范围比WT值提高3.5倍,而结合力降低12倍。总体而言,所有向内测量的参数,活性,pKa和硼酸结合的可变性,是由向内指向166位的修饰比暴露于溶剂156位的修饰引起的。

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