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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Combination of HDX-MS and in silico modeling to study enzymatic reactivity and stereo-selectivity at different solvent conditions
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Combination of HDX-MS and in silico modeling to study enzymatic reactivity and stereo-selectivity at different solvent conditions

机译:HDX-MS和硅模型中的组合研究不同溶剂条件下的酶反应性和立体选择性

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The higher-order structure of a protein defines its function, and protein structural dynamics are often essential for protein binding and enzyme catalysis. Methods for protein characterization in solution are continuously being developed to understand and explore protein conformational changes with regards to function and activity. The goal of this study was to survey the use of combining HDX-MS global conformational screening with in silica modeling and continuous labeling peptide-level HDX-MS as an approach to highlight regions of interest within an enzyme required for biocatalytic processes. We surveyed in silico modeling correlated with peptide level HDX-MS experiments to characterize and localize transaminase enzyme structural dynamics at different conditions. This approach was orthogonally correlated with a global Size-Exclusion-HDX (SEC-HDX) screen for global conformational comparison and global alpha-helical content measurements by circular dichroism. Enzymatic activity and stereo-selectivity of transaminases were compared at different reaction-solution conditions that forced protein conformational changes by increasing acetonitrile concentration. The experimental peptide-level HDX-MS results demonstrated similar trends to the modeling data showing that certain regions remained folded in transaminases ATA-036 and ATA-303 with increasing acetonitrile concentration, which is also associated with shifting stereoselectivity. HDX modeling, SEC-HDX and CD experimental data showed that transaminase ATA-234 had the highest level of global unfolding with increasing acetonitrile concentration compared to the other two enzymes, which correlated with drastically reduced product conversion in transamination reaction. The combined HDX modeling/experimental workflow, based on enzymatic reactions studied at different conditions to induce changes in enzyme conformation, could be used as a tool to guide directed evolution efforts by identifying and focusing on the regions of an enzyme required for reaction product conversion and stereoselectivity. (C) 2020 Elsevier B.V. All rights reserved.
机译:蛋白质的高阶结构定义其功能,蛋白质结构动态通常对蛋白质结合和酶催化是必不可少的。溶液中蛋白质表征的方法连续开发,以了解和探索功能和活动的蛋白质构象变化。本研究的目的是调查使用HDX-MS全局构象筛选与二氧化硅建模和连续标记肽水平HDX-MS的用途,作为突出生物催化过程所需的酶内的感兴趣区域的方法。我们在硅基建模中调查,与肽水平HDX-MS实验相关,以在不同条件下表征和定位转氨酶酶结构动力学。这种方法与全局典型排除HDX(SEC-HDX)屏幕正交相关,用于通过圆形二中间的全局构象比较和全局α-螺旋内容测量。在不同的反应溶液条件下比较了转氨酶的酶活性和立体选择性,所述反应溶液通过增加乙腈浓度来强制蛋白质构象变化。实验肽水平HDX-MS结果表明了模拟数据的类似趋势,表明某些区域仍然在转氨酶ATA-036和ATA-303中折叠,随着乙腈浓度的增加,这也与移位立体选择性相关。 HDX建模,SEC-HDX和CD实验数据表明,与其他两种酶相比,转氨酶ATA-234具有最高水平的全局展开,随着其他两种酶而增加,其与逐渐降低的分解反应中的产物转化率相关。基于在不同条件下研究的酶促反应的组合HDX建模/实验工作流程可以用作通过识别和关注反应产物转化所需的酶的区域来引导定向演化工作的工具。立体选择性。 (c)2020 Elsevier B.v.保留所有权利。

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