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预测碳酸酐酶 II 活性的光学控制方法。

A Predictive Approach for the Optical Control of Carbonic Anhydrase II Activity.

机构信息

Department of Chemistry , University of California at Berkeley , Berkeley , California 94720 , United States.

Department of Chemistry , Ludwig-Maximilian-University Munich and Munich Center for Integrated Protein Science (CIPSM) , Butenandtstrasse 5-13 , 83177 Munich , Germany.

出版信息

ACS Chem Biol. 2018 Mar 16;13(3):793-800. doi: 10.1021/acschembio.7b00862. Epub 2018 Feb 9.

Abstract

Optogenetics and photopharmacology are powerful approaches to investigating biochemical systems. While the former is based on genetically encoded photoreceptors that utilize abundant chromophores, the latter relies on synthetic photoswitches that are either freely diffusible or covalently attached to specific bioconjugation sites, which are often native or engineered cysteines. The identification of suitable cysteine sites and appropriate linkers for attachment is generally a lengthy and cumbersome process. Herein, we describe an in silico screening approach that is designed to propose a small number of optimal combinations. By applying this computational approach to human carbonic anhydrase and a set of three photochromic tethered ligands, the number of potential site-ligand combinations was narrowed from over 750 down to 6, which we then evaluated experimentally. Two of these six combinations resulted in light-responsive human Carbonic Anhydrases (LihCAs), which were characterized with enzymatic activity assays, mass spectrometry, and X-ray crystallography. Our study also provides insights into the reactivity of cysteines toward maleimides and the hydrolytic stability of the adducts obtained.

摘要

光遗传学和光药理学是研究生化系统的强大方法。前者基于利用丰富生色团的遗传编码光感受器,而后者依赖于合成光开关,这些光开关可以自由扩散或共价连接到特定的生物共轭位点,这些位点通常是天然或工程化的半胱氨酸。合适的半胱氨酸位点和合适的连接子的鉴定通常是一个漫长而繁琐的过程。在这里,我们描述了一种计算机筛选方法,旨在提出少量最佳组合。通过将这种计算方法应用于人类碳酸酐酶和一组三个光致变色的连接配体,将潜在的位点-配体组合数量从超过 750 个缩小到 6 个,然后我们通过实验进行了评估。这六个组合中有两个产生了对光响应的人碳酸酐酶(LihCAs),并通过酶活性测定、质谱和 X 射线晶体学进行了表征。我们的研究还提供了对半胱氨酸与马来酰亚胺反应性以及获得的加合物水解稳定性的深入了解。

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