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通过瞬态不完全分离(ACTIS)实现准确常数的平衡解离常数的简化数据处理。

Streamlined Data Processing for Determination of Equilibrium Dissociation Constants with Accurate Constant via Transient Incomplete Separation (ACTIS).

机构信息

Department of Chemistry and Centre for Research on Biomolecular Interactions, York University, Toronto, Ontario M3J 1P3, Canada.

Department of Chemistry, University of Natural Resources and Life Sciences, 1190 Vienna, Austria.

出版信息

Anal Chem. 2023 Feb 21;95(7):3563-3568. doi: 10.1021/acs.analchem.2c05607. Epub 2023 Feb 10.

Abstract

The determination of accurate equilibrium dissociation constants, , of protein-small molecule complexes is important but challenging as all established methods have inherent sources of inaccuracy. Accurate Constant via Transient Incomplete Separation (ACTIS) is a new method for determination using transient incomplete separation of the complex from the unbound small molecule in a pressure-driven flow inside a capillary. ACTIS is accurate, and its accuracy is invariant to variations in geometries of both the fluidic system and the flow. Furthermore, ACTIS is implemented using a simple fluidic system supporting its accuracy and providing a simple-to-follow/copy template for instrumentation. Despite the simple and robust instrumentation/acquisition, the current data processing workflow is cumbersome, time consuming, and prone to hard-to-trace human errors therefore hindering ACTIS' ability to become a practical reference method for determination. This technical note describes a streamlined workflow for processing ACTIS data; the workflow is implemented as a set of open-source software tools called prACTISed (https://github.com/prACTISedProgram/prACTISed). These tools allow all steps of data processing to be performed in a fast and straightforward fashion. These practical software tools complement the simple instrumentation serving both developers and users of ACTIS.

摘要

准确测定蛋白质-小分子复合物的平衡离解常数 (Kd) 非常重要,但也极具挑战性,因为所有已建立的方法都存在固有误差源。瞬态不完全分离法 (ACTIS) 是一种新的方法,用于通过在毛细管内的压力驱动流中使复合物与未结合的小分子发生瞬态不完全分离来测定 Kd。ACTIS 准确且其准确性不受流体系统和流动的几何形状变化的影响。此外,ACTIS 采用简单的流体系统实现,支持其准确性,并为仪器提供简单易懂/可复制的模板。尽管仪器/采集简单且稳健,但当前的数据处理工作流程繁琐、耗时且容易出现难以追踪的人为错误,因此阻碍了 ACTIS 成为 Kd 测定的实用参考方法。本技术说明描述了一种用于处理 ACTIS 数据的简化工作流程;该工作流程实现为一组称为 prACTISed 的开源软件工具(https://github.com/prACTISedProgram/prACTISed)。这些工具允许以快速和直接的方式执行数据处理的所有步骤。这些实用的软件工具补充了简单的仪器,为 ACTIS 的开发人员和用户提供服务。

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