氧化半胱氨酸选择性cPILOT中s -亚硝基化蛋白在树脂上富集的自动化。

Andrew D. Pumford, Albert-Baskar Arul, Katarena I. Ford, R. A. Robinson
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引用次数: 0

摘要

s -亚硝基化(SNO)是一种随正常衰老而增加的半胱氨酸翻译后修饰,存在于阿尔茨海默病和其他与衰老相关的疾病中。sno修饰蛋白的检测具有挑战性;然而,我们之前开发了一种强大的定量蛋白质组学方法,称为“氧化半胱氨酸选择性联合前体等压标记和等压标记(OxcyscPILOT)”,可以检测内源性sno修饰的蛋白质。OxcyscPILOT涉及使用硫醇基树脂富集sno修饰的蛋白质。这种富集是手动进行的,用树脂清洗步骤需要许多阶段和缓冲试剂。本研究的目的是将手动协议转移到自动液体处理系统,以减少洗涤步骤,增加样品吞吐量,并最大限度地减少实验误差。为了实现这一目标,我们评估了Biomek i7液体处理自动化工作站和正压ALP (PPA)装置来进行自动树脂富集。我们的研究结果为在自动化OxcyscPILOT蛋白质组学工作流程中使用PPA提供了启动压力条件,该工作流程可以转移到其他机器人液体处理系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automation of On-Resin Enrichment of S-Nitrosylated Proteins for Oxidized Cysteine-Selective cPILOT.
S-Nitrosylation (SNO) is a cysteine post-translational modification that increases with normal aging and is present in Alzheimer's disease and other aging-related illnesses. Detection of SNO-modified proteins can be challenging; however, we previously developed a robust quantitative proteomics approach termed "Oxidized Cysteine-Selective combined precursor isobaric labeling and isobaric tagging (OxcyscPILOT)" that allows for detection of endogenous SNO-modified proteins. OxcyscPILOT involves enrichment of SNO-modified proteins using a thiol-based resin. This enrichment is performed manually, and wash steps with the resin require numerous stages and buffer reagents. The goal of this study is to transfer the manual protocol to an automated liquid handler system in order to reduce wash steps, increase sample throughput, and minimize experimental error. In order to accomplish this, we evaluated the Biomek i7 liquid handler automated workstation and a Positive Pressure ALP (PPA) apparatus to conduct automated on-resin enrichment. Our findings provide starting pressure conditions for the use of PPA in an automated OxcyscPILOT proteomics workflow that could be transferred to other robotic liquid handling systems.
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