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基于捕集柱的完整质量质谱法用于快速准确评估蛋白质分子量。

Trap column-based intact mass spectrometry for rapid and accurate evaluation of protein molecular weight.

作者信息

Lim Gyu-Min, Kim Byung-Gee, Jeong Hee-Jin

机构信息

Interdisciplinary Program for Biochemical Engineering and Biotechnology, Seoul National University Seoul 08826 South Korea.

Bio-MAX/N-Bio, Seoul National University Seoul 08826 South Korea.

出版信息

RSC Adv. 2022 May 24;12(25):15643-15651. doi: 10.1039/d2ra00429a. eCollection 2022 May 23.

Abstract

The determination of the molecular weight (MW) of a protein using high-resolution mass spectrometry (MS) is a crucial tool used to confirm whether the protein was correctly expressed and adequately purified. However, a non-volatile buffer is normally used for protein purification and storage. Therefore, a pre-treatment step using ultrafiltration (UF) is required to exchange the buffer with a volatile buffer prior to the introduction of the protein sample into the MS equipment. This pre-treatment step is time-consuming. In this study, a trap column-based pre-treatment method applied in a nano-LC system was developed for rapid and convenient analysis of the MW of proteins. First, the trap column system was compared with the conventional UF treatment system and non-treatment system using bovine serum albumin. Subsequently, the trap column system was applied to analyze the MW of commercially available and lab-synthesized recombinant proteins. The intensity of the base peak and signal-to-noise ratio of the trap column-based pre-treated protein were higher than those of the UF-treated protein. Moreover, the entire automated procedure of the trap column-based system was conducted within 20 min, which confirms its use in versatile and accurate protein identification.

摘要

使用高分辨率质谱(MS)测定蛋白质的分子量(MW)是一种关键工具,用于确认蛋白质是否正确表达并得到充分纯化。然而,蛋白质纯化和储存通常使用非挥发性缓冲液。因此,在将蛋白质样品引入质谱设备之前,需要使用超滤(UF)进行预处理步骤,以便用挥发性缓冲液替换缓冲液。这个预处理步骤很耗时。在本研究中,开发了一种应用于纳升液相色谱(nano-LC)系统的基于捕集柱的预处理方法,用于快速便捷地分析蛋白质的分子量。首先,使用牛血清白蛋白将捕集柱系统与传统超滤处理系统和未处理系统进行比较。随后,将捕集柱系统应用于分析市售和实验室合成的重组蛋白的分子量。基于捕集柱预处理的蛋白质的基峰强度和信噪比高于超滤处理的蛋白质。此外,基于捕集柱的系统的整个自动化程序在20分钟内完成,这证实了其在通用且准确的蛋白质鉴定中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d389/9126647/a1d361de4e87/d2ra00429a-f1.jpg

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