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生物样品中天然蛋白质的等电点测定

pI Determination of Native Proteins In Biological Samples.

作者信息

Ganapathy-Kanniappan Shanmugasundaram

机构信息

Division of Interventional Radiology, Russell H. Morgan Department of Radiology and Radiological Science, The Johns Hopkins University School of Medicine, Baltimore, Maryland.

出版信息

Curr Protoc Protein Sci. 2019 Jun;96(1):e85. doi: 10.1002/cpps.85. Epub 2019 Jan 31.

Abstract

The electrophoretic mobility of a protein on an immobilized pH-gradient gel (IPG) depends upon its overall positive (acidic) or negative (basic) charge, the principle underlying the IEF technique. In isoelectrofocusing (IEF), a protein with a net positive or negative charge migrates through the pH gradient gel until it reaches the isoelectric point (pI), a pH at which it remains neutral. Thus, the pI of a protein indicates its net charge, a critical determinant of its stability/activity in a given milieu. Conventionally, the first-dimensional IPG-IEF is followed by a second dimension, by which the focused proteins are denatured/reduced and resolved on an SDS-PAGE gel for subsequent immunoblotting to verify the protein identity. The recent development of one-dimensional, vertical IEF followed by immunoblotting enabled concurrent analysis (pI determination) of multiple samples. The protocol described here outlines vertical IEF and immunoblotting under non-denaturing conditions to determine the pI of native proteins in biological samples. © 2019 by John Wiley & Sons, Inc.

摘要

蛋白质在固定化pH梯度凝胶(IPG)上的电泳迁移率取决于其整体正电荷(酸性)或负电荷(碱性),这是等电聚焦技术的基本原理。在等电聚焦(IEF)中,带有净正电荷或负电荷的蛋白质会在pH梯度凝胶中迁移,直到到达等电点(pI),即蛋白质保持中性的pH值。因此,蛋白质的pI表明其净电荷,这是其在给定环境中稳定性/活性的关键决定因素。传统上,一维IPG-IEF之后是二维分析,通过该方法将聚焦的蛋白质变性/还原,并在SDS-PAGE凝胶上进行分离,随后进行免疫印迹以验证蛋白质的身份。最近一维垂直IEF结合免疫印迹的发展使得能够同时分析(pI测定)多个样品。此处描述的方案概述了在非变性条件下进行垂直IEF和免疫印迹,以确定生物样品中天然蛋白质的pI。© 2019 John Wiley & Sons, Inc.

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