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一种简单的酶-底物局部偶联方法,用于生成用于亲和富集的固定化功能性谷胱甘肽S-转移酶融合蛋白柱。

A simple enzyme-substrate localized conjugation method to generate immobilized, functional glutathione S-transferase fusion protein columns for affinity enrichment.

作者信息

Coughlin John, Masci Allyson, Gronke Robert S, Bergelson Svetlana, Co Carl

机构信息

Analytical Development, Biogen, Cambridge, MA, 02142, USA; Process Biochemistry, Biogen, Cambridge, MA, 02142, USA.

Analytical Development, Biogen, Cambridge, MA, 02142, USA.

出版信息

Anal Biochem. 2016 Jul 15;505:51-8. doi: 10.1016/j.ab.2016.03.024. Epub 2016 Apr 7.

DOI:10.1016/j.ab.2016.03.024
PMID:27063248
Abstract

Immobilized protein receptors and enzymes are tools for isolating or enriching ligands and substrates based on affinity. For example, glutathione S-transferase (GST) is fused to proteins as a tag for binding to its substrate glutathione (GSH) linked to solid supports. One issue with this approach is that high-affinity interactions between receptors and ligands require harsh elution conditions such as low pH, which can result in leached receptor. Another issue is the inherent nonspecific chemical conjugation of reactive groups such as N-hydroxysuccinimide (NHS) that couple lysines to solid supports; the nonspecificity of NHS may result in residue modifications near the binding site(s) of the receptor that can affect ligand specificity. In this study, a simple conjugation procedure is presented that overcomes these limitations and results in immobilized GST fusion proteins that are functional and specific. Here, the affinity of GST for GSH was used to generate an enzyme-substrate site-specific cross-linking reaction; GSH-Sepharose was preactivated with 1-ethyl-3-(dimethylaminopropyl)carbodiimide (EDC) and then incubated Fc gamma receptor IIIa (FcγRIIIa)-GST. The immobilized FcγRIIIa-GST more specifically bound glycosylated immunoglobulin G1s (IgG1s) and was used to enrich nonfucosylated IgG1s from weaker binding species. This technique can be used when modifications of amino acids lead to changes in activity.

摘要

固定化的蛋白质受体和酶是基于亲和力分离或富集配体和底物的工具。例如,谷胱甘肽S-转移酶(GST)与蛋白质融合,作为与连接到固体支持物上的底物谷胱甘肽(GSH)结合的标签。这种方法的一个问题是,受体与配体之间的高亲和力相互作用需要如低pH等苛刻的洗脱条件,这可能导致受体渗漏。另一个问题是诸如N-羟基琥珀酰亚胺(NHS)等反应性基团将赖氨酸与固体支持物偶联的固有非特异性化学偶联;NHS的非特异性可能导致受体结合位点附近的残基修饰,从而影响配体特异性。在本研究中,提出了一种简单的偶联程序来克服这些限制,并产生具有功能和特异性的固定化GST融合蛋白。在此,利用GST对GSH的亲和力产生酶-底物位点特异性交联反应;用1-乙基-(3-二甲基氨基丙基)碳二亚胺(EDC)预活化谷胱甘肽琼脂糖(GSH-Sepharose),然后与Fcγ受体IIIa(FcγRIIIa)-GST孵育。固定化的FcγRIIIa-GST更特异性地结合糖基化免疫球蛋白G1(IgG1),并用于从较弱结合的物种中富集非岩藻糖基化IgG1。当氨基酸修饰导致活性变化时,可使用该技术。

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