首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Antigen-specific Proteolysis by Hybrid Antibodies Containing Promiscuous Proteolytic Light Chains Paired with an Antigen-binding Heavy Chain
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Antigen-specific Proteolysis by Hybrid Antibodies Containing Promiscuous Proteolytic Light Chains Paired with an Antigen-binding Heavy Chain

机译:杂种蛋白水解轻链与抗原结合重链配对的杂交抗体的抗原特异性蛋白水解。

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摘要

The antigen recognition site of antibodies consists of the heavy and light chain variable domains (VL and VH domains). VL domains catalyze peptide bond hydrolysis independent of VH domains (Mei, S., Mody, B., Eklund, S. H., and Paul, S. (1991) J. Biol. Chem. 266, 15571–15574). VH domains bind antigens noncovalently independent of VL domains (Ward, E. S., Güssow, D., Griffiths, A. D., Jones, P. T., and Winter, G. (1989) Nature 341, 544–546). We describe specific hydrolysis of fusion proteins of the hepatitis C virus E2 protein with glutathione S-transferase (GST-E2) or FLAG peptide (FLAG-E2) by antibodies containing the VH domain of an anti-E2 IgG paired with promiscuously catalytic VL domains. The hybrid IgG hydrolyzed the E2 fusion proteins more rapidly than the unpaired light chain. An active site-directed inhibitor of serine proteases inhibited the proteolytic activity of the hybrid IgG, indicating a serine protease mechanism. The hybrid IgG displayed noncovalent E2 binding in enzyme-linked immunosorbent assay tests. Immunoblotting studies suggested hydrolysis of FLAG-E2 at a bond within E2 located ∼11 kDa from the N terminus. GST-E2 was hydrolyzed by the hybrid IgG at bonds in the GST tag. The differing cleavage pattern of FLAG-E2 and GST-E2 can be explained by the split-site model of catalysis, in which conformational differences in the E2 fusion protein substrates position alternate peptide bonds in register with the antibody catalytic subsite despite a common noncovalent binding mechanism. These studies provide proof-of-principle that the catalytic activity of a light chain can be rendered antigen-specific by pairing with a noncovalently binding heavy chain subunit.
机译:抗体的抗原识别位点由重链和轻链可变域(VL和VH域)组成。 VL结构域催化肽键水解,而不受VH结构域的影响(Mei,S.,Mody,B.,Eklund,S. H.和Paul,S.(1991)J. Biol。Chem。266,15571-15574)。 VH结构域与VL结构域非共价结合抗原(Ward,E. S.,Güssow,D.,Griffiths,A. D.,Jones,P. T.和Winter,G.(1989)Nature 341,544-546)。我们描述了含有抗E2 IgG VH结构域与混杂催化VL结构域配对的抗体对丙型肝炎病毒E2蛋白与谷胱甘肽S-转移酶(GST-E2)或FLAG肽(FLAG-E2)融合蛋白的特异性水解。杂种IgG比未配对的轻链更快地水解E2融合蛋白。丝氨酸蛋白酶的活性定点抑制剂抑制杂合IgG的蛋白水解活性,表明丝氨酸蛋白酶的机制。杂合IgG在酶联免疫吸附试验中显示出非共价E2结合。免疫印迹研究表明,FLAG-E2在距N端约11 kDa的E2内的一个键处水解。 GST-E2在GST标签的键处被杂合IgG水解。 FLAG-E2和GST-E2的不同切割模式可以通过催化的裂解位点模型来解释,其中尽管存在常见的非共价结合,但E2融合蛋白底物的构象差异将交替的肽键定位在抗体催化子位点处机制。这些研究提供了原理证明,即通过与非共价结合的重链亚基配对,可使轻链的催化活性具有抗原特异性。

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