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工程化铰链区改善了人源 IgG1 的稳定性和效应功能。

Engineering upper hinge improves stability and effector function of a human IgG1.

机构信息

Department of Pharma Technical Development, Genentech, Oceanside, California 92056, USA.

出版信息

J Biol Chem. 2012 Feb 17;287(8):5891-7. doi: 10.1074/jbc.M111.311811. Epub 2011 Dec 27.

Abstract

Upper hinge is vulnerable to radical attacks that result in breakage of the heavy-light chain linkage and cleavage of the hinge of an IgG1. To further explore mechanisms responsible for the radical induced hinge degradation, nine mutants were designed to determine the roles that the upper hinge Asp and His play in the radical reactions. The observation that none of these substitutions could inhibit the breakage of the heavy-light chain linkage suggests that the breakage may result from electron transfer from Cys(231) directly to the heavy-light chain linkage upon radical attacks, and implies a pathway separate from His(229)-mediated hinge cleavage. On the other hand, the substitution of His(229) with Tyr showed promising advantages over the native antibody and other substitutions in improving the stability and function of the IgG1. This substitution inhibited the hinge cleavage by 98% and suggests that the redox active nature of Tyr did not enable it to replicate the ability of His to facilitate radical induced degradation. We propose that the lower redox potential of Tyr, a residue that may be the ultimate sink for oxidizing equivalents in proteins, is responsible for the inhibition. More importantly, the substitution increased the antibody's binding to FcγRIII receptors by 2-3-fold, and improved ADCC activity by 2-fold, while maintaining a similar pharmacokinetic profile with respect to the wild type. Implications of these observations for antibody engineering and development are discussed.

摘要

铰链的上部容易受到自由基的攻击,导致重链和轻链之间的键断裂,以及 IgG1 铰链的裂解。为了进一步探讨自由基诱导铰链降解的机制,设计了 9 种突变体来确定铰链上部的天冬氨酸和组氨酸在自由基反应中的作用。观察到这些取代均不能抑制重链和轻链之间的键断裂,这表明键的断裂可能是由于自由基攻击时 Cys(231)直接向重链和轻链之间发生电子转移所致,这暗示了一条与 His(229)介导的铰链裂解不同的途径。另一方面,His(229)突变为 Tyr 显示出比天然抗体和其他取代更好的优势,能够提高 IgG1 的稳定性和功能。这种取代抑制了铰链的裂解达 98%,表明 Tyr 的氧化还原活性使其无法复制 His 促进自由基诱导降解的能力。我们提出,Tyr 的还原电势较低,作为蛋白质中氧化还原当量的最终受体,可能是导致这种抑制的原因。更重要的是,取代后抗体与 FcγRIII 受体的结合增加了 2-3 倍,ADCC 活性提高了 2 倍,同时与野生型相比,具有相似的药代动力学特征。这些观察结果对抗体工程和开发具有重要意义。

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