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胰岛素在内源性硫醇存在下的展开与分解。

Unfolding and breakdown of insulin in the presence of endogenous thiols.

作者信息

Jiang Chuantao, Chang Jui-Yoa

机构信息

Center for Protein Chemistry, Brown Foundation Institute of Molecular Medicine for the Prevention of Human Diseases, The University of Texas, Houston, TX 77030, USA.

出版信息

FEBS Lett. 2005 Jul 18;579(18):3927-31. doi: 10.1016/j.febslet.2005.06.010.

Abstract

Native insulin denatures and unfolds in the presence of thiol catalyst via disulfide scrambling (isomerization). It undergoes two transient non-native conformational isomers, followed by an irreversible breakdown of the protein to form oxidized A- and B-chain. Denaturation and breakdown of native insulin may occur under physiological conditions. At 37 degrees C, pH 7.4, and in the presence of cysteine (0.2 mM), native insulin decomposes with a pseudo first order kinetic of 0.075 h(-1). At 50 degrees C, the rate increases by 5-fold. GdnCl and urea induced denaturation of insulin follows the same mechanism. These results demonstrate that stability and unfolding pathway of insulin in the presence of endogenous thiol differ fundamentally from its reversible denaturation observed in the absence of thiol, in which native disulfide bonds of insulin were kept intact during the process of denaturation.

摘要

天然胰岛素在硫醇催化剂存在下会通过二硫键重排(异构化)发生变性和展开。它会经历两种瞬时的非天然构象异构体,随后蛋白质发生不可逆分解,形成氧化的A链和B链。天然胰岛素的变性和分解可能在生理条件下发生。在37℃、pH 7.4以及存在半胱氨酸(0.2 mM)的情况下,天然胰岛素以0.075 h⁻¹的伪一级动力学进行分解。在50℃时,速率增加5倍。盐酸胍和尿素诱导的胰岛素变性遵循相同机制。这些结果表明,在存在内源性硫醇的情况下,胰岛素的稳定性和展开途径与在不存在硫醇时观察到的可逆变性有根本不同,在后者中,胰岛素的天然二硫键在变性过程中保持完整。

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