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免疫球蛋白结构域的结构与功能:利用β2微球蛋白对链内二硫键作用的研究

The structure and function of immunoglobulin domains: studies with beta-2-microglobulin on the role of the intrachain disulfide bond.

作者信息

Isenman D E, Painter R H, Dorrington K J

出版信息

Proc Natl Acad Sci U S A. 1975 Feb;72(2):548-52. doi: 10.1073/pnas.72.2.548.

Abstract

Beta-Microglobulin, a low-molecular-weight protein structurally related to the homology regions of immunoglobulins, has been used to study the role of the intrachain disulfide bond in the unfolding of immunoglobulin domains. The intact protein could be reversibly unfolded in guanidine hydrochloride, as judged by circular dichroism and optical rotation. Similarly, reoxidation of the reduced protein, during transfer from high concentrations of guanidine to neutral aqueous buffer, yielded a product with spectral characteristics typical of the native protein. However, if the free SH groups were prevented from reoxidizing either by chemical modification or by holding them in the reduced state, the molecule appeared to be in the randomly coiled state even under conditions where the intact protein is in the native conformation, judged on the basis of chiroptical measurements. The complement-fixing activity exhibited by native beta-2-microglobulin was retained by the reduced and alkylated derivative, suggesting that the site may be formed from a linear array of amino acids. We suggest a model for the folding of beta-2-microglobulin (and immunoglobulin domains) in which one of the early folding events results in disulfide bond formation, the latter being an obligatory step for continued folding to the native state.

摘要

β-微球蛋白是一种低分子量蛋白质,其结构与免疫球蛋白的同源区域相关,已被用于研究链内二硫键在免疫球蛋白结构域解折叠中的作用。通过圆二色性和旋光性判断,完整的蛋白质在盐酸胍中可发生可逆解折叠。同样,在从高浓度胍转移至中性水性缓冲液的过程中,还原态蛋白质的再氧化产生了具有天然蛋白质典型光谱特征的产物。然而,如果通过化学修饰或使其保持还原态来阻止游离巯基再氧化,根据旋光测量判断,即使在完整蛋白质处于天然构象的条件下,该分子似乎也处于无规卷曲状态。天然β-2-微球蛋白表现出的补体固定活性在还原和烷基化衍生物中得以保留,这表明该位点可能由氨基酸的线性阵列形成。我们提出了一个β-2-微球蛋白(以及免疫球蛋白结构域)折叠的模型,其中早期折叠事件之一导致二硫键形成,而二硫键形成是继续折叠至天然状态的必要步骤。

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