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氯化胍对人宫颈黏液糖蛋白行为的影响。6M氯化胍中有序结构展开区域的证据。

The effect of guanidinium chloride on the behaviour of human cervical-mucus glycoproteins. Evidence for unfolding regions of ordered structure in 6M-guanidinium chloride.

作者信息

Sheehan J K, Carlstedt I

出版信息

Biochem J. 1984 Jul 15;221(2):499-504. doi: 10.1042/bj2210499.

Abstract

The macromolecular properties of cervical-mucus glycoproteins (mucins) were studied as a function of the concentration of guanidinium chloride with conventional light-scattering, photon-correlation spectroscopy and sedimentation-velocity centrifugation. No evidence for an association of the mucins in 0.2M-NaCl as compared with 6M-guanidinium chloride was found at mucin concentrations below approx. 0.5 mg/ml. However, an increase in the frictional coefficient and in the radius of gyration occurred with increasing concentrations of guanidinium chloride, in particular between 4 M and 6 M, suggesting an expansion of the individual macromolecule. The change in the particle-scattering function is consistent with a transition from a 'stiff' random coil in 0.2 M-NaCl into a more flexible one in 6 M-guanidinium chloride. We suggest that the mucins contain regions of 'ordered' structure which can undergo a reversible 'unfolding' analogous to the behaviour of a conventional globular protein exposed to a denaturing solvent. Such regions might carry sites for specific interactions between mucins and/or be decisive for their conformation and macromolecular properties in physiological solvents.

摘要

利用传统光散射、光子相关光谱法和沉降速度离心法,研究了宫颈黏液糖蛋白(黏蛋白)的大分子性质与氯化胍浓度的关系。在黏蛋白浓度低于约0.5mg/ml时,未发现与6M氯化胍相比,黏蛋白在0.2M NaCl中存在缔合的证据。然而,随着氯化胍浓度的增加,特别是在4M至6M之间,摩擦系数和旋转半径增加,表明单个大分子发生了膨胀。颗粒散射函数的变化与从0.2M NaCl中的“刚性”无规卷曲转变为6M氯化胍中的更灵活的无规卷曲相一致。我们认为,黏蛋白包含“有序”结构区域,这些区域可以经历类似于暴露于变性溶剂中的传统球状蛋白质的行为的可逆“展开”。这些区域可能携带黏蛋白之间特异性相互作用的位点,和/或对它们在生理溶剂中的构象和大分子性质起决定性作用。

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本文引用的文献

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THERMODYNAMIC ANALYSIS OF MULTICOMPONENT SOLUTIONS.多组分溶液的热力学分析
Adv Protein Chem. 1964;19:287-395. doi: 10.1016/s0065-3233(08)60191-6.
3
Polyelectrolyte behaviour in mucus glycoproteins.黏液糖蛋白中的聚电解质行为。
Biochim Biophys Acta. 1983 Jul 28;746(1-2):114-9. doi: 10.1016/0167-4838(83)90017-1.

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