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金黄色葡萄球菌青霉素酶折叠途径中稳定中间体的构象

Conformation of a stable intermediate on the folding pathway of Staphylococcus aureus penicillinase.

作者信息

Carrey E A, Pain R H

出版信息

Biochim Biophys Acta. 1978 Mar 28;533(1):12-22. doi: 10.1016/0005-2795(78)90542-1.

Abstract

The partly unfolded intermediate (state H) of penicillinase from Staphylococcus aureus PC1 is stable in 0.8 M guanidinium chloride at pH 7.0. It has been characterized by measurements of intrinsic viscosity, sedimentation and diffusion coefficients, leading to an equivalent hydrodynamic volume of five times that of the native penicillinase molecule. Values of alpha-helix content calculated from circular dichroism were 27% for penicillinase and 16% for state H. A multi-domain model is proposed for penicillinase in which the domains can separate without appreciable change in secondary structure. This model is important in understanding the means by which the enzyme activity can be controlled, and corresponds to a kinetic pathway of folding.

摘要

金黄色葡萄球菌PC1青霉素酶的部分展开中间体(状态H)在pH 7.0的0.8M氯化胍中是稳定的。通过测量特性粘度、沉降系数和扩散系数对其进行了表征,得出其等效流体动力学体积是天然青霉素酶分子的五倍。由圆二色性计算出的α-螺旋含量值,青霉素酶为27%,状态H为16%。提出了一种青霉素酶的多结构域模型,其中各结构域可以分离而二级结构没有明显变化。该模型对于理解控制酶活性的方式很重要,并且对应于折叠的动力学途径。

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