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核糖核酸酶A氧化折叠过程中的两种新型结构化中间体。

Two new structured intermediates in the oxidative folding of RNase A.

作者信息

Welker E, Narayan M, Volles M J, Scheraga H A

机构信息

Baker Laboratory of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14853-1301, USA.

出版信息

FEBS Lett. 1999 Nov 5;460(3):477-9. doi: 10.1016/s0014-5793(99)01391-5.

Abstract

Two new three-disulfide intermediates have been found to be populated in the oxidative folding pathway of bovine pancreatic ribonuclease A at a low temperature (15 degrees C). These intermediates, des-[26-84] and des-[58-110], possess all but one of the four native disulfide bonds and have a stable tertiary structure, similar to the two previously observed intermediates, des-[65-72] and des-[40-95]. While the latter two des species each lack one surface-exposed disulfide bond, the newly discovered intermediates each lack one buried disulfide bond. The possible involvement of these species in the rate-determining steps during the oxidative folding of RNase A is discussed and a specific role for such species during oxidative folding is suggested.

摘要

已发现两种新的三硫键中间体在低温(15摄氏度)下存在于牛胰核糖核酸酶A的氧化折叠途径中。这些中间体,即去-[26-84]和去-[58-110],拥有四个天然二硫键中的三个,具有稳定的三级结构,类似于之前观察到的两种中间体,即去-[65-72]和去-[40-95]。后两种去二硫键物种各自缺少一个表面暴露的二硫键,而新发现的中间体各自缺少一个埋藏的二硫键。本文讨论了这些物种在核糖核酸酶A氧化折叠过程中可能参与速率决定步骤的情况,并提出了此类物种在氧化折叠过程中的特定作用。

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