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包含八个保守疏水残基的类天然结构的形成在ACBP的两态蛋白质折叠中是限速步骤。

The formation of a native-like structure containing eight conserved hydrophobic residues is rate limiting in two-state protein folding of ACBP.

作者信息

Kragelund B B, Osmark P, Neergaard T B, Schiødt J, Kristiansen K, Knudsen J, Poulsen F M

机构信息

Carlsberg Laboratorium, Valby, Copenhagen, Denmark.

出版信息

Nat Struct Biol. 1999 Jun;6(6):594-601. doi: 10.1038/9384.

Abstract

The acyl-coenzyme A-binding proteins (ACBPs) contain 26 highly conserved sequence positions. The majority of these have been mutated in the bovine protein, and their influence on the rate of two-state folding and unfolding has been measured. The results identify eight sequence positions, out of 24 probed, that are critical for fast productive folding. The residues are all hydrophobic and located in the interface between the N- and C-terminal helices. The results suggest that one specific site dominated by conserved hydrophobic residues forms the structure of the productive rate-determining folding step and that a sequential framework model can describe the protein folding reaction.

摘要

酰基辅酶A结合蛋白(ACBPs)包含26个高度保守的序列位置。其中大多数在牛蛋白中已发生突变,并已测量了它们对两态折叠和去折叠速率的影响。结果在24个被探测的序列位置中确定了8个对快速有效折叠至关重要的位置。这些残基均为疏水残基,位于N端和C端螺旋之间的界面处。结果表明,一个由保守疏水残基主导的特定位点构成了有效速率决定折叠步骤的结构,并且一个顺序框架模型可以描述蛋白质折叠反应。

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