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铜绿假单胞菌细胞色素c551的折叠机制:静电相互作用对疏水塌缩和过渡态性质的作用

Folding mechanism of Pseudomonas aeruginosa cytochrome c551: role of electrostatic interactions on the hydrophobic collapse and transition state properties.

作者信息

Travaglini-Allocatelli C, Cutruzzolà F, Bigotti M G, Staniforth R A, Brunori M

机构信息

Istituto Pasteur-Fondazione Cenci Bolognetti and Centro di Biologia Molecolare del CNR Dipartimento di Scienze Biochimiche "A. Rossi Fanelli", Università di Roma "La Sapienza", Piazzale A. Moro 5, Rome, I00185, Italy.

出版信息

J Mol Biol. 1999 Jun 25;289(5):1459-67. doi: 10.1006/jmbi.1999.2852.

Abstract

We report on the folding kinetics of the small 82 residue cytochrome c551from Pseudomonas aeruginosa. The presence of two Trp residues (Trp56 and Trp77) allows the monitoring of fluorescence quenching on refolding in two different regions of the protein. A single His residue (the iron-coordinating His16) permits the study of refolding in the absence of miscoordination events. After identification of the kinetic traps (Pro isomerization and aggregation of denatured protein), overall refolding kinetics is described by two processes: (i) a burstphase collapse (faster than milliseconds) which we show to be a global event leading to a state whose compactness depends on the overall net charge; at the isoeletric pH (4.7), it is maximally compact, while above and below it is more expanded; and (ii) an exponential phase (in the millisecond time range) leading to the native protein via a transition state(s) possibly involving the formation of a specific salt bridge between Lys10 and Glu70, at the contact between the N and C-terminal helices. Comparison with the widely studied horse cytochrome c allows the discussion of similarities and differences in the folding of two proteins which have the same "fold" despite a very low degree of sequence homology (<30 %).

摘要

我们报道了来自铜绿假单胞菌的82个残基的细胞色素c551的折叠动力学。两个色氨酸残基(Trp56和Trp77)的存在使得能够监测蛋白质两个不同区域重折叠过程中的荧光猝灭。单个组氨酸残基(铁配位的His16)允许在不存在错配位事件的情况下研究重折叠。在确定动力学陷阱(变性蛋白质的脯氨酸异构化和聚集)后,整体重折叠动力学由两个过程描述:(i)一个爆发相塌陷(快于毫秒),我们证明这是一个全局事件,导致一种紧凑程度取决于整体净电荷的状态;在等电pH值(4.7)时,它最紧凑,而在其之上和之下则更伸展;(ii)一个指数相(在毫秒时间范围内),通过一个可能涉及在N和C末端螺旋接触处Lys10和Glu70之间形成特定盐桥的过渡态导致天然蛋白质的形成。与广泛研究的马细胞色素c进行比较,可以讨论两种蛋白质折叠过程中的异同,尽管它们的序列同源性很低(<30%),但具有相同的“折叠”结构。

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