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首页> 外文期刊>Journal of Molecular Biology >Snapshots of protein folding. A study on the multiple transition state pathway of cytochrome c(551) from Pseudomonas aeruginosa
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Snapshots of protein folding. A study on the multiple transition state pathway of cytochrome c(551) from Pseudomonas aeruginosa

机译:蛋白质折叠的快照。铜绿假单胞菌细胞色素c(551)的多重过渡态途径的研究

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摘要

Cytochrome c(551) (cyt c(551)) from Pseudomonas aeruginosa is a small protein (82 residues) that folds via a three-state pathway with the accumulation in the microsecond time-range of a compact collapsed intermediate. The presence of a single His residue, at position 16, permits the study of the refolding at pH 7.0 in the absence of miscoordination events. Here, we report on folding kinetics in the millisecond time-range as a function of urea under different pH conditions. Analysis of this process (over-and-above proline cis-trans isomerization) at pH 7.0, suggests the existence of a multiple transition state pathway in which we postulate three transition states. Taking advantage of site-directed mutagenesis we propose that the first "unfolded-like" transition state (t(1)) originates from the electrostatic properties of the collapsed state, while the second transition state (t(2)) involves the interaction between the N and C-terminal helices and is stabilized by the salt bridge between Lys10 and Glu70 (similar to1 kcal mol(-1)). Our results suggest that, contrary to other cytochromes c, the roll-over effect observed for cyt c(551) at low denaturant concentration can be interpreted in terms of a broad energy barrier without population of any intermediates. The third and more "native-like" transition state (M) can be associated with the breaking/formation of the Fe3+-Met61 bond. This strong interaction is stabilized by the hydrogen bond between Trp56 and heme propionate 17 (HP-17) as suggested by the increase in the unfolding rate at high denaturant concentration of the Trp56Phe site-directed mutant. (C) 2001 Academic Press. [References: 44]
机译:铜绿假单胞菌的细胞色素c(551)(cyt c(551))是一种小的蛋白质(82个残基),它通过三态途径折叠,并在紧密折叠的中间体的微秒时间范围内积累。在位置16处存在单个His残基,可以研究在pH 7.0下不发生配位错误事件时的重折叠。在这里,我们报告了在不同pH条件下,在毫秒时间范围内随尿素变化的折叠动力学。在pH 7.0下对该过程的分析(脯氨酸顺式和反式异构化以上)表明存在多个过渡状态途径,我们在其中假设了三个过渡状态。利用定点诱变,我们建议第一个“未折叠状”过渡态(t(1))源自折叠态的静电性质,而第二个过渡态(t(2))涉及N和C端螺旋,并通过Lys10和Glu70之间的盐桥(类似于1 kcal mol(-1))稳定。我们的结果表明,与其他细胞色素c相反,在低变性剂浓度下对cyt c(551)观察到的侧翻效应可以用宽泛的能垒来解释,而无需填充任何中间体。第三和更多的“天然样”过渡态(M)可以与Fe 3+ -Met 61键的断裂/形成有关。这种强相互作用通过Trp56和丙酸血红素17(HP-17)之间的氢键稳定,这是由Trp56Phe定点突变体在高变性浓度下解折叠速率增加所暗示的。 (C)2001学术出版社。 [参考:44]

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