Amide protection in an early folding intermediate of cytochrome c

J Michael Sauder , Heinrich Roder
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引用次数: 51

Abstract

Background: For many proteins, compact states appear long before the rate-limiting step in the formation of the native structure. A key issue is whether the initial collapse of the chain is driven by random or more specific hydrophobic interactions.

Results: Hydrogen-exchange labeling coupled with NMR was used to monitor the formation of stable hydrogen-bonded and solvent-excluded structure in horse cytochrome c (cyt c). Protection was measured using a hydrogen exchange/folding competition protocol at variable pH and short competition time (2 ms). Protection factors of threefold to eightfold were observed in all three α helices of cyt c, whereas other regions showed no significant protection. This suggests that the compact states that are present contain segments of marginally stable hydrogen-bonded structure. When the intermediate(s) are destabilized, only amide protons from Cys14, Ala15 and His18 show significant protection, indicating a region of persistent residual structure near the covalently bound heme group in the unfolded protein. Fluorescence-detected stopped-flow studies showed that the maximum protection factor in the early intermediate is consistent with its unfolding equilibrium constant.

Conclusions:Together with previous fluorescence and CD results, the observed pattern of amide protection is consistent with the early formation of an α-helical core domain in an ensemble of compact states, indicating that efficient folding is facilitated by stepwise acquisition of native structural elements. These specific early interactions are established on the sub-millisecond time scale, prior to the rate-limiting step for folding.

细胞色素c早期折叠中间体的酰胺保护作用
背景:对许多蛋白质来说,致密状态早在天然结构形成的限速步骤之前就出现了。一个关键的问题是,链的初始崩溃是由随机的还是更具体的疏水相互作用驱动的。结果:采用氢交换标记结合核磁共振监测马细胞色素c (cyt c)中稳定氢键和溶剂排除结构的形成。采用氢交换/折叠竞争方案,在变pH和短竞争时间(2 ms)下测量保护作用。在cyt c的三个α螺旋中均观察到3 ~ 8倍的保护因子,而其他区域则没有显著的保护作用。这表明存在的致密态包含了边缘稳定的氢键结构片段。当中间体不稳定时,只有来自Cys14、Ala15和His18的酰胺质子表现出显著的保护作用,表明未折叠蛋白中靠近共价结合血红素基团的区域存在持久的残余结构。荧光检测停流研究表明,早期中间体的最大保护系数与其展开平衡常数一致。结论:结合先前的荧光和CD结果,观察到的酰胺保护模式与α-螺旋核心结构域在紧密态集合中的早期形成一致,表明有效折叠是通过逐步获得天然结构元素来促进的。这些特定的早期相互作用是在亚毫秒时间尺度上建立的,在折叠的速率限制步骤之前。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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