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超快氢交换揭示了细胞色素c折叠初始阶段的特定结构事件。

Ultrafast hydrogen exchange reveals specific structural events during the initial stages of folding of cytochrome c.

作者信息

Fazelinia Hossein, Xu Ming, Cheng Hong, Roder Heinrich

机构信息

Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, United States.

出版信息

J Am Chem Soc. 2014 Jan 15;136(2):733-40. doi: 10.1021/ja410437d. Epub 2013 Dec 31.

Abstract

Many proteins undergo a sharp decrease in chain dimensions during early stages of folding, prior to the rate-limiting step in folding. However, it remains unclear whether compact states are the result of specific folding events or a general hydrophobic collapse of the poly peptide chain driven by the change in solvent conditions. To address this fundamental question, we extended the temporal resolution of NMR-detected H/D exchange labeling experiments into the microsecond regime by adopting a microfluidics approach. By observing the competition between H/D exchange and folding as a function of labeling pH, coupled with direct measurement of exchange rates in the unfolded state, we were able to monitor hydrogen-bond formation for over 50 individual backbone NH groups within the initial 140 microseconds of folding of horse cytochrome c. Clusters of solvent-shielded amide protons were observed in two α-helical segments in the C-terminal half of the protein, while the N-terminal helix remained largely unstructured, suggesting that proximity in the primary structure is a major factor in promoting helix formation and association at early stages of folding, while the entropically more costly long-range contacts between the N- and C-terminal helices are established only during later stages. Our findings clearly indicate that the initial chain condensation in cytochrome c is driven by specific interactions among a subset of α-helical segments rather than a general hydrophobic collapse.

摘要

许多蛋白质在折叠的早期阶段,即在折叠的限速步骤之前,其链尺寸会急剧减小。然而,目前尚不清楚紧凑状态是特定折叠事件的结果,还是由溶剂条件变化驱动的多肽链的一般疏水塌缩的结果。为了解决这个基本问题,我们采用微流控方法将核磁共振检测的氢/氘交换标记实验的时间分辨率扩展到微秒级。通过观察氢/氘交换与折叠之间的竞争作为标记pH的函数,并结合直接测量未折叠状态下的交换速率,我们能够在马细胞色素c折叠的最初140微秒内监测超过50个单个主链NH基团的氢键形成。在蛋白质C端一半的两个α螺旋片段中观察到溶剂屏蔽酰胺质子簇,而N端螺旋在很大程度上仍未形成结构,这表明一级结构中的接近性是促进折叠早期阶段螺旋形成和缔合的主要因素,而N端和C端螺旋之间熵成本更高的长程接触仅在后期阶段建立。我们的研究结果清楚地表明细胞色素c中最初的链凝聚是由α螺旋片段子集之间的特定相互作用驱动的,而不是一般的疏水塌缩。

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