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通过氢氘交换研究蛋白质-DNA复合物中的协同α-螺旋解折叠

Cooperative alpha-helix unfolding in a protein-DNA complex from hydrogen-deuterium exchange.

作者信息

Salinas Roberto K, Diercks Tammo, Kaptein Robert, Boelens Rolf

机构信息

Bijvoet Center for Biomolecular Research, Utrecht University, The Netherlands.

出版信息

Protein Sci. 2006 Jul;15(7):1752-9. doi: 10.1110/ps.051938006. Epub 2006 Jun 2.

Abstract

We present experimental evidence for a cooperative unfolding transition of an alpha-helix in the lac repressor headpiece bound to a symmetric variant of the lac operator, as inferred from hydrogen-deuterium (H-D) exchange experiments monitored by NMR spectroscopy. In the EX1 limit, observed exchange rates become pH-independent and exclusively sensitive to local structure fluctuations that expose the amide proton HN to exchange. Close to this regime, we measured decay rates of individual backbone HN signals in D2O, and of their mutual HN-HN NOE by time-resolved two-dimensional (2D) NMR experiments. The data revealed correlated exchange at the center of the lac headpiece recognition helix, Val20-Val23, and suggested that the correlation breaks down at Val24, at the C terminus of the helix. A lower degree of correlation was observed for the exchange of Val9 and Ala10 at the center of helix 1, while no correlation was observed for Val38 and Glu39 at the center of helix 3. We conclude that HN exchange in the recognition helix and, to some extent, in helix 1 is a cooperative event involving the unfolding of these helices, whereas the HN exchange in helix 3 is dominated by random local structure fluctuations.

摘要

我们通过核磁共振波谱监测的氢-氘(H-D)交换实验推断,提供了实验证据,证明与乳糖操纵子对称变体结合的乳糖阻遏蛋白头部结构域中α-螺旋存在协同解折叠转变。在EX1极限下,观察到的交换速率与pH无关,并且仅对使酰胺质子HN暴露于交换的局部结构波动敏感。接近此状态时,我们通过时间分辨二维(2D)核磁共振实验测量了D2O中各个主链HN信号的衰减速率及其相互之间的HN-HN核Overhauser效应(NOE)。数据显示,在乳糖头部结构域识别螺旋的中心Val20-Val23处存在相关交换,并表明在螺旋C末端的Val24处相关性消失。在螺旋1中心的Val9和Ala10的交换中观察到较低程度的相关性,而在螺旋3中心的Val38和Glu39的交换中未观察到相关性。我们得出结论,识别螺旋以及在某种程度上螺旋1中的HN交换是涉及这些螺旋解折叠的协同事件,而螺旋3中的HN交换则主要由随机的局部结构波动主导。

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