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天然状态动力学驱动 PI3 激酶 SH3 结构域在高变性剂浓度下展开。

Native state dynamics drive the unfolding of the SH3 domain of PI3 kinase at high denaturant concentration.

机构信息

National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore 560065, India.

出版信息

Proc Natl Acad Sci U S A. 2009 Dec 8;106(49):20711-6. doi: 10.1073/pnas.0908617106. Epub 2009 Nov 17.

Abstract

Little is known about the role of protein dynamics in directing protein unfolding along a specific pathway and about the role played by chemical denaturants in modulating the dynamics and the initiation of unfolding. In this study, deuterium-hydrogen exchange (HX) detected by electrospray ionization mass spectrometry (ESI-MS) was used to study the unfolding of the SH3 domain of the PI3 kinase. Unfolding on the principal unfolding pathway occurs in 2 steps, both in the absence and in the presence of 1.8 M guanidine hydrochloride (GdnHCl). In both cases, the first step leads to the formation of an intermediate, I(N), with 5 fewer protected amide hydrogen sites than in N. In the second step, I(N) loses the structure protecting the remaining 14 amide hydrogen sites from HX as it unfolds completely. ESI-MS analysis of fragments of the protein created by proteolytic digestion, after completion of the HX reaction, shows that I(N) has lost protection against HX in the same segments of native structure during unfolding in the absence and presence of 1.8 M GdnHCl. Hence, GdnHCl does not appear to play a direct active role in the initiation of unfolding. However, at higher GdnHCl concentrations, a second unfolding pathway is shown to compete effectively with the N <--> I(N) <--> U pathway. In this way, the denaturant modulates the energy landscape of unfolding.

摘要

关于蛋白质动力学在指导蛋白质沿着特定途径展开方面的作用,以及化学变性剂在调节动力学和展开起始方面所起的作用,人们知之甚少。在这项研究中,通过电喷雾电离质谱(ESI-MS)检测到的氘氢交换(HX)被用于研究 PI3 激酶的 SH3 结构域的展开。在没有和存在 1.8 M 盐酸胍(GdnHCl)的情况下,主要展开途径上的展开都分两步进行。在这两种情况下,第一步导致形成中间体 I(N),其保护的酰胺氢位点数比 N 中少 5 个。在第二步中,I(N)失去了结构保护,使剩余的 14 个酰胺氢位点数完全展开时不受 HX 的影响。在 HX 反应完成后,通过蛋白水解消化产生的蛋白质片段的 ESI-MS 分析表明,在没有和存在 1.8 M GdnHCl 的情况下,I(N)在展开过程中失去了对 HX 的保护,与天然结构的相同片段一样。因此,GdnHCl 似乎没有在展开的起始中发挥直接的积极作用。然而,在更高的 GdnHCl 浓度下,第二种展开途径有效地与 N <--> I(N)<--> U 途径竞争。通过这种方式,变性剂调节了展开的能量景观。

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