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一种肽模型的核磁共振表征为绒毛蛋白头部螺旋亚结构域未折叠状态下的显著结构提供了证据。

NMR characterization of a peptide model provides evidence for significant structure in the unfolded state of the villin headpiece helical subdomain.

作者信息

Tang Yuefeng, Goger Michael J, Raleigh Daniel P

机构信息

Department of Chemistry, State University of New York, Stony Brook, New York 11790-3400, USA.

出版信息

Biochemistry. 2006 Jun 6;45(22):6940-6. doi: 10.1021/bi052484n.

Abstract

The villin headpiece subdomain (HP36) is the smallest naturally occurring protein that folds cooperatively. The protein folds on a microsecond time scale. Its small size and very rapid folding have made it a popular target for biophysical studies of protein folding. Temperature-dependent one-dimensional (1D) NMR studies of the full-length protein together with CD and 1D NMR studies of the 21-residue peptide fragment (HP21) derived from HP36 have shown that there is significant structure in the unfolded state of HP36 and have demonstrated that HP21 is a good model of these interactions. Here, we characterized the model peptide HP21 in detail by two-dimensional NMR. Strongly upfield shifted C(alpha) protons, the magnitude of the 3J(NH,alpha) coupling constants, and the pattern of backbone-backbone and backbone-side chain NOEs indicate that the ensemble of structures populated by HP21 contains alpha-helical structure and native as well as non-native hydrophobic contacts. The hydrogen-bonded secondary structure inferred from the NOEs is, however, not sufficient to confer significant protection against amide H-D exchange. These studies indicate that there is significant secondary structure and hydrophobic clustering in the unfolded state of HP36. The implications for the folding of HP36 are discussed.

摘要

绒毛蛋白头部结构域(HP36)是能协同折叠的最小天然存在的蛋白质。该蛋白质在微秒时间尺度上折叠。其小尺寸和非常快速的折叠使其成为蛋白质折叠生物物理研究的热门对象。对全长蛋白质进行的温度依赖性一维(1D)核磁共振研究以及对源自HP36的21个残基肽片段(HP21)进行的圆二色光谱和一维核磁共振研究表明,HP36的未折叠状态存在显著结构,并证明HP21是这些相互作用的良好模型。在此,我们通过二维核磁共振对模型肽HP21进行了详细表征。强烈向高场位移的Cα质子、3J(NH,α)耦合常数的大小以及主链-主链和主链-侧链核Overhauser效应(NOE)的模式表明,HP21构成的结构集合包含α-螺旋结构以及天然和非天然的疏水接触。然而,从NOE推断出的氢键二级结构不足以对酰胺H-D交换提供显著保护。这些研究表明,HP36的未折叠状态存在显著的二级结构和疏水簇集。并讨论了其对HP36折叠的影响。

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