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Resolution of Site-Specific Conformational Heterogeneity in Proline-Rich Molecular Recognition by Src Homology 3 Domains

机译:通过Src同源性3域解析脯氨酸丰富的分子识别中特定于位点的构象异质性

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摘要

Conformational heterogeneity and dynamics are increasingly evoked in models of protein molecular recognition but are challenging to experimentally characterize. Here we combine the inherent temporal resolution of infrared (IR) spectroscopy with the spatial resolution afforded by selective incorporation of carbon-deuterium (C–D) bonds, which provide frequency-resolved absorptions within a protein IR spectrum, to characterize the molecular recognition of the Src homology 3 (SH3) domain of the yeast protein Sho1 with its cognate proline-rich (PR) sequence of Pbs2. The IR absorptions of C–D bonds introduced at residues along a peptide of the Pbs2 PR sequence report on the changes in the local environments upon binding to the SH3 domain. Interestingly, upon forming the complex the IR spectra of the peptides labeled with C–D bonds at either of the two conserved prolines of the PXXP consensus recognition sequence show more absorptions than there are C–D bonds, providing evidence for the population of multiple states. In contrast, the NMR spectra of the peptides labeled with 13C at the same residues show only single resonances, indicating rapid interconversion on the NMR time scale. Thus, the data suggest that the SH3 domain recognizes its cognate peptide with a component of induced fit molecular recognition involving the adoption of multiples states, which have previously gone undetected due to interconversion between the populated states that is too fast to resolve using conventional methods.
机译:构象异质性和动力学在蛋白质分子识别模型中越来越多地引起人们的注意,但是对实验表征却具有挑战性。在这里,我们将红外光谱的固有时间分辨率与选择性掺入碳-氘(C-D)键所提供的空间分辨率相结合,以在蛋白质IR光谱内提供频率分辨的吸收,从而表征对蛋白质的识别酵母蛋白Sho1的Src同源3(SH3)域及其同源的富含脯氨酸(PR)的Pbs2序列。在沿着Pbs2 PR序列的肽段的残基处引入的C–D键的IR吸收报告了结合SH3结构域后局部环境的变化。有趣的是,形成复合物后,在PXXP共有识别序列的两个保守脯氨酸中,用C-D键标记的肽的IR光谱显示出比C-D键更多的吸收,从而为多种状态的种群提供了证据。相反,在相同残基处被 13 C标记的肽的NMR谱图仅显示单个共振,表明在NMR时间范围内快速相互转化。因此,数据表明SH3结构域用涉及采用多重状态的诱导的适合分子识别的成分来识别其同源肽,该状态先前由于未被快速检出而无法使用常规方法解析的人口状态之间的相互转换而被发现。

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