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Ligand-induced strain in hydrogen bonds of the c-Src SH3 domain detected by NMR

机译:NMR检测到配体诱导的c-Src SH3域氢键中的应变

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摘要

Changes in the molecular conformation of proteins can result from a variety of perturbations, and can play crucial roles in the regulation of biological activity. A new solution NMR method has been applied to monitor ligand-induced changes in hydrogen bond geometry in the chicken c-Src SH3 domain. The structural response of this domain to ligand binding has been investigated by measuring trans-hydrogen bond N-15-C-13' scalar couplings in the free state and when bound to the high affinity class I ligand RLP2 containing residues RALPPLPRY. A comparison between hydrogen bonds in high resolution X-ray structures of this domain and those observed via (h3)J(NC') couplings in solution shows remarkable agreement. Two backbone-to-side-chain hydrogen bonds are observed in solution, and each appears to play a role in stabilization of loop structure. Reproducible ligand-induced changes in trans-hydrogen bond scalar couplings are observed across the domain that translate into changes in hydrogen bond length ranging between 0.02 to 0.12 Angstrom. The observed changes can be rationalized by an induced fit mechanism in which hydrogen bonds across the protein participate in a compensatory response to forces imparted at the protein-ligand interface. Upon ligand binding, mutual intercalation of the two Leu-Pro segments of the ligand between three aromatic side-chains protruding from the SH3 surface wedges apart secondary structural elements within the SH3 domain. This disruption is transmitted in a domino-like effect across the domain through networks of hydrogen bonded peptide planes. The unprecedented resolution obtained demonstrates the ability to characterize subtle structural rearrangements within a protein upon perturbation, and represents a new step in the endeavor to understand how hydrogen bonds contribute to the stabilization and function of biological macromolecules. (C) 2000 Academic Press. [References: 31]
机译:蛋白质分子构象的变化可能是由各种扰动引起的,并且可以在调节生物活性中起关键作用。一种新的溶液NMR方法已应用于监测鸡c-Src SH3域中配体诱导的氢键几何形状的变化。该结构域对配体结合的结构响应已经通过测量在游离状态下以及与含有残基RALPPLPRY的高亲和力I类配体RLP2结合时的反式氢键N-15-C-13'标量偶联来研究。该域的高分辨率X射线结构中的氢键与通过溶液中的(h3)J(NC')偶联观察到的氢键之间的比较显示出显着的一致性。在溶液中观察到两个主链至侧链的氢键,每个似乎在稳定环结构中起作用。在整个域中观察到可再生的配体诱导的跨氢键标量偶联变化,转化为氢键长度在0.02至0.12埃之间的变化。所观察到的变化可以通过诱导的拟合机制来合理化,其中跨蛋白质的氢键参与对在蛋白质-配体界面处施加的力的补偿反应。在配体结合后,配体的两个Leu-Pro链段在从SH3表面突出的三个芳族侧链之间相互插入,将SH3域内的二级结构元件楔入。该破坏通过氢键合肽平面的网络以类似多米诺的效应在域中传播。获得的空前的分辨率证明了在微扰时表征蛋白质内微妙的结构重排的能力,并且代表着努力理解氢键如何促进生物大分子稳定和功能的新步骤。 (C)2000学术出版社。 [参考:31]

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