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走向结构动力学:通过化学位移调制和 C'N 多量子弛豫的直接检测观察到的蛋白质运动。

Toward structural dynamics: protein motions viewed by chemical shift modulations and direct detection of C'N multiple-quantum relaxation.

机构信息

Magnetic Resonance Center (CERM) and Department of Chemistry, University of Florence, Via L. Sacconi 3, 50019 Sesto Fiorentino, Italy.

出版信息

J Am Chem Soc. 2010 Mar 17;132(10):3594-600. doi: 10.1021/ja9103556.

Abstract

Multiple quantum relaxation in proteins reveals unexpected relationships between correlated or anti-correlated conformational backbone dynamics in alpha-helices or beta-sheets. The contributions of conformational exchange to the relaxation rates of C'N coherences (i.e., double- and zero-quantum coherences involving backbone carbonyl (13)C' and neighboring amide (15)N nuclei) depend on the kinetics of slow exchange processes, as well as on the populations of the conformations and chemical shift differences of (13)C' and (15)N nuclei. The relaxation rates of C'N coherences, which reflect concerted fluctuations due to slow chemical shift modulations (CSMs), were determined by direct (13)C detection in diamagnetic and paramagnetic proteins. In well-folded proteins such as lanthanide-substituted calbindin (CaLnCb), copper,zinc superoxide dismutase (Cu,Zn SOD), and matrix metalloproteinase (MMP12), slow conformational exchange occurs along the entire backbone. Our observations demonstrate that relaxation rates of C'N coherences arising from slow backbone dynamics have positive signs (characteristic of correlated fluctuations) in beta-sheets and negative signs (characteristic of anti-correlated fluctuations) in alpha-helices. This extends the prospects of structure-dynamics relationships to slow time scales that are relevant for protein function and enzymatic activity.

摘要

蛋白质中的多重量子弛豫揭示了α-螺旋或β-折叠中相关或反相关构象骨架动力学之间出人意料的关系。构象交换对 C'N 相干(即涉及骨架羰基 (13)C'和相邻酰胺 (15)N 核的双量子和零量子相干)弛豫率的贡献取决于慢交换过程的动力学,以及构象的丰度和 (13)C'和 (15)N 核的化学位移差。C'N 相干的弛豫率反映了由于缓慢化学位移调制 (CSM)而协同波动,通过顺磁和反磁蛋白质中的直接 (13)C 检测来确定。在折叠良好的蛋白质中,如镧系取代的钙结合蛋白 (CaLnCb)、铜锌超氧化物歧化酶 (Cu,Zn SOD) 和基质金属蛋白酶 (MMP12),整个骨架都会发生缓慢的构象交换。我们的观察结果表明,源于缓慢骨架动力学的 C'N 相干的弛豫率在β-折叠中具有正号(与相关波动特征一致),而在α-螺旋中具有负号(与反相关波动特征一致)。这将结构-动力学关系的前景扩展到与蛋白质功能和酶活性相关的缓慢时间尺度。

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