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Toward solving the folding pathway of barnase: the complete backbone 13C, 15N, and 1H NMR assignments of its pH-denatured state.

机译:着手解决barnase的折叠途径:pH变性状态的完整骨架13C,15N和1H NMR分配。

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摘要

The structures of the major folding intermediate, the transition state for folding, and the folded state of barnase have been previously characterized. We now add a further step toward a complete picture of the folding of barnase by reporting the backbone 15N, 13C, and 1H NMR assignments for barnase unfolded at pH 1.8 and 30 degrees C. These assignments, which were obtained from a combination of heteronuclear magnetization transfer and backbone triple-resonance NMR experiments, constitute the first stage in the structural characterization of this denatured state by NMR. Interresidue nuclear Overhauser effect contacts and deviations from 1H random-coil chemical shifts provide evidence for stable residual structure. The structured regions span residues in the native protein that contain its major alpha-helix and central strands of the beta-sheet. Earlier experiments have shown that these regions are predominantly intact in the major folding intermediate and that their docking is partly rate determining in folding.
机译:主要折叠中间体的结构,折叠的过渡状态和barnase的折叠状态已经被预先表征。现在,我们通过报告在pH 1.8和30摄氏度下展开的芽孢杆菌蛋白酶的主链15N,13C和1H NMR分配,进一步完善了芽孢杆菌蛋白酶折叠的全貌。这些分配是从异核磁化的组合中获得的NMR和骨架三重共振NMR实验构成了该变性状态的结构表征的第一步。残基间的核Overhauser效应接触和1H无规线圈化学位移的偏离为稳定的残基结构提供了证据。结构化区域跨越天然蛋白质中的残基,这些残基包含其主要的α-螺旋和β-折叠的中央链。较早的实验表明,这些区域在主要的折叠中间体中主要是完整的,并且它们的对接部分取决于折叠中的速率。

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