Probing local backbone geometries in intrinsically disordered proteins by cross-correlated NMR relaxation

利用交叉相关核磁共振弛豫法探测固有无序蛋白的局部骨架几何结构

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Abstract

An ultra-high-resolution NMR experiment for the measurement of intraresidue (1)H(i)-(15)N(i)-(13)C'(i) dipolar-chemical shift anisotropy relaxation interference is employed to extract information about local backbone geometries in intrinsically disordered proteins. The study of tumor suppressor BASP1 revealed a population shift of β-turn geometries at low pH conditions and a compaction of the BASP1 structural ensemble.

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