Hill Guy R, Yang Ji-Chun, Easton Laura E, Cerdan Rachel, McLaughlin Stephen H, Stott Katherine, Travers Andrew A, Neuhaus David
MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge, CB2 0QH, UK.
LPHI, Univ. Montpellier, CNRS, Inserm, Place Eugène Bataillon, 34095, Montpellier, France.
Chembiochem. 2024 Dec 2;25(23):e202400395. doi: 10.1002/cbic.202400395. Epub 2024 Nov 7.
Broadening of signals from atoms at interfaces can often be a limiting factor in applying solution NMR to the structure determination of complexes. Common contributors to such problems include exchange between free and bound states and the increased molecular weight of complexes relative to the free components, but another cause that can be more difficult to deal with occurs when conformational dynamics within the interface takes place at an intermediate rate on the chemical shift timescale. In this work we show how a carefully chosen mutation in the protein HMG-D rescued such a situation, making possible high-resolution structure determination of its complex with a dA bulge DNA ligand designed to mimic a natural DNA bend, and thereby revealing a new spatial organization of the complex.
界面处原子信号的展宽常常会成为将溶液核磁共振技术应用于复合物结构测定的限制因素。导致此类问题的常见因素包括游离态与结合态之间的交换以及复合物相对于游离组分分子量的增加,但当界面内的构象动力学在化学位移时间尺度上以中等速率发生时,还会出现另一个更难处理的原因。在这项工作中,我们展示了如何通过在蛋白质HMG-D中精心选择一个突变来挽救这种情况,从而有可能对其与一种设计用于模拟天然DNA弯曲的dA凸起DNA配体的复合物进行高分辨率结构测定,进而揭示该复合物的一种新的空间组织形式。