Ortega-Roldan Jose Luis, Jensen Malene Ringkjøbing, Brutscher Bernhard, Azuaga Ana I, Blackledge Martin, van Nuland Nico A J
Departamento de Química Física e Instituto de Biotecnología, Facultad de Ciencias, Universidad de Granada, Granada, Spain.
Nucleic Acids Res. 2009 May;37(9):e70. doi: 10.1093/nar/gkp211. Epub 2009 Apr 9.
The description of the interactome represents one of key challenges remaining for structural biology. Physiologically important weak interactions, with dissociation constants above 100 muM, are remarkably common, but remain beyond the reach of most of structural biology. NMR spectroscopy, and in particular, residual dipolar couplings (RDCs) provide crucial conformational constraints on intermolecular orientation in molecular complexes, but the combination of free and bound contributions to the measured RDC seriously complicates their exploitation for weakly interacting partners. We develop a robust approach for the determination of weak complexes based on: (i) differential isotopic labeling of the partner proteins facilitating RDC measurement in both partners; (ii) measurement of RDC changes upon titration into different equilibrium mixtures of partially aligned free and complex forms of the proteins; (iii) novel analytical approaches to determine the effective alignment in all equilibrium mixtures; and (iv) extraction of precise RDCs for bound forms of both partner proteins. The approach is demonstrated for the determination of the three-dimensional structure of the weakly interacting CD2AP SH3-C:Ubiquitin complex (K(d) = 132 +/- 13 muM) and is shown, using cross-validation, to be highly precise. We expect this methodology to extend the remarkable and unique ability of NMR to study weak protein-protein complexes.
相互作用组的描述是结构生物学面临的主要挑战之一。生理上重要的弱相互作用,其解离常数高于100 μM,非常普遍,但仍超出大多数结构生物学的研究范围。核磁共振光谱法,特别是剩余偶极耦合(RDCs),为分子复合物中的分子间取向提供了关键的构象限制,但自由态和结合态对测量的RDC的贡献组合严重复杂化了它们对弱相互作用伙伴的利用。我们基于以下几点开发了一种用于确定弱复合物的稳健方法:(i)对伙伴蛋白进行差异同位素标记,便于在两个伙伴中测量RDC;(ii)测量滴定到蛋白质部分排列的自由态和复合物形式的不同平衡混合物中时RDC的变化;(iii)用于确定所有平衡混合物中有效排列的新颖分析方法;以及(iv)提取两个伙伴蛋白结合形式的精确RDC。该方法用于确定弱相互作用的CD2AP SH3-C:泛素复合物(K(d) = 132 ± 13 μM)的三维结构,并通过交叉验证表明具有高度精确性。我们期望这种方法能够扩展核磁共振研究弱蛋白质-蛋白质复合物的卓越且独特的能力。