Bermel Wolfgang, Tkach Elena N, Sobol Alexander G, Golovanov Alexander P
Bruker Biospin GmbH, Silberstreifen 4, 76287 Rheinstetten, Germany.
J Am Chem Soc. 2009 Jun 24;131(24):8564-70. doi: 10.1021/ja901602c.
One-bond residual dipolar couplings (RDCs) measured for the amide groups of proteins partially aligned in a magnetic field provide valuable information regarding the relative orientation of protein units. In order for RDCs obtained for individual proteins to be useful in the structure determination of heterodimer complexes, they should be measured for exactly the same alignment of the complex. Here, an isotopically discriminated IDIS-RDC-TROSY NMR experiment is proposed, which enables the measurement of HN RDCs for two proteins simultaneously and independently, but in the same sample, while they are part of the same complex. The signals for both proteins, one of which should be labeled with (15)N and the other with (15)N and (13)C, are observed in different subspectra, thus reducing spectral overlap. The approach uniquely ensures that RDCs measured for both proteins relate to exactly the same alignment tensor, allowing accurate measurement of the relative angle between the two proteins. The method is also applicable for complexes containing three or more protein components. The experiment can speed up and lead to automation of protein-protein docking on the basis of angular restraints.
对于在磁场中部分取向的蛋白质酰胺基团所测量的一键残余偶极耦合(RDC),能提供有关蛋白质单元相对取向的有价值信息。为了使单个蛋白质获得的RDC在异二聚体复合物的结构测定中有用,应针对复合物完全相同的取向来测量它们。在此,提出了一种同位素分辨的IDIS-RDC-TROSY核磁共振实验,该实验能够在同一复合物的同一样品中同时且独立地测量两种蛋白质的HN RDC。两种蛋白质的信号(其中一种用(^{15}N)标记,另一种用(^{15}N)和(^{13}C)标记)在不同子谱中被观测到,从而减少了谱重叠。该方法独特地确保了为两种蛋白质测量的RDC与完全相同的取向张量相关,允许精确测量两种蛋白质之间的相对角度。该方法也适用于包含三个或更多蛋白质组分的复合物。该实验能够加快基于角度约束的蛋白质-蛋白质对接并实现其自动化。