van Dijk Aalt D J, Kaptein Robert, Boelens Rolf, Bonvin Alexandre M J J
NMR Research Group, Bijvoet Center for Biomolecular Research, Utrecht University, 3584CH, Utrecht, The Netherlands.
J Biomol NMR. 2006 Apr;34(4):237-44. doi: 10.1007/s10858-006-0024-8.
The modeling of biomolecular complexes by computational docking using the known structures of their constituents is developing rapidly to become a powerful tool in structural biology. It is especially useful in combination with even limited experimental information describing the interface. Here we demonstrate for the first time the use of diffusion anisotropy in combination with chemical shift perturbation data to drive protein-protein docking. For validation purposes we make use of simulated diffusion anisotropy data. Inclusion of this information, which can be derived from NMR relaxation rates and reports on the orientation of the components of a complex with respect to the rotational diffusion tensor, substantially improves the docking results.
利用生物分子复合物各组成部分的已知结构,通过计算对接来构建其模型,这一技术正在迅速发展,成为结构生物学中的一项强大工具。特别是,当结合即使有限的描述界面的实验信息时,它会非常有用。在这里,我们首次展示了结合扩散各向异性与化学位移扰动数据来驱动蛋白质 - 蛋白质对接。为了验证目的,我们使用了模拟的扩散各向异性数据。包含可从核磁共振弛豫率得出的该信息,并报告复合物各组分相对于旋转扩散张量的方向,可显著改善对接结果。