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Three-dimensional solution structure of the HIV-1 protease complexed with DMP323, a novel cyclic urea-type inhibitor, determined by nuclear magnetic resonance spectroscopy.

机译:HIV-1蛋白酶与DMP323(一种新型环状脲型抑制剂)复合的三维溶液结构,通过核磁共振波谱确定。

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摘要

The three-dimensional solution structure of the HIV-1 protease homodimer, MW 22.2 kDa, complexed to a potent, cyclic urea-based inhibitor, DMP323, is reported. This is the first solution structure of an HIV protease/inhibitor complex that has been elucidated. Multidimensional heteronuclear NMR spectra were used to assemble more than 4,200 distance and angle constraints. Using the constraints, together with a hybrid distance geometry/simulated annealing protocol, an ensemble of 28 NMR structures was calculated having no distance or angle violations greater than 0.3 A or 5 degrees, respectively. Neglecting residues in disordered loops, the RMS deviation (RMSD) for backbone atoms in the family of structures was 0.60 A relative to the average structure. The individual NMR structures had excellent covalent geometry and stereochemistry, as did the restrained minimized average structure. The latter structure is similar to the 1.8-A X-ray structure of the protease/DMP323 complex (Chang CH et al., 1995, Protein Science, submitted); the pairwise backbone RMSD calculated for the two structures is 1.22 A. As expected, the mismatch between the structures is greatest in the loops that are disordered and/or flexible. The flexibility of residues 37-42 and 50-51 may be important in facilitating substrate binding and product release, because these residues make up the respective hinges and tips of the protease flaps. Flexibility of residues 4-8 may play a role in protease regulation by facilitating autolysis.
机译:据报道,HIV-1蛋白酶同型二聚体,分子量22.2 kDa,与有效的环状脲基抑制剂DMP323形成的三维溶液结构。这是已经阐明的HIV蛋白酶/抑制剂复合物的第一个溶液结构。多维异核NMR光谱用于组装超过4,200个距离和角度约束。使用这些约束条件,以及混合距离几何/模拟退火协议,可以计算出28个NMR结构的集合,且没有距离或角度违规分别大于0.3 A或5度。忽略无序环中的残基,结构族中主链原子的RMS偏差(RMSD)相对于平均结构为0.60A。各个NMR结构具有出色的共价几何结构和立体化学,以及受约束的最小化平均结构也是如此。后者的结构类似于蛋白酶/ DMP323复合物的1.8-A X射线结构(Chang CH等,1995,Protein Science,已提交)。为这两个结构计算的成对主干RMSD为1.22A。正如所料,结构之间的失配在无序和/或灵活的环中最大。残基37-42和50-51的柔韧性在促进底物结合和产物释放中可能是重要的,因为这些残基构成了蛋白酶瓣的各自的铰链和尖端。残基4-8的柔韧性可能通过促进自溶而在蛋白酶调节中起作用。

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