首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Solution structure and backbone dynamics of the catalytic domain of matrix metalloproteinase-2 complexed with a hydroxamic acid inhibitor.
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Solution structure and backbone dynamics of the catalytic domain of matrix metalloproteinase-2 complexed with a hydroxamic acid inhibitor.

机译:溶液结构和骨架金属动力学的基质金属蛋白酶-2与异羟肟酸抑制剂复合的催化域。

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摘要

MMP-2 is a member of the matrix metalloproteinase family that has been implicated in tumor cell metastasis and angiogenesis. Here, we describe the solution structure of a catalytic domain of MMP-2 complexed with a hydroxamic acid inhibitor (SC-74020), determined by three-dimensional heteronuclear NMR spectroscopy. The catalytic domain, designated MMP-2C, has a short peptide linker replacing the internal fibronectin-domain insertion and is enzymatically active. Distance geometry-simulated annealing calculations yielded 14 converged structures with atomic root-mean-square deviations (r.m.s.d.) of 1.02 and 1.62 A from the mean coordinate positions for the backbone and for all heavy atoms, respectively, when 11 residues at the N-terminus are excluded. The structure has the same global fold as observed for other MMP catalytic domains and is similar to previously solved crystal structures of MMP-2. Differences observed between the solution and the crystal structures, near the bottom of the S1' specificity loop, appear to be induced by the large inhibitor present in the solution structure. The MMP-2C solution structure is compared with MMP-8 crystal structure bound to the same inhibitor to highlight the differences especially in the S1' specificity loop. The finding provides a structural explanation for the selectivity between MMP-2 and MMP-8 that is achieved by large inhibitors.
机译:MMP-2是基质金属蛋白酶家族的一员,已与肿瘤细胞转移和血管生成有关。在这里,我们描述了与异羟肟酸抑制剂(SC-74020)配合的MMP-2催化域的溶液结构,该结构通过三维异核NMR光谱测定。命名为MMP-2C的催化结构域具有一个短肽接头,取代了内部纤连蛋白结构域的插入,并具有酶促活性。距离几何学模拟的退火计算得出14个会聚结构,其原子根均方差与主链和所有重原子的平均坐标位置分别为1.02和1.62 A(当N端有11个残基时)被排除在外。该结构具有与其他MMP催化域相同的整体折叠,并且类似于先前解析的MMP-2晶体结构。在溶液和晶体结构之间观察到的差异,似乎是在溶液结构中存在的大抑制剂引起的,该结构靠近S1'特异性回路底部。将MMP-2C溶液结构与结合至同一抑制剂的MMP-8晶体结构进行比较,以突出显示差异,尤其是在S1'特异性环中。该发现为通过大型抑制剂实现的MMP-2和MMP-8之间的选择性提供了结构性解释。

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