首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structure-Activity Analysis of Cathepsin K/Chondroitin 4-Sulfate Interactions
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Structure-Activity Analysis of Cathepsin K/Chondroitin 4-Sulfate Interactions

机译:组织蛋白酶K /软骨素4-硫酸盐相互作用的结构-活性分析

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摘要

In the presence of oligomeric chondroitin 4-sulfate (C4-S), cathepsin K (catK) forms a specific complex that was shown to be the source of the major collagenolytic activity in bone osteoclasts. C4-S forms multiple contacts with amino acid residues on the backside of the catK molecule that help to facilitate complex formation. As cathepsin L does not exhibit a significant collagenase activity in the presence or in the absence of C4-S, we substituted the C4-S interacting residues in catK with those of cathepsin L. Variants revealed altered collagenolytic activities with the largest inhibitory effect shown by the hexavariant M5. None of the variants showed a reduction in their gelatinolytic and peptidolytic activities when compared with wild-type catK, indicating no structural alteration within their active sites. However, the crystal structure of the M5 variant in the presence of oligomeric C4-S revealed a different binding of chondroitin 4-sulfate. C4-S is not continuously ordered as it is in the wild-type catK·C4-S complex. The orientation and the direction of the hexasaccharide on the catK surface have changed, so that the hexasaccharide is positioned between two symmetry-related molecules. Only one M5 variant molecule of the dimer that is present in the asymmetric unit interacts with C4-S. These substitutions have changed the mode of catK binding to C4-S and, as a result, have likely affected the collagenolytic potential of the variant. The data presented here support our hypothesis that distinct catK/C4-S interactions are necessary for the collagenolytic activity of the enzyme.
机译:在低聚4-硫酸软骨素(C4-S)的存在下,组织蛋白酶K(catK)形成一种特定的复合物,该复合物被证明是破骨细胞主要胶原分解活性的来源。 C4-S与catK分子背面的氨基酸残基形成多个接触,有助于促进复合物的形成。由于组织蛋白酶L在存在或不存在C4-S的情况下均不表现出显着的胶原酶活性,因此我们用组织蛋白酶L取代了catK中C4-S相互作用的残基。六变量M5。与野生型catK相比,这些变体均未显示出其明胶分解和肽水解活性降低,表明其活性位点内没有结构改变。但是,在低聚C4-S存在下,M5变体的晶体结构显示了4-硫酸软骨素的不同结合。 C4-S不像野生型catK·C4-S络合物那样连续排列。 catK表面上六糖的方向和方向已更改,因此六糖位于两个对称相关的分子之间。存在于不对称单元中的二聚体的仅一个M5变体分子与C4-S相互作用。这些取代改变了catK与C4-S结合的模式,结果可能影响了该变体的胶原蛋白水解潜能。这里提供的数据支持我们的假设,即不同的catK / C4-S相互作用对于酶的胶原蛋白水解活性是必需的。

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