首页> 外文期刊>Journal of Computer-Aided Molecular Design >Computational study of the catalytic domain of human neutrophil collagenase. Specific role of the S-3 and S '(3) subsites in the interaction with a phosphonate inhibitor
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Computational study of the catalytic domain of human neutrophil collagenase. Specific role of the S-3 and S '(3) subsites in the interaction with a phosphonate inhibitor

机译:人嗜中性粒细胞胶原酶催化域的计算研究。 S-3和S'(3)亚位点在与膦酸酯抑制剂相互作用中的特定作用

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Human neutrophil collagenase (HNC, MMP-8) is one of the target enzymes for drug treatment of pathologic extracellular matrix degradation. Peptidomimetic inhibitors bind in the S'-side of the enzyme active site occupying the S-1(') primary specificity pocket by their large hydrophobic side-chains. The crystal structure of the complex between the catalytic domain of MMP-8 and Pro-Leu-l-Trp(P)(OH)(2) (PLTP) showed that this phosphonate inhibitor binds in the S side of the active site. This finding was unexpected since it represents the first example of accommodation of the bulky Trp indolyl chain in the S-1 rather than in the S-1(') subsite. Dynamical and structural factors favouring this uncommon mode of binding were therefore investigated. MD simulations performed on the uncomplexed enzyme show that its structure in aqueous solution is only slightly different from the crystal structure found in the complex with PLTP. ED analysis of the MD simulations, performed on PLTP alternatively interacting with the S- or S'-side of the active site, shows that the enzyme fluctuation increases in both cases. The main contribution to the overall enzyme fluctuation is given by the loop 164-173. The fluctuation of this loop is spread over more degrees of freedom when PLTP interacts with the S-side. This dynamical factor can enhance the preference of PLTP for the S subsites of MMP-8. MD simulations also show that ligation of PLTP in the S subsites is further favoured by better zinc chelation, a cation-pi interaction at the S-3 subsite and unstrained binding conformations. The role of the S-3, S-3(') and S-1(') subsites in determining the inhibitor binding is discussed. [References: 40]
机译:人嗜中性粒细胞胶原酶(HNC,MMP-8)是用于治疗病理性细胞外基质降解的目标酶之一。拟肽抑制剂通过其大的疏水性侧链在占据S-1(')主要特异性口袋的酶活性位点的S'侧结合。 MMP-8和Pro-Leu-1-Trp(P)(OH)(2)(PLTP)的催化结构域之间的复合物的晶体结构表明,该膦酸酯抑制剂结合在活性位点的S侧。这一发现是出乎意料的,因为它代表了在S-1中而不是在S-1(')子位中容纳庞大的Trp吲哚基链的第一个例子。因此,研究了有利于这种罕见的结合方式的动力学和结构因素。在未配合的酶上进行的MD模拟显示,其在水溶液中的结构与在PLTP配合物中发现的晶体结构仅稍有不同。在PLTP上进行的MD模拟的ED分析或与活性位点的S或S'侧相互作用,表明在两种情况下酶的波动均增加。循环164-173给出了对总酶波动的主要贡献。当PLTP与S侧交互时,此环路的波动分布在更大的自由度上。该动力学因素可以增强PLTP对MMP-8的S个亚位点的偏好。 MD模拟还显示,更好的锌螯合,S-3亚位处的阳离子-π相互作用和不受约束的结合构象进一步促进了S亚位处的PLTP连接。讨论了S-3,S-3(')和S-1(')亚位点在确定抑制剂结合中的作用。 [参考:40]

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