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Predicting subsite interactions of plasmin with substrates and inhibitors through computational docking analysis

机译:通过计算对接分析预测纤溶酶与底物和抑制剂的亚位相互作用

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Plasmin plays important roles in various physiological systems. The identification of inhibitors controlling its regulation represents a promising drug-discovery challenge. To develop selective inhibitors of plasmin, structural information of the binding modes is crucial. Here, a computational docking study was conducted to provide structural insight into plasmin subsite interactions with substrates/inhibitors. Predicted binding modes of two peptide-substrates (D/L-Ile-Phe-Lys), and potent and weak inhibitors (YO-2 and PKSI-527) suggested non-prime and prime subsite interactions relevant to recognition by plasmin. Predicted binding modes also correlated well with the experimental structure–activity relationships for plasmin substrates/inhibitors, namely the differences of KM values between the D- and L-peptide-substrates and inhibitory potencies of YO-2 and PKSI-527. In particular, interaction observed at a hydrophobic pocket near S2 and at a tunnel-shaped hydrophobic S1′ was strongly suggested to be significantly involved in tight binding of inhibitors to plasmin. Our present findings may aid in the design of potent and selective plasmin inhibitors.
机译:纤溶酶在各种生理系统中起重要作用。识别控制其调控的抑制剂代表了有前途的药物发现挑战。为了开发纤溶酶的选择性抑制剂,结合模式的结构信息至关重要。在这里,进行了计算对接研究,以提供对纤溶酶亚位点与底物/抑制剂相互作用的结构见解。两种肽底物(D / L-Ile-Phe-Lys)以及强效和弱抑制剂(YO-2和PKSI-527)的预测结合模式表明与纤溶酶识别相关的非主要和主要亚位相互作用。预测的结合方式还与纤溶酶底物/抑制剂的实验结构-活性关系密切相关,即D-和L-肽底物之间的K M 值的差异和YO-2的抑制能力和PKSI-527。特别是,强烈建议在S2附近的疏水口袋处和在隧道形疏水S1'处观察到相互作用,这与抑制剂与纤溶酶的紧密结合密切相关。我们目前的发现可能有助于设计有效的选择性纤溶酶抑制剂。

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