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首页> 外文期刊>Journal of Molecular Biology >Quantitative Evaluation of Each Catalytic Subsite of Cathepsin B for Inhibitory Activity Based on Inhibitory Activity-Binding Mode Relationship of Epoxysuccinyl Inhibitors by X-ray Crystal Structure Analyses of Complexes.
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Quantitative Evaluation of Each Catalytic Subsite of Cathepsin B for Inhibitory Activity Based on Inhibitory Activity-Binding Mode Relationship of Epoxysuccinyl Inhibitors by X-ray Crystal Structure Analyses of Complexes.

机译:通过配合物的X射线晶体结构分析,基于环氧琥珀酰抑制剂的抑制活性-结合模式关系,对组织蛋白酶B的每个催化亚位的抑制活性进行定量评估。

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摘要

To quantitatively estimate the inhibitory effect of each substrate-binding subsite of cathepsin B (CB), a series of epoxysuccinyl derivatives with different functional groups bound to both carbon atoms of the epoxy ring were synthesized, and the relationship between their inhibitory activities and binding modes at CB subsites was evaluated by the X-ray crystal structure analyses of eight complexes. With the common reaction in which the epoxy ring of inhibitor was opened to form a covalent bond with the S(gamma)H group of the active center Cys29, the observed binding modes of the substituents of inhibitors at the binding subsites of CB enabled the quantitative assessment of the inhibitory effect of each subsite. Although the single blockage of S1' or S2' subsite exerts only the inhibitory effect of IC(50)= approximately 24 muM (k(2)= approximately 1250 M(-1) s(-1)) or approximately 15 muM (k(2)= approximately 1800 M(-1) s(-1)), respectively, the synchronous block of both subsites leads to IC(50)= approximately 23 nM (k(2)=153,000 - 185,000 M(-1) s(-1)), under the condition that (i) the inhibitor possesses a P1' hydrophobic residue such as Ile and a P2' hydrophobic residue such as Ala, Ile or Pro, and (ii) the C-terminal carboxyl group of a P2' residue is able to form paired hydrogen bonds with the imidazole NH of His110 and the imidazole N of His111 of CB. The inhibitor of a Pn'>/=3' substituent was not potentiated by collision with the occluding loop. On the other hand, it was suggested that the inhibitory effects of Sn subsites are independent of those of Sn' subsites, and the simultaneous blockage of the funnel-like arrangement of S2 and S3 subsites leads to the inhibition of IC(50)= approximately 40 nM (k(2)= approximately 66,600 M(-1) s(-1)) regardless of the lack of Pn' substituents. Here we present a systematic X-ray structure-based evaluation of structure-inhibitory activity relationship of each binding subsite of CB, and the results provide the structural basis for designing a more potent CB-specific inhibitor.
机译:为了定量评估组织蛋白酶B(CB)的每个底物结合亚位点的抑制作用,合成了一系列具有不同官能团的环氧琥珀酰衍生物与环氧环的两个碳原子结合,并且它们的抑制活性与结合方式之间的关系通过对八种配合物的X射线晶体结构分析,评估了CB子位点的Cb含量。通过常见的反应,其中抑制剂的环氧环被打开以与活性中心Cys29的SγH基团形成共价键,在CB的结合位点观察到的抑制剂取代基的结合模式使得能够定量评估每个亚位点的抑制作用。尽管对S1'或S2'亚位点的单一阻滞仅发挥IC(50)=约24μM(k(2)=约1250 M(-1)s(-1))或约15μM(k (2)=分别约为1800 M(-1)s(-1)),两个子站点的同步块导致IC(50)=约23 nM(k(2)= 153,000-185,000 M(-1) s(-1)),条件是:(i)抑制剂具有P1'疏水残基(例如Ile)和P2'疏水残基(例如Ala,Ile或Pro),以及(ii)化合物的C端羧基P2'残基能够与His110的咪唑NH和CB的His111的咪唑N形成成对的氢键。 Pn′≥3′取代基的抑制剂没有通过与闭环的碰撞而增强。另一方面,有人认为Sn亚位点的抑制作用与Sn'亚位点的抑制作用无关,同时阻塞S2和S3亚位点的漏斗状排列会导致IC(50)=大约抑制。 40 nM(k(2)=约66,600 M(-1)s(-1)),无论是否缺少Pn'取代基。在这里,我们介绍了基于系统的X射线结构的CB的每个结合亚位的结构抑制活性关系的评估,结果为设计更有效的CB特异性抑制剂提供了结构基础。

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