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Structural Insights into the Role of the Cyclic Backbone in a Squash Trypsin Inhibitor

机译:结构壁球壁球胰蛋白酶抑制剂作用的见解。

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摘要

MCoTI-II is a head-to-tail cyclic peptide with potent trypsin inhibitory activity and, on the basis of its exceptional proteolytic stability, is a valuable template for the design of novel drug leads. Insights into inhibitor dynamics and interactions with biological targets are critical for drug design studies, particularly for protease targets. Here, we show that the cyclization and active site loops of MCoTI-II are flexible in solution, but when bound to trypsin, the active site loop converges to a single well defined conformation. This finding of reduced flexibility on binding is in contrast to a recent study on the homologous peptide MCoTI-I, which suggested that regions of the peptide are more flexible upon binding to trypsin. We provide a possible explanation for this discrepancy based on degradation of the complex over time. Our study also unexpectedly shows that the cyclization loop, not present in acyclic homologues, facilitates potent trypsin inhibitory activity by engaging in direct binding interactions with trypsin.
机译:MCoTI-II是具有强大的胰蛋白酶抑制活性的头尾环肽,基于其出色的蛋白水解稳定性,是设计新型药物前导的有价值的模板。深入了解抑制剂动力学以及与生物靶标的相互作用对于药物设计研究(尤其是蛋白酶靶标)至关重要。在这里,我们显示MCoTI-II的环化和活性位点环在溶液中很灵活,但是当与胰蛋白酶结合时,活性位点环会收敛到一个定义明确的构象。与结合肽的弹性降低有关的发现与对同源肽MCoTI-1的最新研究相反,该研究表明该肽的区域在与胰蛋白酶结合时更具柔性。我们会根据复杂度随时间的下降为这种差异提供可能的解释。我们的研究还出乎意料地表明,无环同源物中不存在的环化环通过与胰蛋白酶直接结合相互作用而促进了有效的胰蛋白酶抑制活性。

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