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A Cyclic Peptidic Serine Protease Inhibitor: Increasing Affinity by Increasing Peptide Flexibility

机译:环肽丝氨酸蛋白酶抑制剂:通过增加肽的灵活性来增加亲和力。

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摘要

Peptides are attracting increasing interest as protease inhibitors. Here, we demonstrate a new inhibitory mechanism and a new type of exosite interactions for a phage-displayed peptide library-derived competitive inhibitor, mupain-1 (CPAYSRYLDC), of the serine protease murine urokinase-type plasminogen activator (uPA). We used X-ray crystal structure analysis, site-directed mutagenesis, liquid state NMR, surface plasmon resonance analysis, and isothermal titration calorimetry and wild type and engineered variants of murine and human uPA. We demonstrate that Arg6 inserts into the S1 specificity pocket, its carbonyl group aligning improperly relative to Ser195 and the oxyanion hole, explaining why the peptide is an inhibitor rather than a substrate. Substitution of the P1 Arg with novel unnatural Arg analogues with aliphatic or aromatic ring structures led to an increased affinity, depending on changes in both P1 - S1 and exosite interactions. Site-directed mutagenesis showed that exosite interactions, while still supporting high affinity binding, differed substantially between different uPA variants. Surprisingly, high affinity binding was facilitated by Ala-substitution of Asp9 of the peptide, in spite of a less favorable binding entropy and loss of a polar interaction. We conclude that increased flexibility of the peptide allows more favorable exosite interactions, which, in combination with the use of novel Arg analogues as P1 residues, can be used to manipulate the affinity and specificity of this peptidic inhibitor, a concept different from conventional attempts at improving inhibitor affinity by reducing the entropic burden.
机译:肽作为蛋白酶抑制剂正引起越来越多的关注。在这里,我们展示了一种新的抑制机制和一种新型的异位相互作用,用于一种由噬菌体展示的肽库衍生的竞争性抑制剂丝氨酸蛋白酶鼠尿激酶型纤溶酶原激活物(uPA)的mupain-1(CPAYSRYLDC)。我们使用了X射线晶体结构分析,定点诱变,液相NMR,表面等离振子共振分析,等温滴定量热法以及鼠类和人uPA的野生型和工程变体。我们证明了Arg 6 插入到S1特异性口袋中,其羰基相对于Ser 195 和氧阴离子孔的排列不正确,解释了为什么该肽是抑制剂而不是a基质。 P1 Arg被具有脂肪族或芳香族环结构的新型非天然Arg类似物取代,导致亲和力增加,这取决于P1- S1和异位相互作用的变化。定点诱变显示异位相互作用,尽管仍支持高亲和力结合,但在不同的uPA变体之间存在显着差异。出乎意料的是,尽管肽的Asp 9 的Ala取代促进了高亲和力结合,尽管结合熵较差且极性相互作用丧失。我们得出的结论是,提高肽的柔韧性可以实现更有利的异位相互作用,将其与新型Arg类似物作为P1残基结合使用,可用于操纵此肽抑制剂的亲和力和特异性,这一概念不同于传统的尝试。通过减少熵负担改善抑制剂的亲和力。

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