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首页> 外文期刊>Journal of molecular recognition: JMR >Cystine-knot peptides engineered with specificities for αiIbβ3 or αiIbβ 3 and αvβ3 integrins are potent inhibitors of platelet aggregation
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Cystine-knot peptides engineered with specificities for αiIbβ3 or αiIbβ 3 and αvβ3 integrins are potent inhibitors of platelet aggregation

机译:对αiIbβ3或αiIbβ3和αvβ3整联蛋白有特异性的半胱氨酸结肽是有效的血小板聚集抑制剂

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摘要

A truncated form of the Agouti-related protein (AgRP), a member of the cystine-knot family, has shown promise as a scaffold for engineering novel peptides with new molecular recognition properties. In this study, we replaced a constrained six amino acid loop in AgRP with a nine amino acid loop containing an Arg-Gly-Asp integrin recognition motif, and randomized the neighboring residues to create a library of a ~20 million AgRP variants. We displayed the AgRP mutants as fusions on the surface of yeast and used high-throughput fluorescence-activated cell sorting (FACS) to isolate peptides that bound specifically to the platelet integrin αIIbβ3, a clinically important target for the prevention and treatment of thrombosis. These AgRP peptides had equilibrium dissociation (KD) constants for αIIbβ3 integrin ranging from 60 to 90 nM, and did not bind to αvβ3, αvβ 5, or α5β1 integrins. Using an alternate library screening strategy, we identified AgRP peptides that bound to both αIIbβ3 and αvβ 3 integrins with KD values ranging from 40 to 70 nM and 20 to 30 nM, respectively, and did not bind to αvβ 5 or α5β1 integrins. Unique consensus sequences were identified within both series of AgRP peptides suggesting alternative molecular recognition events that dictate different integrin binding specificities. In addition, the engineered AgRP peptides prevented platelet aggregation as well as or slightly better than the FDA-approved cyclic peptide eptifibatide. Collectively, these data demonstrate that cystine-knot peptides can be generated with high affinity and specificity to closely-related integrins, and provide insights into molecular interactions between small, structured peptide ligands and their receptors.
机译:胱氨酸结家族成员之一的痛觉相关蛋白(Agouti-related protein,AgRP)的截短形式已被证明可以作为工程改造具有新的分子识别特性的新型肽的支架。在这项研究中,我们用包含Arg-Gly-Asp整联蛋白识别基序的9个氨基酸环替换了AgRP中受约束的6个氨基酸环,并随机化了相邻的残基以创建约2000万个AgRP变异体的文库。我们将AgRP突变体显示为酵母表面上的融合体,并使用高通量荧光激活细胞分选术(FACS)分离了与血小板整联蛋白αIIbβ3特异性结合的肽,血小板整联蛋白αIIbβ3是预防和治疗血栓形成的重要临床靶标。这些AgRP肽对αIIbβ3整联蛋白的平衡解离(KD)常数为60至90 nM,并且不与αvβ3,αvβ5或α5β1整联蛋白结合。使用替代文库筛选策略,我们鉴定了结合到αIIbβ3和αvβ3整联蛋白的AgRP肽,其KD值分别为40至70 nM和20至30 nM,并且不与αvβ5或α5β1整联蛋白结合。在两个系列的AgRP肽中均鉴定出独特的共有序列,这提示了指示不同整联蛋白结合特异性的替代分子识别事件。此外,经过工程改造的AgRP肽可防止血小板凝集,并且与FDA批准的环肽eptifibatide相比略好。总的来说,这些数据表明可以产生对紧密相关的整联蛋白具有高亲和力和特异性的胱氨酸结肽,并提供了对小的,结构化的肽配体与其受体之间的分子相互作用的见解。

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