alphaIIb亚基313-332残基对应的合成肽对血小板活化和纤维蛋白原与alphaIIbbeta3结合的影响。

John V Mitsios, Afroditi P Tambaki, Morfis Abatzis, Nikolaos Biris, Maria Sakarellos-Daitsiotis, Constantinos Sakarellos, Ketty Soteriadou, John Goudevenos, Moses Elisaf, Demokritos Tsoukatos, Vassilios Tsikaris, Alexandros D Tselepis
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引用次数: 26

摘要

血小板整合素受体alphaIIbbeta3通过介导血小板与几种配体(主要是纤维蛋白原)之间的相互作用,在血栓形成和止血中起关键作用。先前已有研究表明,alphaIIb亚基的YMESRADR KLAEVGRVYLFL(313-332)序列在血小板活化、纤维蛋白原结合和alphaiibbeta3介导的outside-in信号传导中起重要作用。此外,我们最近发现20-残基肽(20-mer) alphaIIb 313-332是血小板聚集和纤维蛋白原结合的有效抑制剂,与纤维蛋白原而不是受体相互作用。为了确定上述20-mer的序列和生物活性所需的最小长度,我们合成了7个八肽,每个八肽有6个残基重叠,覆盖了整个序列,并研究了它们对血小板活化以及纤维蛋白原与活化血小板结合的影响。我们首次发现含有RAD序列的八肽能够抑制血小板聚集和分泌,以及纤维蛋白原与活化的alphaIIbbeta3结合,可能与配体而不是受体相互作用。这表明所有抑制肽共有的RAD序列对其生物活性至关重要。然而,毗邻RAD的YMES序列的存在显著增加了肽的生物学效力。源自alphaIIb亚基313-332区域的此类抑制剂的开发可能有利于对抗rgd样拮抗剂,因为它们可以抑制血小板活化,而不与alphaIIbbeta3相互作用,因此无法进一步诱导alphaIIbbeta3介导的外向内信号传导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of synthetic peptides corresponding to residues 313-332 of the alphaIIb subunit on platelet activation and fibrinogen binding to alphaIIbbeta3.

The platelet integrin receptor alphaIIbbeta3 plays a critical role in thrombosis and haemostasis by mediating interactions between platelets and several ligands but primarily fibrinogen. It has been shown previously that the YMESRADR KLAEVGRVYLFL (313-332) sequence of the alphaIIb subunit plays an important role in platelet activation, fibrinogen binding and alphaIIbbeta3-mediated outside-in signalling. Furthermore, we recently showed that the 20-residue peptide (20-mer) alphaIIb 313-332, is a potent inhibitor of platelet aggregation and fibrinogen binding to alphaIIbbeta3, interacting with fibrinogen rather than the receptor. In an effort to determine the sequence and the minimum length required for the biological activity of the above 20-mer, we synthesized seven octapeptides, each overlapping by six residues, covering the entire sequence and studied their effect on platelet activation as well as fibrinogen binding to activated platelets. We show for the first time that octapeptides containing the RAD sequence are capable of inhibiting platelet aggregation and secretion as well as fibrinogen binding to the activated alphaIIbbeta3, possibly interacting with the ligand rather than the receptor. This suggests that the RAD sequence, common to all the inhibitory peptides, is critical for their biological activity. However, the presence of the YMES sequence, adjacent to RAD, significantly increases the peptide's biological potency. The development of such inhibitors derived from the 313-332 region of the alphaIIb subunit may be advantageous against the RGD-like antagonists as they could inhibit platelet activation without interacting with alphaIIbbeta3, thus failing to further induce alphaIIbbeta3-mediated outside-in signalling.

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