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首页> 外文期刊>Molecular pharmacology. >Identification of Leu276 of the S1P1 receptor and Phe263 of the S1P3 receptor in interaction with receptor specific agonists by molecular modeling, site-directed mutagenesis, and affinity studies.
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Identification of Leu276 of the S1P1 receptor and Phe263 of the S1P3 receptor in interaction with receptor specific agonists by molecular modeling, site-directed mutagenesis, and affinity studies.

机译:通过分子建模,定点诱变和亲和力研究,鉴定S1P1受体的Leu276和S1P3受体的Phe263与受体特异性激动剂的相互作用。

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摘要

Sphingosine-1-phosphate (S1P) receptor agonists are novel immunosuppressive agents. The selectivity of S1P1 against S1P3 is strongly correlated with lymphocyte sequestration and minimum acute toxicity and bradycardia. This study describes molecular modeling, site-directed mutagenesis, and affinity studies exploring the molecular basis for selectivity between S1P1 and S1P3 receptors. Computational models of human S1P1 and S1P3 receptors bound with two nonselective agonists or two S1P1-selective agonists were developed based on the X-ray crystal structure of bovine rhodopsin. The models predict that S1P1 Leu276 and S1P3 Phe263 contribute to the S1P1/S1P3 selectivity of the two S1P1-selective agonists. These residues were subjected to site-directed mutagenesis. The wild-type and mutant S1P receptors were expressed in Chinese hamster ovary cells and examined for their abilities to bind to and be activated by agonists in vitro. The results indicate that the mutations have minimal effects on the activities of the two nonselective agonists, although they have dramatic effects on the S1P1-selective agonists. These studies provide a fundamental understanding of how these two receptor-selective agonists bind to the S1P1 and S1P3 receptors, which should aid development of more selective S1P1 receptor agonists with immunosuppressive properties and improved safety profiles.
机译:鞘氨醇-1-磷酸(S1P)受体激动剂是新型的免疫抑制剂。 S1P1对S1P3的选择性与淋巴细胞隔离,最小急性毒性和心动过缓密切相关。这项研究描述了分子建模,定点诱变和亲和力研究,探索了S1P1和S1P3受体之间选择性的分子基础。基于牛视紫红质的X射线晶体结构,开发了人类S1P1和S1P3受体与两个非选择性激动剂或两个S1P1选择性激动剂结合的计算模型。该模型预测,S1P1 Leu276和S1P3 Phe263有助于两种S1P1选择性激动剂的S1P1 / S1P3选择性。对这些残基进行定点诱变。野生型和突变型S1P受体在中国仓鼠卵巢细胞中表达,并检测它们在体外与激动剂结合并被激动剂激活的能力。结果表明,尽管突变对S1P1选择性激动剂具有显着影响,但它们对两种非选择性激动剂的活性影响很小。这些研究为这两种受体选择性激动剂如何与S1P1和S1P3受体结合提供了基本的了解,这将有助于开发具有免疫抑制特性和改善安全性的更具选择性的S1P1受体激动剂。

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