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Single amino acid variation underlies species-specific sensitivity to amphibian skin-derived opioid-like peptides

机译:单个氨基酸变异是对两栖类皮肤衍生的阿片样肽的物种特异性敏感性的基础

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摘要

It has been suggested that the evolution of vertebrate opioid receptors (ORs) follow a vector of increased functionality. Here we test this idea comparing human and frog ORs. Interestingly, some of the most potent opioid peptides known have been isolated from amphibian skin secretions. Here we show that such peptides (dermorphin and deltorphin) are highly potent in the human receptors and inactive in frog ORs. The molecular basis for the insensitivity of the frog ORs to these peptides was studied using chimeras and molecular modeling. Interestingly, the insensitivity of the delta opioid receptor (DOR) to deltorphin was due to variation of a single amino acid– Trp7.35—which is a leucine in mammalian DORs. Notably, Trp7.35 is completely conserved in all known DOR sequences from lamprey, fish and amphibians. The deltorphin-insensitive phenotype was verified in fish. Our results provide a molecular explanation for the species selectivity of skin-derived opioid peptides.
机译:已经提出,脊椎动物阿片受体(OR)的进化遵循功能增强的载体。在这里,我们通过比较人类和蛙类OR来测试这一想法。有趣的是,已经从两栖动物皮肤分泌物中分离出一些已知的最有效的阿片样物质肽。在这里,我们证明了这些肽(dermorphin和deltorphin)在人类受体中非常有效,而在蛙类ORs中则没有活性。使用嵌合体和分子模型研究了青蛙ORs对这些肽不敏感的分子基础。有趣的是,δ阿片受体(DOR)对deltorphin的不敏感性是由于单个氨基酸Trp7.35的变异所致,Trp7.35是哺乳动物DOR中的亮氨酸。值得注意的是,在所有已知的七,鳗,鱼类和两栖动物的DOR序列中,Trp7.35是完全保守的。在鱼类中证实了对deltorphin不敏感的表型。我们的结果为皮肤来源的阿片肽的物种选择性提供了分子解释。

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