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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Conversed mutagenesis of an inactive peptide to ASIC3 inhibitor for active sites determination
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Conversed mutagenesis of an inactive peptide to ASIC3 inhibitor for active sites determination

机译:活性肽反向转化为ASIC3抑制剂的诱变

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Peptide Ugr9-1 from the venom of sea anemone Urticina grebelnyi selectively inhibits the ASIC3 channel and significantly reverses inflammatory and acid-induced pain in vivo. A close homolog peptide Ugr 9-2 does not have these features. To find the pharmacophore residues and explore structure activity relationships of Ugr 9-1, we performed site-directed mutagenesis of Ugr 9-2 and replaced several positions by the corresponding residues from Ugr 9-1. Mutant peptides Ugr 9-2 T9F and Ugr 9-2 Y12H were able to inhibit currents of the ASIC3 channels 2.2 times and 1.3 times weaker than Ugr 9-1, respectively. Detailed analysis of the spatial models of Ugr 9-1, Ugr 9-2 and both mutant peptides revealed the presence of the basic-aromatic clusters on opposite sides of the molecule, each of which is responsible for the activity. Additionally, Ugr9-1 mutant with truncated N- and C-termini retained similar with the Ugr9-1 action in vitro and was equally potent in vivo model of thermal hypersensitivity. All together, these results are important for studying the structure-activity relationships of ligand-receptor interaction and for the future development of peptide drugs from animal toxins. (C) 2015 Elsevier Ltd. All rights reserved.
机译:来自海葵荨麻的毒液中的肽Ugr9-1有选择地抑制ASIC3通道并显着逆转体内炎症和酸引起的疼痛。紧密同源肽Ugr 9-2不具有这些特征。为了找到药效基团残基并探索Ugr 9-1的结构活性关系,我们进行了Ugr 9-2的定点诱变,并用Ugr 9-1的相应残基替换了几个位置。突变肽Ugr 9-2 T9F和Ugr 9-2 Y12H能够抑制ASIC3通道的电流分别比Ugr 9-1弱2.2倍和1.3倍。对Ugr 9-1,Ugr 9-2和两种突变体肽的空间模型的详细分析表明,在分子的相对侧上存在碱性芳香族簇,每个簇负责该活性。此外,具有截短的N-和C-末端的Ugr9-1突变体在体外保留了与Ugr9-1相似的作用,并且在体内具有同等的热敏性模型。总之,这些结果对于研究配体-受体相互作用的结构-活性关系以及对动物毒素产生的肽类药物的未来开发都很重要。 (C)2015 Elsevier Ltd.保留所有权利。

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