首页> 外文期刊>Peptides: An International Journal >Role of the intra-A-chain disulfide bond of insulin-like peptide 3 in binding and activation of its receptor, RXFP2.
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Role of the intra-A-chain disulfide bond of insulin-like peptide 3 in binding and activation of its receptor, RXFP2.

机译:胰岛素样肽3的A链内二硫键在其受体RXFP2的结合和激活中的作用。

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INSL3 is a member of the insulin-IGF-relaxin superfamily and plays a key role in male fetal development and in adult germ cell maturation. It is the cognate ligand for RXFP2, a leucine-rich repeat containing G-protein coupled receptor. To date, and in contrast to our current knowledge of the key structural features that are required for the binding of INSL3 to RXFP2, comparatively little is known about the key residues that are required to elicit receptor activation and downstream cell signaling. Early evidence suggests that these are contained principally within the A-chain. To further explore this hypothesis, we have undertaken an examination of the functional role of the intra-A-chain disulfide bond. Using solid-phase peptide synthesis together with regioselective disulfide bond formation, two analogs of human INSL3 were prepared in which the intra-chain disulfide bond was replaced, one in which the corresponding Cys residues were substituted with the isosteric Ser and the other in which the Cys were removed altogether. Both of these peptides retained nearly full RXFP2 receptor binding but were devoid of cAMP activity (receptor activation), indicating that the intra-A-chain disulfide bond makes a significant contribution to the ability of INSL3 to act as an RXFP2 agonist. Replacement of the disulfide bond with a metabolically stable dicarba bond yielded two isomers of INSL3 that each exhibited bioactivity similar to native INSL3. This study highlights the critical structural role played by the intra-A-chain disulfide bond of INSL3 in mediating agonist actions through the RXFP2 receptor.
机译:INSL3是胰岛素-IGF-松弛素超家族的成员,在男性胎儿发育和成年生殖细胞成熟中起关键作用。它是RXFP2(含有G蛋白偶联受体的富含亮氨酸的重复序列)的同源配体。迄今为止,与我们目前对INSL3与RXFP2结合所需的关键结构特征的认识相反,对引起受体激活和下游细胞信号转导所需的关键残基知之甚少。早期证据表明它们主要包含在A链中。为了进一步探讨该假设,我们对A链内二硫键的功能作用进行了研究。使用固相肽合成和区域选择性二硫键形成,制备了人类INSL3的两个类似物,其中链内二硫键被取代,一个类似物的相应Cys残基被等位Ser取代,另一个半胱氨酸被完全去除。这两种肽都保留了几乎完全的RXFP2受体结合,但没有cAMP活性(受体激活),表明A链内二硫键对INSL3充当RXFP2激动剂的能力做出了重大贡献。用代谢稳定的双氨基甲酸酯键取代二硫键产生了INSL3的两个异构体,每个异构体都显示出与天然INSL3相似的生物活性。这项研究强调了INSL3的A链内二硫键在通过RXFP2受体介导激动剂作用中所起的关键结构作用。

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