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松弛素-3 B 链的 C 端对于受体活性很重要。

C-terminus of the B-chain of relaxin-3 is important for receptor activity.

机构信息

Florey Institute for Neuroscience & Mental Health, University of Melbourne, Melbourne, Victoria, Australia ; School of Chemistry, University of Melbourne, Melbourne, Victoria, Australia.

Florey Institute for Neuroscience & Mental Health, University of Melbourne, Melbourne, Victoria, Australia ; Florey Department of Neuroscience and Mental Health, University of Melbourne, Melbourne, Victoria, Australia ; Department of Biochemistry and Molecular Biology, University of Melbourne, Melbourne, Victoria, Australia.

出版信息

PLoS One. 2013 Dec 11;8(12):e82567. doi: 10.1371/journal.pone.0082567. eCollection 2013.

Abstract

Human relaxin-3 is a neuropeptide that is structurally similar to human insulin with two chains (A and B) connected by three disulfide bonds. It is expressed primarily in the brain and has modulatory roles in stress and anxiety, feeding and metabolism, and arousal and behavioural activation. Structure-activity relationship studies have shown that relaxin-3 interacts with its cognate receptor RXFP3 primarily through its B-chain and that its A-chain does not have any functional role. In this study, we have investigated the effect of modification of the B-chain C-terminus on the binding and activity of the peptide. We have chemically synthesised and characterized H3 relaxin as C-termini acid (both A and B chains having free C-termini; native form) and amide forms (both chains' C-termini were amidated). We have confirmed that the acid form of the peptide is more potent than its amide form at both RXFP3 and RXFP4 receptors. We further investigated the effects of amidation at the C-terminus of individual chains. We report here for the first time that amidation at the C-terminus of the B-chain of H3 relaxin leads to significant drop in the binding and activity of the peptide at RXFP3/RXFP4 receptors. However, modification of the A-chain C-terminus does not have any effect on the activity. We have confirmed using circular dichroism spectroscopy that there is no secondary structural change between the acid and amide form of the peptide, and it is likely that it is the local C-terminal carboxyl group orientation that is crucial for interacting with the receptors.

摘要

人松弛素-3 是一种神经肽,结构上与胰岛素相似,由两条链(A 和 B)通过三个二硫键连接。它主要在大脑中表达,在应激和焦虑、摄食和代谢以及觉醒和行为激活中具有调节作用。结构活性关系研究表明,松弛素-3 主要通过其 B 链与同源受体 RXFP3 相互作用,而其 A 链没有任何功能作用。在这项研究中,我们研究了修饰 B 链 C 末端对肽结合和活性的影响。我们通过化学合成并表征了 H3 松弛素作为 C 末端酸(两条链的 C 末端均为游离;天然形式)和酰胺形式(两条链的 C 末端均酰胺化)。我们证实,与酰胺形式相比,该肽的酸形式在 RXFP3 和 RXFP4 受体上均更有效。我们进一步研究了单个链 C 末端酰胺化的影响。我们首次报道,H3 松弛素 B 链 C 末端酰胺化导致肽与 RXFP3/RXFP4 受体的结合和活性显著下降。然而,A 链 C 末端的修饰对活性没有影响。我们使用圆二色性光谱证实,肽的酸和酰胺形式之间没有二级结构变化,与受体相互作用的关键可能是局部 C 末端羧基基团的取向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf67/3859608/186928d86cb7/pone.0082567.g001.jpg

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