Functional Characterization of Gonadotropin-Releasing Hormone and Corazonin Signaling Systems in Pacific Abalone: Toward Reclassification of Invertebrate Neuropeptides.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-01-01 Epub Date: 2023-09-13 DOI:10.1159/000533662
Mi Ae Kim, Tae Ha Kim, Priyadharshini Kannan, Kang Hee Kho, Keunwan Park, Young Chang Sohn
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Abstract

Introduction: The proposed evolutionary origins and corresponding nomenclature of bilaterian gonadotropin-releasing hormone (GnRH)-related neuropeptides have changed tremendously with the aid of receptor deorphanization. However, the reclassification of the GnRH and corazonin (CRZ) signaling systems in Lophotrochozoa remains unclear.

Methods: We characterized GnRH and CRZ receptors in the mollusk Pacific abalone, Haliotis discus hannai (Hdh), by phylogenetic and gene expression analyses, bioluminescence-based reporter, Western blotting, substitution of peptide amino acids, in vivo neuropeptide injection, and RNA interference assays.

Results: Two Hdh CRZ-like receptors (Hdh-CRZR-A and Hdh-CRZR-B) and three Hdh GnRH-like receptors (Hdh-GnRHR1-A, Hdh-GnRHR1-B, and Hdh-GnRHR2) were identified. In phylogenetic analysis, Hdh-CRZR-A and -B grouped within the CRZ-type receptors, whereas Hdh-GnRHR1-A/-B and Hdh-GnRHR2 clustered within the GnRH/adipokinetic hormone (AKH)/CRZ-related peptide-type receptors. Hdh-CRZR-A/-B and Hdh-GnRHR1-A were activated by Hdh-CRZ (pQNYHFSNGWHA-NH2) and Hdh-GnRH (pQISFSPNWGT-NH2), respectively. Hdh-CRZR-A/-B dually coupled with the Gαq and Gαs signaling pathways, whereas Hdh-GnRHR1-A was linked only with Gαq signaling. Analysis of substituted peptides, [I2S3]Hdh-CRZ and [N2Y3H4]Hdh-GnRH, and in silico docking models revealed that the N-terminal amino acids of the peptides are critical for the selectivity of Hdh-CRZR and Hdh-GnRHR. Two precursor transcripts for Hdh-CRZ and Hdh-GnRH peptides and their receptors were mainly expressed in the neural ganglia, and their levels increased in starved abalones. Injection of Hdh-CRZ peptide into abalones decreased food consumption, whereas Hdh-CRZR knockdown increased food consumption. Moreover, Hdh-CRZ induced germinal vesicle breakdown in mature oocytes.

Conclusion: Characterization of Hdh-CRZRs and Hdh-GnRHRs and their cognate peptides provides new insight into the evolutionary route of GnRH-related signaling systems in bilaterians.

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太平洋鲍鱼促性腺激素释放激素和 Corazonin 信号系统的功能特征:实现无脊椎动物神经肽的重新分类
导言:随着受体的非形态化,两栖类促性腺激素释放激素(GnRH)相关神经肽的进化起源和相应命名方法发生了巨大变化。然而,对恋光动物中 GnRH 和 corazonin(CRZ)信号系统的重新分类仍不清楚:方法:我们通过系统发育和基因表达分析、基于生物荧光的报告、Western 印迹、肽氨基酸替代、体内神经肽注射和 RNA 干扰试验,鉴定了软体动物太平洋鲍鱼(Hdh)的 GnRH 和 CRZ 受体:结果:发现了两种Hdh CRZ样受体(Hdh-CRZR-A和Hdh-CRZR-B)和三种Hdh GnRH样受体(Hdh-GnRHR1-A、Hdh-GnRHR1-B和Hdh-GnRHR2)。在系统发育分析中,Hdh-CRZR-A 和 -B 属于 CRZ 型受体,而 Hdh-GnRHR1-A/-B 和 Hdh-GnRHR2 则属于 GnRH/促肾上腺皮质激素(AKH)/CRZ 相关肽型受体。Hdh-CRZR-A/-B和Hdh-GnRHR1-A分别被Hdh-CRZ(pQNYHFSNGWHA-NH2)和Hdh-GnRH(pQISFSPNWGT-NH2)激活。Hdh-CRZR-A/-B 与 Gαq 和 Gαs 信号通路双重耦合,而 Hdh-GnRHR1-A 仅与 Gαq 信号通路耦合。对取代肽[I2S3]Hdh-CRZ和[N2Y3H4]Hdh-GnRH的分析以及硅学对接模型显示,肽的N端氨基酸对Hdh-CRZR和Hdh-GnRHR的选择性至关重要。Hdh-CRZ和Hdh-GnRH肽及其受体的两个前体转录本主要在神经节中表达,它们的水平在饥饿的鲍鱼中有所增加。向鲍鱼注射Hdh-CRZ肽会降低食物消耗量,而敲除Hdh-CRZR则会增加食物消耗量。此外,Hdh-CRZ还能诱导成熟卵母细胞中生殖泡的破裂:结论:对Hdh-CRZRs和Hdh-GnRHRs及其同源多肽的表征为了解两栖动物GnRH相关信号系统的进化路线提供了新的视角。
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7.20
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4.30%
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567
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