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Adipokinetic hormone signaling through the gonadotropin-releasing hormone receptor modulates egg-laying in Caenorhabditis elegans

机译:通过促性腺激素释放激素受体的脂代谢激素信号传导调节秀丽隐杆线虫的产卵

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摘要

In mammals, hypothalamic gonadotropin-releasing hormone (GnRH) is a neuropeptide that stimulates the release of gonadotropins from the anterior pituitary. The existence of a putative functional equivalent of this reproduction axis in protostomian invertebrates has been a matter of debate. In this study, the ligand for the GnRH receptor in the nematode Caenorhabditis elegans (Ce-GnRHR) was found using a bioinformatics approach. The peptide and its precursor are reminiscent of both insect adipokinetic hormones and GnRH-preprohormone precursors from tunicates and higher vertebrates. We cloned the AKH-GnRH-like preprohormone and the Ce-GnRHR and expressed the GPCR in HEK293T cells. The GnRHR was activated by the C. elegans AKH-GnRH-like peptide (EC50 = 150 nM) and by Drosophila AKH and other nematode AKH-GnRHs that we found in EST databases. Analogous to both insect AKH receptor and vertebrate GnRH receptor signaling, Ce-AKH-GnRH activated its receptor through a Gαq protein with Ca2+ as a second messenger. Gene silencing of Ce-GnRHR, Ce-AKH-GnRH, or both resulted in a delay in the egg-laying process, comparable to a delay in puberty in mammals lacking a normal dose of GnRH peptide or with a mutated GnRH precursor or receptor gene. The present data support the view that the AKH-GnRH signaling system probably arose very early in metazoan evolution and that its role in reproduction might have been developed before the divergence of protostomians and deuterostomians.
机译:在哺乳动物中,下丘脑促性腺激素释放激素(GnRH)是一种神经肽,可刺激垂体前叶释放促性腺激素。在原始无脊椎动物中,这种生殖轴的推定功能等同物的存在一直是争论的问题。在这项研究中,使用生物信息学方法发现了线虫秀丽隐杆线虫中GnRH受体的配体(Ce-GnRHR)。该肽及其前体使人联想起昆虫脂肪代谢激素和来自被膜和高等脊椎动物的GnRH-前激素原体。我们克隆了AKH-GnRH样前激素和Ce-GnRHR,并在HEK293T细胞中表达了GPCR。 GnRHR被秀丽隐杆线虫AKH-GnRH样肽(EC50 = 150 nM)和果蝇AKH以及我们在EST数据库中发现的其他线虫AKH-GnRHs激活。与昆虫AKH受体和脊椎动物GnRH受体信号转导相似,Ce-AKH-GnRH通过Gαq蛋白(其Ca2 +作为第二信使)激活其受体。 Ce-GnRHR,Ce-AKH-GnRH或两者的基因沉默导致产卵过程延迟,与缺乏正常剂量的GnRH肽或具有突变的GnRH前体或受体基因的哺乳动物的青春期延迟相当。目前的数据支持这样的观点,即AKH-GnRH信号系统可能在后生动物的进化中很早就出现了,并且其在生殖中的作用可能在原口腔动物和申命子宫动物发散之前就已经形成。

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