重组马绒毛膜促性腺激素(Rec-eCG)对组成型黄鳝促性腺激素/绒毛膜促性腺激素受体(LH/CGR)突变体激活和失活的信号传导

Development & reproduction Pub Date : 2024-12-01 Epub Date: 2024-12-31 DOI:10.12717/DR.2024.28.4.141
Kwan-Sik Min, Sei Hyen Park, Ha-Rin Jeong, Jae-Hyek Park, Munkhzaya Byambaragchaa
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引用次数: 0

摘要

Lutropin/绒毛膜促性腺激素受体(LH/CGR)是G蛋白偶联受体超家族的成员。据报道,鱼类和哺乳动物物种的LH/ cgr在高度保守的区域含有自然发生的、组成激活的和灭活的突变。本研究旨在确定鳗鱼LH/CGR信号转导的功能方面。使用转染野生型鳗鱼LH/CG(鳗鱼LH/CGR-wt)或激活型(指定的鳗鱼LH/CGR-M410T、L469R和D590Y)和灭活型(鳗鱼LH/ cgr - 417N和Y558F)突变体的细胞进行生化分析。我们还生成了一个突变体(鳗鱼LH/CGR-t651),其中c端细胞质尾部在残基651处被截断。在没有重组马绒毛膜促性腺激素(rec-eCG)激动剂治疗的情况下,表达鳗鲡LH/CGR-M410T、L469R和D590Y的激活突变细胞的基础cAMP反应分别增加了1.4倍、8.7倍和4.0倍。在灭活突变体(鳗鱼LH/CGR-D417N和Y558F)中,环磷酸腺苷(cAMP)反应并未导致信号转导完全受损。然而,在高激动剂处理后,鳗鱼LH/CGR-t651突变体没有表现出任何cAMP信号。Rmax值没有随着进一步的rec-eCG激动剂刺激而增加。我们的研究结果表明,具有高度保守氨基酸的黄鳝LH/CGR突变体的组构激活和失活具有重要的糖蛋白激素受体信号转导途径。激活和灭活突变体中的鳗鱼LH/ cgr通常是在rec-eCG激动剂刺激后通过受体介导的信号传导处理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signal Transduction of Constitutive Activating and Inactivating Eel Lutropin/Choriogonadotropin Receptor (Eel LH/CGR) Mutants by Recombinant Equine Chorionic Gonadotropin (Rec-eCG).

Lutropin/choriogonadotropin receptor (LH/CGR) is a member of the G protein-coupled receptor superfamily. LH/CGRs in fish and mammalian species have been reported to contain naturally occurring, constitutively activating, and inactivating mutations in highly conserved regions. The present study was designed to determine the functional aspect of eel LH/CGR signal transduction. Biochemical analysis was performed using cells transfected with wild-type eel LH/CG (eel LH/CGR-wt) or with activating (designated eel LH/CGR-M410T, L469R, and D590Y) and inactivating (eel LH/CGR-D 417N and Y558F) mutants. We also generated a mutant (eel LH/CGR-t651) in which the C-terminal cytoplasmic tail was truncated at residue 651. Activating mutant cells expressing eel LH/CGR-M410T, L469R, and D590Y exhibited 1.4-, 8.7-, and 4.0-fold increases in the basal cAMP response, respectively, without recombinant equine chorionic gonadotropin (rec-eCG) agonist treatment. In inactivating mutants (eel LH/CGR-D417N and Y558F), the cyclic adenosine monophosphate (cAMP) response did not result in completely impaired signal transduction. However, the eel LH/CGR-t651 mutant did not exhibit any cAMP signaling following high-agonist treatment. Rmax values did not increase with further rec-eCG agonist stimulation. Our results suggest that constitutively activating and inactivating eel LH/CGR mutants with highly conserved amino acids exhibit a significant signal transduction pathway for glycoprotein hormone receptors. Eel LH/CGRs in activating and inactivating mutants are usually processed by receptor-mediated signaling following rec-eCG agonist stimulation.

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