Identification of ActivinβA and Gonadotropin Regulation of the Activin System in the Ovary of Chinese Sturgeon Acipenser sinensis

Animals Pub Date : 2024-08-09 DOI:10.3390/ani14162314
H. Yue, H. Ye, Rui Ruan, Hao Du, Chuangju Li
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Abstract

Activin is a dimeric growth factor with diverse biological activities in vertebrates. This study aimed to investigate the regulatory role of the activin signaling pathway in the ovary of the endangered, cultured sturgeon species Acipenser sinensis. One activinβA subunit was identified, with a full-length complementary DNA (cDNA) sequence of 1572 base pairs. Multiple sequence alignment suggested that ActivinβA shared high sequence identities with its counterparts in four other sturgeon species. Phylogenetic analysis indicated the conserved evolution of ActivinβA among vertebrates from mammals to fish species. Transcripts of activinβA were distributed ubiquitously in the liver, kidney, intestine, ovary, midbrain, hypothalamus, and pituitary, with the highest transcription found in the pituitary. In Chinese sturgeon ovarian cells, in vitro human recombinant Activin A incubation stimulated the activin system-related gene transcriptions of activinβA, follistatin, its receptors -activinRIIA and activinRIIB, and drosophila mothers against decapentaplegic proteins (smads) smad2, smad3, and smad4. Ovary development-related mRNA levels of cyp19a1a and aromatase receptors of erα and erβ were enhanced by Activin A or human chorionic gonadotropin (hCG) incubation. Furthermore, 15 IU/mL hCG treatment increased the transcription levels of activinβA, follistatin, activinRIIA, and smad2. This suggested that the activin system was functional for the regulation of ovary development in Chinese sturgeon, possibly under the regulation of gonadotropin, by recruiting activinβA, follistatin, activinRIIA, and smad2. These results were helpful for the molecular exploration of activin signaling in fish species, as well as the ovarian maturation regulation of A. sinensis.
中华鲟卵巢促性腺激素βA的鉴定及促性腺激素对促性腺激素系统的调节作用
激活素是一种二聚体生长因子,在脊椎动物中具有多种生物活性。本研究旨在探讨激活素信号通路在濒危养殖中华鲟卵巢中的调控作用。研究发现了一个激活素βA亚基,其全长互补DNA(cDNA)序列为1572个碱基对。多重序列比对表明,ActivinβA与其他四种鲟鱼的同源物具有很高的序列同一性。系统进化分析表明,从哺乳动物到鱼类,ActivinβA在脊椎动物中的进化是保守的。激活素βA的转录本广泛分布于肝、肾、肠、卵巢、中脑、下丘脑和垂体,其中垂体的转录量最高。在中华鲟卵巢细胞中,体外人重组活化素A孵育刺激了活化素系统相关基因的转录,包括活化素βA、花粉素、其受体--活化素RIIA和活化素RIIB,以及果蝇母体抗十瘫蛋白(smad)smad2、smad3和smad4。卵巢发育相关的cyp19a1a以及erα和erβ的芳香化酶受体的mRNA水平在Activin A或人绒毛膜促性腺激素(hCG)的孵育下得到了提高。此外,15 IU/mL hCG 处理可提高激活素βA、follistatin、activinRIIA 和 smad2 的转录水平。这表明,在促性腺激素的调控下,活化素系统可能通过招募活化素βA、follistatin、activinRIIA和smad2来调控中华鲟卵巢的发育。这些结果有助于对中华鲟卵巢成熟调控的分子探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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