Chen Huapu, Xiao Ling, Liu Yali, Li Shuisheng, Li Guangli, Zhang Yong, Lin Haoran
Zhanjiang City Key Laboratory of Marine Ecology and Environment, Guangdong Research Center on Reproductive Control and Breeding Technology of Indigenous Valuable Fish Species, Fisheries College, Guangdong Ocean University, Zhanjiang 524088, China; Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266071, China.
State Key Laboratory of Biocontrol, and the Guangdong Province Key Laboratory for Aquatic Economic Animals, Sun Yat-sen University, Guangzhou 510275, China.
Gen Comp Endocrinol. 2018 May 1;260:125-135. doi: 10.1016/j.ygcen.2018.01.009. Epub 2018 Jan 31.
Neurokinin B (NKB) plays important roles in the mammalian reproductive axis by modulating the release of gonadotropin-releasing hormone (GnRH) and gonadotropins. In the present study, the tac3 cDNA was cloned from a hermaphroditic species, the orange-spotted grouper. Sequence analysis showed that the grouper Tac3 precursor encoded two tachykinin peptides, NKB and NKB-related peptide (NKBRP). Expression analysis in different tissues revealed that tac3 mRNA was highly expressed in the brain of the orange-spotted grouper. In situ hybridization further revealed that it was localized in some hypothalamic nuclei associated with reproductive regulation. During ovarian development, an increase of tac3 expression in the hypothalamus was observed at vitellogenesis stage. Intraperitoneal administration of NKB could increase the gnrh1 and lhβ mRNA levels, and enhance the serum estrogen levels, but did not significantly influence lhβ expression in cultured pituitary cells, indicating that NKB does not directly exert its actions on the pituitary gland. However, it was found that NKBRP had no effect on the expression of two gnrhs and two gths in vivo and in vitro. Effects of sex steroids on tac3 expression were further investigated. During the 17-methyltestosterone-induced sex change in the orange-spotted grouper, hypothalamic tac3 expression showed no significant change. Interestingly, ovariectomy greatly stimulated tac3 expression, while the 17β-estradiol treatment reversed this effect. In general, our data highly indicated that NKB signaling could activate the reproductive axis in the orange-spotted grouper. Our study is the first description of the NKB signaling in the hermaphroditic species.
神经激肽B(NKB)通过调节促性腺激素释放激素(GnRH)和促性腺激素的释放,在哺乳动物生殖轴中发挥重要作用。在本研究中,从雌雄同体的橙点石斑鱼中克隆了tac3 cDNA。序列分析表明,石斑鱼Tac3前体编码两种速激肽肽,即NKB和NKB相关肽(NKBRP)。不同组织中的表达分析显示,tac3 mRNA在橙点石斑鱼的脑中高表达。原位杂交进一步表明,它定位于与生殖调节相关的一些下丘脑核中。在卵巢发育过程中,观察到下丘脑tac3表达在卵黄发生期增加。腹腔注射NKB可增加gnrh1和lhβ mRNA水平,并提高血清雌激素水平,但对培养的垂体细胞中lhβ表达无显著影响,表明NKB不直接作用于垂体。然而,发现NKBRP在体内和体外对两种gnrhs和两种gths的表达均无影响。进一步研究了性类固醇对tac3表达的影响。在17-甲基睾酮诱导的橙点石斑鱼性别转换过程中,下丘脑tac3表达无显著变化。有趣的是,卵巢切除极大地刺激了tac3表达,而17β-雌二醇处理则逆转了这种效应。总体而言,我们的数据强烈表明NKB信号通路可激活橙点石斑鱼的生殖轴。我们的研究首次描述了雌雄同体物种中的NKB信号通路。