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Studies in Zebrafish Reveal Unusual Cellular Expression Patterns of Gonadotropin Receptor Messenger Ribonucleic Acids in the Testis and Unexpected Functional Differentiation of the Gonadotropins

机译:斑马鱼揭示睾丸中促性腺激素受体信使核糖核酸的异常细胞表达模式和促性腺激素的意外功能分化的研究

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摘要

This study aimed to improve, using the zebrafish model, our understanding of the distinct roles of pituitary gonadotropins FSH and LH in regulating testis functions in teleost fish. We report, for the first time in a vertebrate species, that zebrafish Leydig cells as well as Sertoli cells express the mRNAs for both gonadotropin receptors (fshr and lhcgr). Although Leydig cell fshr expression has been reported in other piscine species and may be a common feature of teleost fish, Sertoli cell lhcgr expression has not been reported previously and might be related to the undifferentiated gonochoristic mode of gonadal sex differentiation in zebrafish. Both recombinant zebrafish (rzf) gonadotropins (i.e. rzfLH and rzfFSH) stimulated androgen release in vitro and in vivo, with rzfFSH being significantly more potent than rzfLH. Forskolin-induced adenylate cyclase activation mimicked, whereas the protein kinase A inhibitor H-89 significantly reduced, the gonadotropin-stimulated androgen release. Therefore, we conclude that both FSH receptor and LH/choriogonadotropin receptor signaling are predominantly mediated through the cAMP/protein kinase A pathway to promote steroid production. Despite this similarity, other downstream mechanisms seem to differ. For example, rzfFSH up-regulated the testicular mRNA levels of a number of steroidogenesis-related genes both in vitro and in vivo, whereas rzfLH or human chorionic gonadotropin did not. Although not fully understood at present, these differences could explain the capacity of FSH to support both steroidogenesis and spermatogenesis on a long-term basis, whereas LH-stimulated steroidogenesis might be a more acute process, possibly restricted to periods during which peak steroid levels are required.
机译:这项研究旨在使用斑马鱼模型来改善我们对垂体促性腺激素FSH和LH在调节硬骨鱼睾丸功能中的独特作用的理解。我们首次报道,在脊椎动物中,斑马鱼的Leydig细胞以及Sertoli细胞都表达促性腺激素受体(fshr和lhcgr)的mRNA。尽管在其他鱼类中也报道了Leydig细胞的fshr表达,并且可能是硬骨鱼的共同特征,但Sertoli细胞的lhcgr表达以前没有被报道过,并且可能与斑马鱼中性腺性别分化的未分化性生殖力模式有关。两种重组斑马鱼(rzf)促性腺激素(即rzfLH和rzfFSH)均可在体外和体内刺激雄激素的释放,其中rzfFSH的效力明显高于rzfLH。 Forskolin诱导的腺苷酸环化酶激活被模拟,而蛋白激酶A抑制剂H-89显着降低,促性腺激素刺激雄激素释放。因此,我们得出结论,FSH受体和LH /绒毛膜促性腺激素受体信号均主要通过cAMP /蛋白激酶A途径介导,以促进类固醇的产生。尽管有这种相似性,但其他下游机制似乎有所不同。例如,rzfFSH在体内外都上调了许多类固醇生成相关基因的睾丸mRNA水平,而rzfLH或人绒毛膜促性腺激素却没有。尽管目前尚不完全清楚,但这些差异可以解释FSH长期支持类固醇生成和精子生成的能力,而LH刺激的类固醇生成可能是一个更为急性的过程,可能限于类固醇峰值水平达到峰值的时期。需要。

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