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A novel transforming growth factor-beta superfamily member expressed in gonadal somatic cells enhances primordial germ cell and spermatogonial proliferation in rainbow trout (Oncorhynchus mykiss)

机译:在性腺体细胞中表达的新型转化生长因子-β超家族成员增强虹鳟鱼(Oncorhynchus mykiss)的原始生殖细胞和精原细胞增殖

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摘要

Our understanding of the molecular mechanisms of primordial germ cell (PGC) proliferation in fish is rudimentary, but it is thought to be controlled by the surrounding somatic cells. We assumed that growth factors that are specifically involved in PGC proliferation are expressed predominantly in the surrounding genital ridge somatic cells. In order to isolate these growth factors, we compiled a complementary DNA (cDNA) subtractive library using cDNA from the genital ridges of 40-dpf rainbow trout embryos as the tester and cDNA from embryos without genital ridges as the driver. This approach identified a novel cytokine, designated gonadal soma-derived growth factor (GSDF), which is a member of the transforming growth factor (TGF)-beta superfamily. GSDF was expressed in the genital ridge somatic cells surrounding the PGCs during embryogenesis, and in both the granulosa and Sertoli cells at later stages. Inhibition of GSDF translation by antisense oligonucleotides suppressed PGC proliferation. Moreover, isolated testicular cells that were cultured with recombinant GSDF demonstrated dose-dependent proliferation of type-A spermatogonia; this effect was completely blocked by antiserum against GSDF. These results denote that GSDF, a novel member of the TGF-beta superfamily, plays an important role for proliferation of PGC and spermatogonia. (c) 2006 Elsevier Inc. All rights reserved.
机译:我们对鱼类中原始生殖细胞(PGC)增殖的分子机制的了解是基本的,但据认为是由周围的体细胞控制的。我们假设,具体参与PGC增殖的生长因子主要在周围的生殖体细胞中表达。为了分离这些生长因子,我们使用来自40-dpf虹鳟鱼胚胎的生殖脊的cDNA作为测试者,以及来自没有生殖脊的胚胎的cDNA作为驱动程序,编译了一个互补的DNA(cDNA)消减文库。此方法确定了一种新型的细胞因子,称为性腺体细胞生长因子(GSDF),它是转化生长因子(TGF)-β超家族的成员。 GSDF在胚胎发生过程中在PGC周围的生殖体细胞中表达,并在后期阶段在颗粒细胞和支持细胞中表达。反义寡核苷酸抑制GSDF翻译抑制了PGC增殖。而且,用重组GSDF培养的分离的睾丸细胞表现出剂量依赖性的A型精原细胞增殖。这种抗药性被GSDF的抗血清完全阻断。这些结果表明,GSDF,TGF-β超家族的新成员,对PGC和精原细胞的增殖起着重要作用。 (c)2006 Elsevier Inc.保留所有权利。

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