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Gene Expression Alterations by Conditional Knockout of Androgen Receptor in Adult Sertoli Cells of Utp14bjsd/jsd (jsd) Mice1

机译:Utp14bjsd / jsd(jsd)小鼠成年支持细胞中雄激素受体的基因敲除对基因表达的影响

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摘要

Spermatogenesis is dependent primarily on testosterone action on the Sertoli cells, but the molecular mechanisms have not been identified. Attempts to identify testosterone-regulated target genes in Sertoli cells have used microarray analysis of gene expression in mice lacking the androgen receptor (AR) in Sertoli cells (SCARKO) and wild-type mice, but the analyses have been complicated both by alteration of germ cell composition of the testis when pubertal or adult mice were used and by differences in Sertoli-cell gene expression from the expression in adults when prepubertal mice were used. To overcome these limitations and identify AR-regulated genes in adult Sertoli cells, we compared gene expression in adult jsd (Utp14bjsd/jsd, juvenile spermatogonial depletion) mouse testes and with that in SCARKO-jsd mouse testes, since their cellular compositions are essentially identical, consisting of only type A spermatogonia and somatic cells. Microarray analysis identified 157 genes as downregulated and 197 genes as upregulated in the SCARKO-jsd mice compared to jsd mice. Some of the AR-regulated genes identified in the previous studies, including Rhox5, Drd4, and Fhod3, were also AR regulated in the jsd testes, but others, such as proteases and components of junctional complexes, were not AR regulated in our model. Surprisingly, a set of germ cell–specific genes preferentially expressed in differentiated spermatogonia and meiotic cells, including Meig1, Sycp3, and Ddx4, were all upregulated about 2-fold in SCARKO-jsd testes. AR-regulated genes in Sertoli cells must therefore be involved in the regulation of spermatogonial differentiation, although there was no significant differentiation from spermatocytes in SCARKO-jsd mice. Further gene ontogeny analysis revealed sets of genes whose changes in expression may be involved in the dislocation of Sertoli cell nuclei in SCARKO-jsd testes.
机译:精子发生主要取决于睾丸激素对睾丸支持细胞的作用,但尚未确定其分子机制。试图鉴定睾丸支持细胞中睾丸激素调节的靶基因的尝试已使用微阵列分析法对缺乏支持细胞(SCARKO)和野生型小鼠中雄激素受体(AR)的小鼠和野生型小鼠的基因表达进行了分析,但是由于细菌的改变,使分析变得复杂当使用青春期或成年小鼠时睾丸的细胞组成,以及与使用青春期前小鼠时成年小鼠的睾丸支持细胞基因表达的差异。为了克服这些局限性并鉴定成年Sertoli细胞中AR调控的基因,我们比较了成年jsd(Utp14bjsd / jsd,少年精原细胞耗竭)小鼠睾丸和SCARKO-jsd小鼠睾丸中的基因表达,因为它们的细胞组成基本相同,仅由A型精原细胞和体细胞组成。与jsd小鼠相比,SCARKO-jsd小鼠中的微阵列分析确定了157个基因被下调,而197个基因被上调。在以前的研究中鉴定出的一些AR调控基因,包括Rhox5,Drd4和Fhod3,在jsd睾丸中也受到AR调控,但是在我们的模型中,其他蛋白酶(如蛋白酶和连接复合物的成分)不受AR调控。令人惊讶的是,在SCARKO-jsd睾丸中,一组优先在分化的精原细胞和减数分裂细胞(包括Meig1,Sycp3和Ddx4)中表达的生殖细胞特异性基因全部上调了约2倍。因此,尽管在SCARKO-jsd小鼠中精子细胞没有明显的分化,但Sertoli细胞中AR调控的基因必须参与精原细胞分化的调控。进一步的基因个体发育分析揭示了其表达变化可能与SCARKO-jsd睾丸中支持细胞核脱位有关的基因集。

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