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Systematic variation in mRNA 3 '-processing signals during mouse spermatogenesis

机译:小鼠精子发生过程中mRNA 3'加工信号的系统变化。

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Gene expression and processing during mouse male germ cell maturation (spermatogenesis) is highly specialized. Previous reports have suggested that there is a high incidence of alternative 3'-processing in male germ cell mRNAs, including reduced usage of the canonical polyadenylation signal, AAUAAA. We used EST libraries generated from mouse testicular cells to identify 3'-processing sites used at various stages of spermatogenesis (spermatogonia, spermatocytes and round spermatids) and testicular somatic Sertoli cells. We assessed differences in 3'-processing characteristics in the testicular samples, compared to control sets of widely used 3'-processing sites. Using a new method for comparison of degenerate regulatory elements between sequence samples, we identified significant changes in the use of putative 3'-processing regulatory sequence elements in all spermatogenic cell types. In addition, we observed a trend towards truncated 3'-untranslated regions (3'-UTRs), with the most significant differences apparent in round spermatids. In contrast, Sertoli cells displayed a much smaller trend towards 3'-UTR truncation and no significant difference in 3'-processing regulatory sequences. Finally, we identified a number of genes encoding mRNAs that were specifically subject to alternative 3'-processing during meiosis and postmeiotic development. Our results highlight developmental differences in polyadenylation site choice and in the elements that likely control them during spermatogenesis.
机译:小鼠雄性生殖细胞成熟(生精)过程中的基因表达和加工是高度专业化的。以前的报告表明,雄性生殖细胞mRNA中存在其他3'加工的高发生率,包括减少使用规范的聚腺苷酸化信号AAUAAA。我们使用从小鼠睾丸细胞生成的EST文库来鉴定在精子发生各个阶段(精原细胞,精细胞和圆形精子)和睾丸体细胞中使用的3'-加工位点。与广泛使用的3'-加工位点的对照组相比,我们评估了睾丸样品3'-加工特性的差异。使用一种新的方法来比较序列样本之间的简并调控元件,我们确定了在所有生精细胞类型中使用假定的3'-加工调控序列元件的重大变化。此外,我们观察到了截短的3'-非翻译区(3'-UTR)的趋势,最明显的差异是圆形精子细胞。相反,Sertoli细胞向3'-UTR截短的趋势要小得多,并且在3'-加工调控序列中没有显着差异。最后,我们鉴定了许多编码mRNA的基因,这些基因在减数分裂和减数分裂后的发育过程中特别经历了3'加工。我们的结果突出了在聚腺苷酸化位点选择和可能在精子发生过程中控制它们的元素方面的发育差异。

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