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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Structural and Functional Characterization of a Testicular Long Non-coding RNA (4930463O16Rik) Identified in the Meiotic Arrest of the Mouse Topaz1–/– Testes
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Structural and Functional Characterization of a Testicular Long Non-coding RNA (4930463O16Rik) Identified in the Meiotic Arrest of the Mouse Topaz1–/– Testes

机译:睾丸长期非编码RNA(4930463O16RIK)的结构和功能表征在小鼠黄玉的减震器中鉴定的 - / - 睾丸

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摘要

Spermatogenesis involves coordinated processes, including meiosis, to produce functional gametes. We previously reported Topaz1 as a germ cell-specific gene highly conserved in vertebrates. Topaz1 knockout males are sterile with testes that lack haploid germ cells because of meiotic arrest after prophase I. To better characterize Topaz1-/- testes, we used RNA-sequencing analyses at two different developmental stages (P16 and P18). The absence of TOPAZ1 disturbed the expression of genes involved in microtubule and/or cilium mobility, biological processes required for spermatogenesis. Moreover, a quarter of P18 dysregulated genes are long non-coding RNAs (lncRNAs), and three of them are testis-specific and located in spermatocytes, their expression starting between P11 and P15. The suppression of one of them, 4939463O16Rik, did not alter fertility although sperm parameters were disturbed and sperm concentration fell. The transcriptome of P18-4939463O16Rik-/- testes was altered and the molecular pathways affected included microtubule-based processes, the regulation of cilium movement and spermatogenesis. The absence of TOPAZ1 protein or 4930463O16Rik produced the same enrichment clusters in mutant testes despite a contrasted phenotype on male fertility. In conclusion, although Topaz1 is essential for the meiosis in male germ cells and regulate the expression of numerous lncRNAs, these studies have identified a Topaz1 regulated lncRNA (4930463O16Rik) that is key for both sperm production and motility.
机译:精子发生涉及协调的过程,包括减数分裂,以产生功能性配子。我们以前报告过Topaz1作为脊椎动物高度保守的细胞特异性基因。黄玉敲除男性对睾丸无菌,因为预先表征黄血喉后,由于减数分裂剂,缺乏单倍体胚芽细胞。为了更好地表征Topaz1 - / - 睾丸,我们在两种不同的发育阶段(P16和P18)使用了RNA测序分析。缺乏托皮达1干扰了种参与微管和/或辣椒迁移率的基因的表达,精子发生所需的生物方法。此外,四分之一的P18失调基因是长期非编码的RNA(LNCRNA),其中三种是睾丸特异性并位于精子胶质细胞中,它们在P11和P15之间开始的表达。抑制其中一个,4939463O16RIK,尽管精子参数受到干扰,并且精子浓度下降。改变了P18-4939463O16RIK - / - 睾丸的转录组,分子途径包括基于微管的方法,调节纤毛运动和精子发生。尽管男性生育率对比表型对比表型,但在突变体睾丸中缺乏缺失蛋白质或4930463O16RIK在突变体中产生了相同的富集簇。总之,虽然黄抗1对男性生殖细胞中的减数分子至关重要,并调节众多LNCRNA的表达,但这些研究鉴定了黄脂的LNCrNA(4930463O16RIK),其是精子产生和运动的关键。

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