首页> 外文期刊>BMC Genetics >Splice variants and promoter methylation status of the Bovine Vasa Homology (Bvh) gene may be involved in bull spermatogenesis
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Splice variants and promoter methylation status of the Bovine Vasa Homology (Bvh) gene may be involved in bull spermatogenesis

机译:牛脉管同源性(Bvh)基因的剪接变体和启动子甲基化状态可能与公牛精子发生有关

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Background Vasa is a member of the DEAD-box protein family that plays an indispensable role in mammalian spermatogenesis, particularly during meiosis. Bovine vasa homology (Bvh) of Bos taurus has been reported, however, its function in bovine testicular tissue remains obscure. This study aimed to reveal the functions of Bvh and to determine whether Bvh is a candidate gene in the regulation of spermatogenesis in bovine, and to illustrate whether its transcription is regulated by alternative splicing and DNA methylation. Results Here we report the molecular characterization, alternative splicing pattern, expression and promoter methylation status of Bvh. The full-length coding region of Bvh was 2190?bp, which encodes a 729 amino acid (aa) protein containing nine consensus regions of the DEAD box protein family. Bvh is expressed only in the ovary and testis of adult cattle. Two splice variants were identified and termed Bvh-V4 (2112?bp and 703 aa) and Bvh-V45 (2040?bp and 679 aa). In male cattle, full-length Bvh (Bvh-FL), Bvh-V4 and Bvh-V45 are exclusively expressed in the testes in the ratio of 2.2:1.6:1, respectively. Real-time PCR revealed significantly reduced mRNA expression of Bvh-FL, Bvh-V4 and Bvh-V45 in testes of cattle-yak hybrids, with meiotic arrest compared with cattle and yaks with normal spermatogenesis (P?Bvh in the testes of cattle-yak hybrids was significantly greater than in cattle and yaks (P? Conclusion In the present study, Bvh was isolated and characterized. These data suggest that Bvh functions in bovine spermatogenesis, and that transcription of the gene in testes were regulated by alternative splice and promoter methylation.
机译:背景瓦萨(Vasa)是DEAD-box蛋白家族的成员,在哺乳动物的精子发生过程中,尤其是在减数分裂过程中,起着不可或缺的作用。牛金牛座的牛脉管同源性(Bvh)已有报道,但是,其在牛睾丸组织中的功能仍然不清楚。这项研究旨在揭示Bvh的功能,并确定Bvh是否为牛精子发生调控的候选基因,并阐明其转录是否受其他剪接和DNA甲基化调控。结果在此我们报道了Bvh的分子特征,替代剪接模式,表达和启动子甲基化状态。 Bvh的全长编码区为2190?bp,编码一个729个氨基酸的氨基酸,包含DEAD盒蛋白家族的9个共有区。 Bvh仅在成年牛的卵巢和睾丸中表达。鉴定出两个剪接变体,称为Bvh-V4(2112bp和703aa)和Bvh-V45(2040bp和679aa)。在雄性牛中,全长Bvh(Bvh-FL),Bvh-V4和Bvh-V45分别以2.2:1.6:1的比例表达在睾丸中。实时PCR显示,牛-牛杂种的睾丸中Bvh-FL,Bvh-V4和Bvh-V45的mRNA表达显着降低,与牛和具有正常精子发生能力的牛相比,减数分裂阻滞(P?Bvh在牛睾丸中Conclusion牛杂种显着大于牛和ks牛(P?结论)在本研究中,Bvh已被分离和鉴定。这些数据表明Bvh在牛精子发生中起作用,并且睾丸中该基因的转录受其他剪接和启动子调控。甲基化。

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