Circular RNAs: novel noncoding players in male infertility.

IF 2.7 3区 生物学
Emad Babakhanzadeh, Fakhr-Alsadat Hoseininasab, Ali Khodadadian, Majid Nazari, Reza Hajati, Soudeh Ghafouri-Fard
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引用次数: 0

Abstract

Infertility is a global problem being associated with emotional and financial burden. Recent studies have shown contribution of a group of non-coding RNAs, namely circular RNAs (circRNAs) to the etiology of some infertility conditions. CircRNA are transcribed from exons and form a circular RNA molecule, being abundant in eukaryotes. Traditionally classified as non-coding RNA, these transcripts are endogenously produced through either non-canonical back-splicing or linear splicing, typically produced from precursor messenger ribonucleic acid (pre-mRNA). While during the canonical splicing process the 3' end of the exon is joined to the 5' end of the succeeding exon to form linear mRNA, during backsplicing, the 3' end to the 5' end of the same exon is joined to make a circular molecule. circRNAs are involved in the regulation of several aspects of spermatogenesis. They appear to influence how stem germ cells grow and divide during the sperm production process. Malfunctions in circRNA activity could contribute to male infertility issues stemming from abnormalities in spermatogenesis. In the current review, we highlight the exciting potential of circRNAs as key players in the male fertility.

环状 RNA:男性不育症的新型非编码参与者。
不孕不育是一个全球性问题,给人们带来精神和经济负担。最近的研究表明,一组非编码 RNA,即环状 RNA(circRNA)与某些不孕症的病因有关。环状 RNA 由外显子转录而来,形成环状 RNA 分子,在真核生物中含量丰富。这些转录本传统上被归类为非编码 RNA,通过非规范的反向剪接或线性剪接产生,通常由前体信使核糖核酸(pre-mRNA)产生。在规范剪接过程中,外显子的 3' 端与后继外显子的 5' 端连接,形成线性 mRNA,而在反向剪接过程中,同一外显子的 3' 端与 5' 端连接,形成环状分子。在精子生成过程中,它们似乎会影响干生殖细胞的生长和分裂。circRNA活性失常可能导致精子发生异常引起的男性不育问题。在本综述中,我们强调了circRNA作为男性生育能力关键角色的令人兴奋的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hereditas
Hereditas Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.80
自引率
3.70%
发文量
0
期刊介绍: For almost a century, Hereditas has published original cutting-edge research and reviews. As the Official journal of the Mendelian Society of Lund, the journal welcomes research from across all areas of genetics and genomics. Topics of interest include human and medical genetics, animal and plant genetics, microbial genetics, agriculture and bioinformatics.
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