选择性剪接在脊椎动物性别决定中的作用。

IF 2.4 4区 医学 Q2 DEVELOPMENTAL BIOLOGY
Sexual Development Pub Date : 2021-01-01 Epub Date: 2021-09-28 DOI:10.1159/000519218
Isabel Gómez-Redondo, Benjamín Planells, Paula Navarrete, Alfonso Gutiérrez-Adán
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引用次数: 14

摘要

在性别决定的过程中,含有未分化性腺的生殖细胞被转化为雄性或雌性生殖器官。性染色体的组成和环境都决定了脊椎动物的性别。据推测,转录水平调控驱动了这种级联机制;然而,转录因子可以通过控制mRNA前剪接和mRNA异构体的产生来改变转录起始以外的基因表达。利用小鼠性别决定和性腺发育的关键时间窗,有报道称新的非转录事件,如选择性剪接,可能在哺乳动物性别决定中发挥关键作用。我们知道关键调控因子,如WT1(+/-KTS)或FGFR2(b/c)在mrna前剪接和性别决定中的作用,这表明脊椎动物性别决定过程中的重要步骤可能在转录后水平上运作。在这里,我们讨论了前mrna剪接调节剂在脊椎动物性别决定中的作用,重点关注小鼠胎儿性腺转录组报告的新RNA-seq数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Alternative Splicing in Sex Determination in Vertebrates.

During the process of sex determination, a germ-cell-containing undifferentiated gonad is converted into either a male or a female reproductive organ. Both the composition of sex chromosomes and the environment determine sex in vertebrates. It is assumed that transcription level regulation drives this cascade of mechanisms; however, transcription factors can alter gene expression beyond transcription initiation by controlling pre-mRNA splicing and thereby mRNA isoform production. Using the key time window in sex determination and gonad development in mice, it has been reported that new non-transcriptional events, such as alternative splicing, could play a key role in sex determination in mammals. We know the role of key regulatory factors, like WT1(+/-KTS) or FGFR2(b/c) in pre-mRNA splicing and sex determination, indicating that important steps in the vertebrate sex determination process probably operate at a post-transcriptional level. Here, we discuss the role of pre-mRNA splicing regulators in sex determination in vertebrates, focusing on the new RNA-seq data reported from mice fetal gonadal transcriptome.

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来源期刊
Sexual Development
Sexual Development 生物-发育生物学
CiteScore
4.00
自引率
4.30%
发文量
25
审稿时长
>12 weeks
期刊介绍: Recent discoveries in experimental and clinical research have led to impressive advances in our knowledge of the genetic and environmental mechanisms governing sex determination and differentiation, their evolution as well as the mutations or endocrine and metabolic abnormalities that interfere with normal gonadal development. ‘Sexual Development’ provides a unique forum for this rapidly expanding field. Its broad scope covers all aspects of genetics, molecular biology, embryology, endocrinology, evolution and pathology of sex determination and differentiation in humans and animals. It publishes high-quality original research manuscripts, review articles, short reports, case reports and commentaries. An internationally renowned and multidisciplinary editorial team of three chief editors, ten prominent scientists serving as section editors, and a distinguished panel of editorial board members ensures fast and author-friendly editorial processing and peer reviewing.
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