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PMID: 26162102 已发表 · epublish 英语

RFX2 Is a Major Transcriptional Regulator of Spermiogenesis.

PLoS genetics ·第 11 卷 ·第 7 期 ·2016-05-03

Kistler W Stephen, Baas Dominique, Lemeille Sylvain, Paschaki Marie, Seguin-Estevez Queralt, Barras Emmanuèle, Ma Wenli, Duteyrat Jean-Luc, Morlé Laurette, Durand Bénédicte, Reith Walter

摘要

Spermatogenesis consists broadly of three phases: proliferation of diploid germ cells, meiosis, and finally extensive differentiation of the haploid cells into effective delivery vehicles for the paternal genome. Despite detailed characterization of many haploid developmental steps leading to sperm, only fragmentary information exists on the control of gene expression underlying these processes. Here we report that the RFX2 transcription factor is a master regulator of genes required for the haploid phase. A targeted mutation of Rfx2 was created in mice. Rfx2-/- mice are perfectly viable but show complete male sterility. Spermatogenesis appears to progress unperturbed through meiosis. However, haploid cells undergo a complete arrest in spermatid development just prior to spermatid elongation. Arrested cells show altered Golgi apparatus organization, leading to a deficit in the generation of a spreading acrosomal cap from proacrosomal vesicles. Arrested cells ultimately merge to form giant multinucleated cells released to the epididymis. Spermatids also completely fail to form the flagellar axoneme. RNA-Seq analysis and ChIP-Seq analysis identified 139 genes directly controlled by RFX2 during spermiogenesis. Gene ontology analysis revealed that genes required for cilium function are specifically enriched in down- and upregulated genes showing that RFX2 allows precise temporal expression of ciliary genes. Several genes required for cell adhesion and cytoskeleton remodeling are also downregulated. Comparison of RFX2-regulated genes with those controlled by other major transcriptional regulators of spermiogenesis showed that each controls independent gene sets. Altogether, these observations show that RFX2 plays a major and specific function in spermiogenesis.

文献信息
期刊
PLoS genetics
期刊简称
PLoS Genet
发表日期
2016-05-03
收录日期
2015-07-11
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101239074
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