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利用新建立的带有增强绿色荧光蛋白/红色荧光蛋白2标签的胚胎干细胞进行嵌合体分析,确定了HYDIN对小鼠精子发生至关重要。

Chimeric analysis with newly established EGFP/DsRed2-tagged ES cells identify HYDIN as essential for spermiogenesis in mice.

作者信息

Oura Seiya, Miyata Haruhiko, Noda Taichi, Shimada Keisuke, Matsumura Takafumi, Morohoshi Akane, Isotani Ayako, Ikawa Masahito

机构信息

Research Institute for Microbial Diseases, Osaka University, 3-1 Yamada-oka, Suita, Osaka 565-0871, Japan.

Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamada-oka, Suita, Osaka 565-0871, Japan.

出版信息

Exp Anim. 2019 Feb 26;68(1):25-34. doi: 10.1538/expanim.18-0071. Epub 2018 Aug 9.

Abstract

The CRISPR/Cas9 system can efficiently introduce biallelic mutations in ES cells (ESCs), and its application with fluorescently-tagged ESCs enables phenotype analysis in chimeric mice. We have utilized ESCs that express EGFP in the cytosol and acrosome [EGR-G101 129S2 × (CAG/Acr-EGFP) B6] in previous studies; however, the EGFP signal in the sperm cytosol is weak and the signal in the acrosome is lost after the acrosome reaction, precluding analysis between wild type and ESC derived spermatozoa. In this study, we established an ESC line from RBGS (Red Body Green Sperm) transgenic mice [B6D2-Tg (CAG/Su9-DsRed2, Acr3-EGFP) RBGS002Osb] whose spermatozoa exhibit green fluorescence in the acrosome and red fluorescence in the mitochondria within the flagellar midpiece that is retained after the acrosome reaction. We utilized these new ESCs to analyze HYDIN, which is reported to function in sperm motility in humans. Analysis of Hydin-disrupted spermatozoa in mice is difficult as Hydin-mutant mice (hy3) die within 3 weeks, before sexual maturation, due to hydrocephaly. To circumvent the early lethality of the whole-body knockout, we disrupted Hydin in RBGS-ESCs and generated chimeric mice, which survived into sexual maturity. Hydin-disrupted spermatozoa obtained from the chimeric mice possessed short tails and were immotile. When we injected Hydin-disrupted spermatozoa into oocytes, heterozygous pups were obtained, which suggests that the genome of Hydin-disrupted spermatozoa can produce viable pups. Consequently, RBGS-ESCs can be a useful tool for screening and analysis of male-fertility related genes in chimeric mice.

摘要

CRISPR/Cas9系统能够在胚胎干细胞(ESCs)中高效引入双等位基因突变,并且将其与荧光标记的胚胎干细胞一起应用能够对嵌合小鼠进行表型分析。在之前的研究中,我们使用了在细胞质和顶体中表达EGFP的胚胎干细胞[EGR-G101 129S2 × (CAG/Acr-EGFP) B6];然而,精子细胞质中的EGFP信号较弱,并且顶体反应后顶体中的信号会消失,这使得无法对野生型和胚胎干细胞来源的精子进行分析。在本研究中,我们从RBGS(红体绿精子)转基因小鼠[B6D2-Tg (CAG/Su9-DsRed2, Acr3-EGFP) RBGS002Osb]中建立了一个胚胎干细胞系,该小鼠的精子在顶体中呈现绿色荧光,在鞭毛中段的线粒体中呈现红色荧光,且顶体反应后该荧光仍保留。我们利用这些新的胚胎干细胞来分析据报道在人类精子运动中起作用的HYDIN。由于Hydin突变小鼠(hy3)因脑积水在性成熟前3周内死亡,因此对小鼠中Hydin缺失的精子进行分析很困难。为了规避全身敲除导致的早期致死性,我们在RBGS-胚胎干细胞中破坏了Hydin并生成了嵌合小鼠,这些小鼠存活至性成熟。从嵌合小鼠获得的Hydin缺失的精子具有短尾且无运动能力。当我们将Hydin缺失的精子注射到卵母细胞中时,获得了杂合子幼崽,这表明Hydin缺失的精子基因组能够产生存活的幼崽。因此,RBGS-胚胎干细胞可以成为在嵌合小鼠中筛选和分析雄性生育相关基因的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b981/6389518/f4be17f17056/expanim-68-025-g003.jpg

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