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通过基因组编辑方法对斑马鱼繁殖中核雌激素受体的功能分析

Functional Analysis of Nuclear Estrogen Receptors in Zebrafish Reproduction by Genome Editing Approach.

作者信息

Lu Huijie, Cui Yong, Jiang Liwen, Ge Wei

机构信息

Centre of Reproduction, Development, and Aging (CRDA), Faculty of Health Sciences, University of Macau, Taipa, Macau, China.

School of Life Sciences, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.

出版信息

Endocrinology. 2017 Jul 1;158(7):2292-2308. doi: 10.1210/en.2017-00215.

Abstract

Estrogens signal through both nuclear and membrane receptors with most reported effects being mediated via the nuclear estrogen receptors (nERs). Although much work has been reported on nERs in the zebrafish, there is a lack of direct genetic evidence for their functional roles and importance in reproduction. To address this issue, we undertook this study to disrupt all three nERs in the zebrafish, namely esr1 (ERα), esr2a (ERβII), and esr2b (ERβI), by the genome-editing technology clustered regularly interspaced short palindromic repeats and its associated nuclease (CRISPR/Cas9). Using this loss-of-function genetic approach, we successfully created three mutant zebrafish lines with each nER knocked out. In addition, we also generated all possible double and triple knockouts of the three nERs. The phenotypes of these mutants in reproduction were analyzed in all single, double, and triple nER knockouts in both females and males. Surprisingly, all three single nER mutant fish lines display normal reproductive development and function in both females and males, suggesting functional redundancy among these nERs. Further analysis of double and triple knockouts showed that nERs, especially Esr2a and Esr2b, were essential for female reproduction, and loss of these two nERs led to an arrest of folliculogenesis at previtellogenic stage II followed by sex reversal from female to male. In addition, the current study also revealed a unique role for Esr2a in follicle cell proliferation and transdifferentiation, follicle growth, and chorion formation. Taken together, this study provides the most comprehensive genetic analysis for differential functions of esr1, esr2a, and esr2b in fish reproduction.

摘要

雌激素通过核受体和膜受体发挥信号作用,大多数已报道的效应是通过核雌激素受体(nERs)介导的。尽管关于斑马鱼核雌激素受体的研究已有很多报道,但缺乏直接的遗传学证据来证明它们在生殖中的功能作用和重要性。为了解决这个问题,我们开展了这项研究,利用基因组编辑技术——成簇规律间隔短回文重复序列及其相关核酸酶(CRISPR/Cas9),敲除斑马鱼中的所有三种核雌激素受体,即esr1(雌激素受体α,ERα)、esr2a(雌激素受体βII,ERβII)和esr2b(雌激素受体βI,ERβI)。通过这种功能丧失的遗传学方法,我们成功创建了三个分别敲除每种核雌激素受体的突变斑马鱼品系。此外,我们还构建了三种核雌激素受体所有可能的双敲除和三敲除品系。对这些突变体在生殖方面的表型进行了分析,涵盖了所有单敲除、双敲除和三敲除的雌性和雄性斑马鱼。令人惊讶的是,所有三个单敲除核雌激素受体的突变鱼品系在雌性和雄性中均表现出正常的生殖发育和功能,这表明这些核雌激素受体之间存在功能冗余。对双敲除和三敲除品系的进一步分析表明,核雌激素受体,尤其是Esr2a和Esr2b,对雌性生殖至关重要,这两种核雌激素受体的缺失会导致卵泡发生在卵黄生成前的II期停滞,随后发生从雌性到雄性的性逆转。此外,本研究还揭示了Esr2a在卵泡细胞增殖和转分化、卵泡生长以及卵壳形成中的独特作用。综上所述,本研究为esr1、esr2a和esr2b在鱼类生殖中的不同功能提供了最全面的遗传学分析。

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