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Generation of Esr1-Knockout Rats Using Zinc Finger Nuclease-Mediated Genome Editing

机译:锌指核酸酶介导的基因组编辑的Esr1基因敲除大鼠的生成。

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摘要

Estrogens play pivotal roles in development and function of many organ systems, including the reproductive system. We have generated estrogen receptor 1 (Esr1)-knockout rats using zinc finger nuclease (ZFN) genome targeting. mRNAs encoding ZFNs targeted to exon 3 of Esr1 were microinjected into single-cell rat embryos and transferred to pseudopregnant recipients. Of 17 live births, 5 had biallelic and 1 had monoallelic Esr1 mutations. A founder with monoallelic mutations was backcrossed to a wild-type rat. Offspring possessed only wild-type Esr1 alleles or wild-type alleles and Esr1 alleles containing either 482 bp (Δ482) or 223 bp (Δ223) deletions, indicating mosaicism in the founder. These heterozygous mutants were bred for colony expansion, generation of homozygous mutants, and phenotypic characterization. The Δ482 Esr1 allele yielded altered transcript processing, including the absence of exon 3, aberrant splicing of exon 2 and 4, and a frameshift that generated premature stop codons located immediately after the codon for Thr157. ESR1 protein was not detected in homozygous Δ482 mutant uteri. ESR1 disruption affected sexually dimorphic postnatal growth patterns and serum levels of gonadotropins and sex steroid hormones. Both male and female Esr1-null rats were infertile. Esr1-null males had small testes with distended and dysplastic seminiferous tubules, whereas Esr1-null females possessed large polycystic ovaries, thread-like uteri, and poorly developed mammary glands. In addition, uteri of Esr1-null rats did not effectively respond to 17β-estradiol treatment, further demonstrating that the Δ482 Esr1 mutation created a null allele. This rat model provides a new experimental tool for investigating the pathophysiology of estrogen action.
机译:雌激素在包括生殖系统在内的许多器官系统的发育和功能中起着关键作用。我们已经使用锌指核酸酶(ZFN)基因组靶向生成了雌激素受体1(Esr1)-敲除大鼠。将靶向Esr1外显子3的ZFN编码的mRNA微注射到单细胞大鼠胚胎中,并转移至假孕受体。在17个活产婴儿中,有5个具有双等位基因,而1个具有单等位基因Esr1突变。具有单等位基因突变的创建者与野生型大鼠回交。后代仅具有野生型Esr1等位基因或野生型等位基因,并且Esr1等位基因含有482 bp(Δ482)或223 bp(Δ223)缺失,表明创始人中存在镶嵌现象。繁殖这些杂合突变体用于菌落扩增,纯合突变体的产生和表型表征。 Δ482Esr1等位基因产生改变的转录本加工过程,包括不存在外显子3,外显子2和4的异常剪接以及移码,从而产生了位于Thr157密码子后的提前终止密码子。在纯合子Δ482突变子宫中未检测到ESR1蛋白。 ESR1破坏影响性二态性产后生长方式以及促性腺激素和性类固醇激素的血清水平。 Esr1无效的雄性和雌性大鼠均不育。 Esr1无效的雄性睾丸小,扩张性和生精小管发育不良,而Esr1无效的雌性则具有大的多囊卵巢,子宫线状子宫和乳腺发育不良。此外,无Esr1的大鼠子宫对17β-雌二醇治疗没有有效反应,进一步证明Δ482Esr1突变产生了无效等位基因。该大鼠模型提供了一种新的实验工具,用于研究雌激素作用的病理生理。

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