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Replication of somatic micronuclei in bovine enucleated oocytes

机译:牛卵核细胞中体细胞核的复制

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Background Microcell-mediated chromosome transfer (MMCT) was developed to introduce a low number of chromosomes into a host cell. We have designed a novel technique combining part of MMCT with somatic cell nuclear transfer, which consists of injecting a somatic micronucleus into an enucleated oocyte, and inducing its cellular machinery to replicate such micronucleus. It would allow the isolation and manipulation of a single or a low number of somatic chromosomes. Methods Micronuclei from adult bovine fibroblasts were produced by incubation in 0.05 μg/ml demecolcine for 46 h followed by 2 mg/ml mitomycin for 2 h. Cells were finally treated with 10 μg/ml cytochalasin B for 1 h. In vitro matured bovine oocytes were mechanically enucleated and intracytoplasmatically injected with one somatic micronucleus, which had been previously exposed [Micronucleus- injected (+)] or not [Micronucleus- injected (?)] to a transgene (50 ng/μl pCX-EGFP) during 5 min. Enucleated oocytes [Enucleated (+)] and parthenogenetic [Parthenogenetic (+)] controls were injected into the cytoplasm with less than 10 pl of PVP containing 50 ng/μl pCX-EGFP. A non-injected parthenogenetic control [Parthenogenetic (?)] was also included. Two hours after injection, oocytes and reconstituted embryos were activated by incubation in 5 μM ionomycin for 4 min + 1.9 mM 6-DMAP for 3 h. Cleavage stage and egfp expression were evaluated. DNA replication was confirmed by DAPI staining. On day 2, Micronucleus- injected (?), Parthenogenetic (?) and in vitro fertilized (IVF) embryos were karyotyped. Differences among treatments were determined by Fisher′s exact test (p≤0.05). Results All the experimental groups underwent the first cell divisions. Interestingly, a low number of Micronucleus-injected embryos showed egfp expression. DAPI staining confirmed replication of micronuclei in most of the evaluated embryos. Karyotype analysis revealed that all Micronucleus-injected embryos had fewer than 15 chromosomes per blastomere (from 1 to 13), while none of the IVF and Parthenogenetic controls showed less than 30 chromosomes per spread. Conclusions We have developed a new method to replicate somatic micronuclei, by using the replication machinery of the oocyte. This could be a useful tool for making chromosome transfer, which could be previously targeted for transgenesis.
机译:背景技术介导的介导的染色体转移(MMCT)被开发成将少量染色体引入宿主细胞中。我们设计了一种与体细胞核转移的MMCT的一部分组合的新技术,其包括将体细胞核注入到核卵母细胞中,并诱导其细胞机制以复制这种微核。它将允许分离和操纵单个或少量的体细胞染色体。方法采用成人牛成纤维细胞的微核是通过在0.05μg/ ml demecolcine中孵育46 h后的2mg / ml丝霉素制备2小时。最终用10μg/ ml细胞蛋白B处理细胞1小时。体外成熟的牛卵母细胞是机械加入的,并用一种​​体细胞核来注射一个体细胞核,其先前暴露[微核 - 注射(+)],或者将[微核 - 注射(α)]还原为转基因(50ng /μlcx-EGFP )在5分钟内。将卵母细胞α和单向生理(+)]对照喷射到细胞质中,含有50ng /μlpCx-EGFP的少于10 pL的PVP。还包括未注射的单性生理对照[单向性(α)]。注射后两小时,通过在5μM离子霉素中孵育4分钟+ 1.9mm 6-DMAP,激活卵母细胞和重构胚胎3小时。评估切割阶段和EGFP表达。 DAPI染色证实了DNA复制。在第2天,微核注射(α),单向生理(?)和体外受精(IVF)胚胎是核型分类。治疗之间的差异由Fisher的确切测试确定(P≤0.05)确定。结果所有实验组都接受了第一细胞部门。有趣的是,少量的微核注入胚胎显示出EGFP表达。 DAPI染色在大多数评估的胚胎中证实了微核的复制。核型分析显示,所有微核注射的胚胎的每粒子(1至13次)少于15个染色体,而IVF和单向对照中没有均显示少于30个染色体。结论我们通过使用卵母细胞的复制机械制定了一种复制体细胞核的新方法。这可能是制备染色体转移的有用工具,其可以预先靶向转基因。

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