首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Donor centrosome regulation of initial spindle formation in mouse somatic cell nuclear transfer: Roles of gamma-tubulin and nuclear mitotic apparatus protein 1
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Donor centrosome regulation of initial spindle formation in mouse somatic cell nuclear transfer: Roles of gamma-tubulin and nuclear mitotic apparatus protein 1

机译:小鼠体细胞核转移中的初始主轴形成的供体中心调节:γ-小蛋白和核有机丝蛋白的作用1

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During the process of spindle-chromosome complex depletion in the oocyte, it is unclear whether both gamma-tubulin and nuclear mitotic apparatus protein 1 (NUMA1), which are required for mitotic organization and spindle assembly, are removed. The role of the donor cell centrosome and donor nuclear NUMA1 in the initial spindle morphogenesis and chromosome remodeling also remains unclear. In the present study, we show that in the mouse, the level of gamma-tubulin in the poles and around the metaphase II spindle declines significantly, whereas only approximately 10% of NUMA1 is removed during spindle-chromosome complex depletion in the recipient oocyte. This process does not impede initial spindle morphogenesis and is regulated by the centrosome of the donor cumulus cell. Retaining the donor cell centrosome establishes a monopolar spindle, whereas prior removal of the centrosome by a narrow-bore micropipette leads to bipolar spindle formation. Our data show that the centrosome of the donor cell regulates initial spindle morphogenesis and that the donor cumulus cell NUMA1 compensates for the deficiency in recipient NUMA1 during the formation of metaphase-like structures after nuclear transfer. Full-term offspring of cloned mice were obtained after injection of donor cells only with a pipette having an inner diameter of 7-8 mu m, which retained the donor cell centrosome. In contrast, removing the donor cell centrosome with a small pipette impaired preimplantation development and prevented full-term development. In conclusion, the initial spindle assembly of a metaphase-like spindle is regulated by the centrosome from the donor cell in the mouse.
机译:在卵母细胞中纺织染色体复合物耗竭过程中,除去有丝状组织和主轴组件所需的γ-微管蛋白和核有丝偶剂蛋白1(NUMA1)是否尚不清楚。供体细胞中心核心组和供体核NUMA1在初始主轴形态发生和染色体重塑中的作用也仍不清楚。在本研究中,我们表明,在小鼠中,在杆子中的γ-微管蛋白水平和中期主轴围绕中间纺锤体显着下降,而在受体卵母细胞中仅在主轴染色体复合物耗尽期间除去大约10%的NUMA1。该方法不妨碍初始主轴形态发生,并由供体巨块细胞的中心体调节。保留供体细胞中心组织建立单极主轴,而通过窄孔微型管之前去除中心体导致双极主轴形成。我们的数据表明,供体细胞的中心组体调节初始主轴形态发生,并且供体巨粒细胞NUMA1在核转移后形成中期结构的形成期间补偿受体NUMA1的缺乏。在注射供体细胞的情况下仅用具有7-8μmm的移液管注射供体细胞后获得克隆小鼠的全术后子孙内代,其保留供体细胞中心体。相比之下,用小的移液管损害施用的预造化发育并防止全术发育,从而除去供体细胞中心体。总之,所中脱轴的初始主轴组件由来自小鼠中的供体细胞的中心体调节。

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