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Studying nuclear disassembly in vitro using Xenopus egg extract.

机译:使用非洲爪蟾卵提取物体外研究核拆卸。

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Xenopus egg extract provides an extremely powerful approach in the study of cell cycle regulated aspects of nuclear form and function. Each egg contains enough membrane and protein components to support multiple rounds of cell division. Remarkably, incubation of egg extract with DNA in the presence of an energy regeneration system is sufficient to induce formation of a nuclear envelope around DNA. In addition, these in vitro nuclei contain functional nuclear pore complexes, which form de novo and are capable of supporting nucleocytoplasmic transport. Mitotic entry can be induced by the addition of recombinant cyclin to an interphase extract. This initiates signaling that leads to disassembly of the nuclei. Thus, this cell-free system can be used to decipher events involved in mitotic remodeling of the nuclear envelope such as changes in nuclear pore permeability, dispersal of membrane, and disassembly of the lamina. Both general mechanisms and individual players required for orchestrating these events can be identified via biochemical manipulation of the egg extract. Here, we describe a procedure for the assembly and disassembly of in vitro nuclei, including the production of Xenopus egg extract and sperm chromatin DNA.
机译:非洲爪蟾卵提取物为研究细胞周期调节的核形式和功能方面提供了极其强大的方法。每个鸡蛋包含足够的膜和蛋白质成分,以支持多轮细胞分裂。值得注意的是,在能量再生系统的存在下,卵提取物与DNA的孵育足以诱导DNA周围形成核被膜。另外,这些体外核含有功能性核孔复合物,它们从头形成并能够支持核质运输。可通过将重组细胞周期蛋白添加至相间提取物中来诱导有丝分裂进入。这启动了导致核解体的信号传导。因此,该无细胞系统可用于破译参与核膜有丝分裂重塑的事件,例如核孔通透性的变化,膜的分散和薄片的分解。编排这些事件所需的一般机制和单个参与者都可以通过卵提取物的生化操作来识别。在这里,我们描述了体外核的组装和拆卸程序,包括爪蟾卵提取物和精子染色质DNA的生产。

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