Nuclear assembly in giant unilamellar vesicles encapsulating Xenopus egg extract

Sho Takamori, Hisatoshi Mimura, Toshihisa Osaki, Tomo Kondo, Miyuki Shintomi, Keishi Shintomi, Miho Ohsugi, Shoji Takeuchi
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Abstract

The reconstitution of a cell nucleus in a lipid bilayer-enclosed synthetic cell makes great strides in bottom-up synthetic biology. In this study, we propose a method for assembling a nucleus in giant unilamellar vesicles (GUVs). To induce reconstitution of the nucleus, we utilise interphase egg extract of African clawed frogs Xenopus laevis, known as a biochemically controllable cell-free system capable of transforming an added sperm chromatin into a nucleus in vitro. We enhanced GUV-formation efficiency by the inverted emulsion method through incorporating prolonged waiting time and adding chloroform into lipid-dispersed oil, facilitating subsequent nuclear assembly reactions in the GUVs. Characterisation of nucleus-like structures formed in the GUVs revealed the presence of dense DNA and accumulated GFP-NLS in the structure, indicative of functional nuclear import. Immunostaining further validated the presence of nuclear pore complexes on the surfaces of these nucleus-like structures. Moreover, we observed a positive correlation between sizes of GUV and nucleus-like structure/nucleus. Our approach provides insights into nuclear assembly in lipid bilayer-enclosed cell-like confinement and becomes a platform for constructing artificial cellular systems that closely mimic eukaryotic cells.
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包裹爪蟾卵提取物的巨型单拉美拉尔囊泡中的核组装
在脂质双分子层封闭的合成细胞中重组细胞核是自下而上合成生物学的一大进步。在本研究中,我们提出了一种在巨型单酰胺囊泡 (GUV) 中组装细胞核的方法。为了诱导细胞核的重组,我们利用了非洲爪蟾的间期卵提取物,这是一种可生化控制的无细胞系统,能够在体外将添加的精子染色质转化为细胞核。我们通过延长等待时间和在脂质分散油中加入氯仿,提高了倒置乳液法形成 GUV 的效率,从而促进了 GUV 中后续的核组装反应。对 GUVs 中形成的类核结构进行表征后发现,结构中存在致密的 DNA 和累积的 GFP-NLS,表明存在功能性核导入。免疫染色进一步验证了这些类核结构表面存在核孔复合体。此外,我们还观察到 GUV 的大小与类核结构/核之间存在正相关。我们的方法提供了在脂质双分子层封闭的类细胞封闭中核组装的见解,并成为构建近似真核细胞的人工细胞系统的平台。
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