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Specific Spatial Localization of Actin and DNA in a Water/Water Microdroplet: Self‐Emergence of a Cell‐Like Structure

机译:水/水微滴中肌动蛋白和DNA的特定空间定位:细胞样结构的自我出现

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摘要

The effect of binary hydrophilic polymers on a pair of representative bio‐macromolecules in a living cell has been examined. The results showed that these bio‐macromolecules exhibited specific localization in cell‐sized droplets that were spontaneously formed through water/water microphase segregation under crowding conditions with coexisting polymers. In these experiments, a simple binary polymer system with poly(ethylene glycol) (PEG) and dextran (DEX) was used. Under the conditions of microphase segregation, DNA was entrapped within cell‐sized droplets rich in DEX. Similarly, F‐actin, linearly polymerized actin, was entrapped specifically within microdroplets rich in DEX, whereas G‐actin, a monomeric actin, was distributed evenly inside and outside these droplets. This study has been extended to a system with both F‐actin and DNA, and it was found that DNA molecules were localized separately from aligned F‐actin proteins to create microdomains inside microdroplets, reflecting the self‐emergence of a cellular morphology similar to a stage of cell division.
机译:已经研究了二元亲水聚合物对活细胞中一对代表性生物大分子的影响。结果表明,这些生物大分子在细胞大小的液滴中表现出特定的定位,这些液滴是在拥挤条件下与共存的聚合物通过水/水微相分离而自发形成的。在这些实验中,使用了具有聚乙二醇(PEG)和右旋糖酐(DEX)的简单二元聚合物系统。在微相分离的条件下,DNA被困在富含DEX的细胞大小的液滴中。类似地,线性聚合的肌动蛋白F-肌动蛋白被专门捕获在富含DEX的微滴中,而单体肌动蛋白G-肌动蛋白则均匀地分布在这些微滴的内部和外部。这项研究已扩展到同时包含F-肌动蛋白和DNA的系统,发现DNA分子与对齐的F-肌动蛋白分开定位,在微滴内部形成微结构域,反映出类似于细胞形态的细胞形态的自我出现。细胞分裂的阶段。

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