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Template-directed synthesis of a genetic polymer in a model protocell

机译:模型原型细胞中遗传聚合物的模板指导合成

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Contemporary phospholipid-based cell membranes are formidable barriers to the uptake of polar and charged molecules ranging from metal ions to complex nutrients. Modern cells therefore require sophisticated protein channels and pumps to mediate the exchange of molecules with their environment. The strong barrier function of membranes has made it difficult to understand the origin of cellular life and has been thought to preclude a hetero-trophic lifestyle for primitive cells. Although nudeotides can cross dimyristoyl phosphatidylcholine membranes through defects formed at the gel-to-liquid transition temperature, phospho-lipid membranes lack the dynamic properties required for membrane growth. Fatty acids and their corresponding alcohols and glycerol monoesters are attractive candidates for the components of protocell membranes because they are simple amphiphiles that form bilayer membrane vesicles that retain encapsulated oligo-nucleotides and are capable of growth and division. Here we show that such membranes allow the passage of charged molecules such as nucleotides, so that activated nucleotides added to the outside of a model protocell spontaneously cross the membrane and take part in efficient template copying in the protocell interior. The permeability properties of prebiotically plausible membranes suggest that primitive protocells could have acquired complex nutrients from their environment in the absence of any macromo-lecular transport machinery; that is, they could have been obligate heterotrophs.
机译:当代的基于磷脂的细胞膜是摄取极性和带电分子(从金属离子到复杂营养物)的强大障碍。因此,现代细胞需要复杂的蛋白质通道和泵来介导分子与其环境的交换。膜的强大屏障功能使人们难以理解细胞生命的起源,并被认为排除了原始细胞的异养生活。尽管核苷可以通过在凝胶到液体的转变温度下形成的缺陷穿过二丙炔基磷脂酰胆碱膜,但是磷脂膜缺乏膜生长所需的动力学特性。脂肪酸及其相应的醇和甘油单酯是原细胞膜成分的诱人候选物,因为它们是形成形成双层膜囊泡的简单两亲物,该双层膜囊泡保留了封装的寡核苷酸,并且能够生长和分裂。在这里,我们表明这种膜允许带电荷的分子(例如核苷酸)通过,从而使添加到模型原细胞外部的活化核苷酸自发地穿过膜并参与原细胞内部的有效模板复制。益生元似的膜的通透性表明,原始原生细胞在没有任何大分子运输机制的情况下可能已经从其环境中获取了复杂的营养。也就是说,它们本来可以是专性异养生物。

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