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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >An optimal degree of physical and chemical heterogeneity for the origin of life?
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An optimal degree of physical and chemical heterogeneity for the origin of life?

机译:生命起源的最佳物理和化学异质性?

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The accumulation of pure, concentrated chemical building blocks, from which the essential components of protocells could be assembled, has long been viewed as a necessary, but extremely difficult step on the pathway to the origin of life. However, recent experiments have shown that moderately increasing the complexity of a set of chemical inputs can in some cases lead to a dramatic simplification of the resulting reaction products. Similarly, model protocell membranes composed of certain mixtures of amphiphilic molecules have superior physical properties than membranes composed of single amphiphiles. Moreover, membrane self-assembly under simple and natural conditions gives rise to heterogeneous mixtures of large multi-lamellar vesicles, which are predisposed to a robust pathway of growth and division that simpler and more homogeneous small unilamellar vesicles cannot undergo. Might a similar relaxation of the constraints on building block purity and homogeneity actually facilitate the difficult process of nucleic acid replication? Several arguments suggest that mixtures of monomers and short oligonucleotides may enable the chemical copying of polynucleotides of sufficient length and sequence complexity to allow for the emergence of the first nucleic acid catalysts. The question of the origin of life may become less daunting once the constraints of overly well-defined laboratory experiments are appropriately relaxed.
机译:长期以来,人们一直认为,积累纯净的,浓缩的化学结构单元可以组装原始细胞的基本成分,这是通往生命起源之路的必不可少但极其困难的一步。但是,最近的实验表明,适度增加一组化学输入物的复杂性在某些情况下会导致所得反应产物的显着简化。类似地,由某些两亲分子混合物组成的模型原始细胞膜比由单一两亲物组成的膜具有更好的物理性能。而且,在简单和自然条件下的膜自组装产生了大的多层囊泡的异质混合物,这些混合物倾向于有一个健壮的生长和分裂途径,而更简单,更均匀的小单层囊泡则无法通过。类似地放松对构件纯度和均质性的限制实际上会促进核酸复制的困难过程吗?几个论点表明,单体和短寡核苷酸的混合物可以实现足够长度和序列复杂性的多核苷酸的化学复制,以允许第一核酸催化剂的出现。一旦适当地放松了过度定义的实验室实验的限制,生命起源的问题就会变得不那么艰巨。

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