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A Self-Assembled Aggregate Composed of a Fatty Acid Membrane and the Building Blocks of Biological Polymers Provides a First Step in the Emergence of Protocells

机译:由脂肪酸膜和生物聚合物的结构单元组成的自组装聚集体提供了原生细胞的第一步

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摘要

We propose that the first step in the origin of cellular life on Earth was the self-assembly of fatty acids with the building blocks of RNA and protein, resulting in a stable aggregate. This scheme provides explanations for the selection and concentration of the prebiotic components of cells; the stabilization and growth of early membranes; the catalysis of biopolymer synthesis; and the co-localization of membranes, RNA and protein. In this article, we review the evidence and rationale for the formation of the proposed aggregate: (i) the well-established phenomenon of self-assembly of fatty acids to form vesicles; (ii) our published evidence that nucleobases and sugars bind to and stabilize such vesicles; and (iii) the reasons why amino acids likely do so as well. We then explain how the conformational constraints and altered chemical environment due to binding of the components to the membrane could facilitate the formation of nucleosides, oligonucleotides and peptides. We conclude by discussing how the resulting oligomers, even if short and random, could have increased vesicle stability and growth more than their building blocks did, and how competition among these vesicles could have led to longer polymers with complex functions.
机译:我们认为,地球细胞生命起源的第一步是脂肪酸与RNA和蛋白质构建单元的自组装,从而形成稳定的聚集体。该方案为细胞中益生元组分的选择和浓缩提供了解释。早期膜的稳定和生长;生物聚合物合成的催化;以及膜,RNA和蛋白质的共定位。在本文中,我们回顾了提出的聚集体形成的证据和理由:(i)脂肪酸自组装形成囊泡的公认现象; (ii)我们公开的证据表明核碱基和糖结合并稳定了这种囊泡; (iii)氨基酸也可能这样做的原因。然后,我们解释了由于组分与膜的结合而导致的构象限制和改变的化学环境如何促进核苷,寡核苷酸和肽的形成。我们通过讨论得出的低聚物,即使是短且随机的寡聚物,如何比其构造单元更多地增加了囊泡的稳定性和生长,以及这些囊泡之间的竞争如何导致更长的具有复杂功能的聚合物,从而得出结论。

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