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基于量子力学的“脂肪酸世界”中的生命的出现和演化。

The emergence and evolution of life in a "fatty acid world" based on quantum mechanics.

机构信息

Vilnius University Institute of Theoretical Physics and Astronomy, A. Gostauto street 12, Vilnius, Lithuania.

出版信息

Orig Life Evol Biosph. 2011 Feb;41(1):51-71. doi: 10.1007/s11084-010-9211-4. Epub 2010 May 5.

Abstract

Quantum mechanical based electron correlation interactions among molecules are the source of the weak hydrogen and Van der Waals bonds that are critical to the self-assembly of artificial fatty acid micelles. Life on Earth or elsewhere could have emerged in the form of self-reproducing photoactive fatty acid micelles, which gradually evolved into nucleotide-containing micelles due to the enhanced ability of nucleotide-coupled sensitizer molecules to absorb visible light. Comparison of the calculated absorption spectra of micelles with and without nucleotides confirmed this idea and supports the idea of the emergence and evolution of nucleotides in minimal cells of a so-called Fatty Acid World. Furthermore, the nucleotide-caused wavelength shift and broadening of the absorption pattern potentially gives these molecules an additional valuable role, other than a purely genetic one in the early stages of the development of life. From the information theory point of view, the nucleotide sequences in such micelles carry positional information providing better electron transport along the nucleotide-sensitizer chain and, in addition, providing complimentary copies of that information for the next generation. Nucleotide sequences, which in the first period of evolution of fatty acid molecules were useful just for better absorbance of the light in the longer wavelength region, later in the PNA or RNA World, took on the role of genetic information storage.

摘要

基于量子力学的分子间电子相关相互作用是弱氢键和范德华键的来源,这些键对于人工脂肪酸胶束的自组装至关重要。地球上或其他地方的生命可能是以自我复制的光活性脂肪酸胶束的形式出现的,由于核苷酸偶联敏化剂分子吸收可见光的能力增强,这些胶束逐渐演变成含有核苷酸的胶束。比较含有和不含有核苷酸的胶束的计算吸收光谱证实了这一观点,并支持了在所谓的脂肪酸世界的最小细胞中核苷酸的出现和进化的观点。此外,核苷酸引起的吸收模式的波长位移和展宽可能使这些分子具有除了在生命发展的早期阶段纯粹的遗传作用之外的额外有价值的作用。从信息论的角度来看,这些胶束中的核苷酸序列携带位置信息,为沿着核苷酸敏化剂链更好地传输电子提供了更好的电子传输,并且为下一代提供了该信息的互补副本。在脂肪酸分子的第一个进化时期,核苷酸序列仅对更长波长区域的光更好地吸收有用,而在后来的 PNA 或 RNA 世界中,核苷酸序列承担了遗传信息存储的角色。

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