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化学系统、化学连续性与生命的起源

Chemical systems, chemical contiguity and the emergence of life.

作者信息

Kee Terrence P, Monnard Pierre-Alain

机构信息

School of Chemistry, University of Leeds, Leeds LS2 9JT, UK.

Institute of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.

出版信息

Beilstein J Org Chem. 2017 Aug 7;13:1551-1563. doi: 10.3762/bjoc.13.155. eCollection 2017.

Abstract

Charting the emergence of living cells from inanimate matter remains an intensely challenging scientific problem. The complexity of the biochemical machinery of cells with its exquisite intricacies hints at cells being the product of a long evolutionary process. Research on the emergence of life has long been focusing on specific, well-defined problems related to one aspect of cellular make-up, such as the formation of membranes or the build-up of information/catalytic apparatus. This approach is being gradually replaced by a more "systemic" approach that privileges processes inherent to complex chemical systems over specific isolated functional apparatuses. We will summarize the recent advances in system chemistry and show that chemical systems in the geochemical context imply a form of chemical contiguity in the syntheses of the various molecules that precede modern biomolecules.

摘要

描绘无生命物质中活细胞的出现仍然是一个极具挑战性的科学问题。细胞生化机制的复杂性及其精妙的错综复杂暗示着细胞是漫长进化过程的产物。长期以来,关于生命起源的研究一直聚焦于与细胞组成某一方面相关的特定、明确的问题,比如膜的形成或信息/催化装置的构建。这种方法正逐渐被一种更“系统”的方法所取代,该方法更看重复杂化学系统固有的过程,而非特定孤立的功能装置。我们将总结系统化学的最新进展,并表明地球化学背景下的化学系统意味着在现代生物分子之前各种分子合成过程中的一种化学连续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f25/5564265/227024c92895/Beilstein_J_Org_Chem-13-1551-g002.jpg

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