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光子耗散作为RNA和DNA中信息编码的起源

Photon Dissipation as the Origin of Information Encoding in RNA and DNA.

作者信息

Morales Julián Mejía, Michaelian Karo

机构信息

Postgrado in Physical Sciences, Instituto de Física, Universidad Nacional Autónoma de México, Cto. de la Investigación Científica, Cuidad Universitaria, Mexico City C.P. 04510, Mexico.

Department of Nuclear Physics and Application of Radiation, Instituto de Física, Universidad Nacional Autónoma de México, Cto. de la Investigación Científica, Cuidad Universitaria, Mexico City C.P. 04510, Mexico.

出版信息

Entropy (Basel). 2020 Aug 27;22(9):940. doi: 10.3390/e22090940.

Abstract

Ultraviolet light incident on organic material can initiate its spontaneous dissipative structuring into chromophores which can catalyze their own replication. This may have been the case for one of the most ancient of all chromophores dissipating the Archean UVC photon flux, the nucleic acids. Oligos of nucleic acids with affinity to particular amino acids which foment UVC photon dissipation would most efficiently catalyze their own reproduction and thus would have been selected through non-equilibrium thermodynamic imperatives which favor dissipation. Indeed, we show here that those amino acids with characteristics most relevant to fomenting UVC photon dissipation are precisely those with greatest chemical affinity to their codons or anticodons. This could provide a thermodynamic basis for the specificity in the amino acid-nucleic acid interaction and an explanation for the accumulation of information in nucleic acids since this information is relevant to the optimization of dissipation of the externally imposed thermodynamic potentials. The accumulation of information in this manner provides a link between evolution and entropy production.

摘要

入射到有机材料上的紫外线可引发其自发耗散形成发色团,这些发色团能够催化自身的复制。对于所有发色团中最古老的一种——核酸,它能消散太古宙的UVC光子通量,情况可能就是如此。与特定氨基酸具有亲和力且能促进UVC光子消散的核酸寡聚物,将最有效地催化自身的复制,因此会通过有利于耗散的非平衡热力学法则被选择出来。事实上,我们在此表明,那些与促进UVC光子消散最相关的氨基酸,恰恰是与其密码子或反密码子具有最大化学亲和力的氨基酸。这可以为氨基酸 - 核酸相互作用的特异性提供热力学基础,并解释核酸中信息的积累,因为这些信息与外部施加的热力学势的耗散优化相关。以这种方式积累的信息在进化和熵产生之间建立了联系。

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