[Chemical Potentials of Hydrothermal Systems and Formation of Coupled Modular Metabolic Pathways].

Biofizika Pub Date : 2015-07-01
S A Marakushev, O V Belonogova
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Abstract

According to Gibbs J.W. the number of independent components is the least number of those chemical constituents, by combining which the compositions of all possible phases in the system can be obtained, and at the first stages of development of the primary metabolism of the three-component system C-H-O different hydrocarbons and molecular hydrogen were used as an energy source for, it. In the Archean hydrothermal conditions under the action of the phosphorus chemical potential the C-H-O system was transformed into a four-component system C-H-O-P setting up a gluconeogenic system, which became the basis of power supply for a protometabolism, and formation of a new cycle of CO2 fixation (reductive pentose phosphate pathway). It is shown that parageneses (association) of certain substances permitted the modular constructions of the central metabolism of the system C-H-O-P and the formed modules appear in association with each other in certain physicochemical hydrothermal conditions. Malate, oxaloacetate, pyruvate and phosphoenolpyruvate exhibit a turnstile-like mechanism of switching reaction directions.

[热液系统的化学势和耦合模块化代谢途径的形成]。
根据Gibbs J.W.的说法,独立组分的数量是那些化学成分的最少数量,通过组合,可以得到系统中所有可能相的组成,并且在三组分系统C-H-O初级代谢发展的第一阶段,不同的碳氢化合物和分子氢被用作能量来源,它。太古宙热液条件下,在磷化学势的作用下,C-H-O- o体系转化为四组分体系C-H-O- p,建立了糖异生体系,成为原代谢供能的基础,形成了新的CO2固定循环(还原戊糖磷酸途径)。研究表明,某些物质的共生关系(结合)使得C-H-O-P系统的中心代谢的模块化结构成为可能,并且在一定的物理化学热液条件下,形成的模块相互关联。苹果酸盐、草酰乙酸盐、丙酮酸盐和磷酸烯醇丙酮酸盐表现出类似转门的反应方向转换机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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