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一种还原性化学自养生物的中间代谢分析。

Analysis of the intermediary metabolism of a reductive chemoautotroph.

作者信息

Srinivasan Vijayasarathy, Morowitz Harold J

机构信息

Krasnow Institute for Advanced Studies, George Mason University, Fairfax, Virginia 22030, USA.

出版信息

Biol Bull. 2009 Dec;217(3):222-32. doi: 10.1086/BBLv217n3p222.

DOI:10.1086/BBLv217n3p222
PMID:20040747
Abstract

All extant life forms depend, directly or indirectly, on the autotrophic fixation of the dominant elements of the biosphere: carbon, hydrogen, nitrogen, oxygen, phosphorus, and sulfur. We have earlier presented the canonical network of reactions that constitute the anabolism of a reductive chemoautotroph. Separating this network into subgraphs reveals several empirical generalizations: (1) acetate (acetyl-CoA), pyruvate, phosphoenol pyruvate, oxaloacetate, and 2-oxoglutarate serve as universal starting points for all pathways leading to the universal building blocks-20 amino acids and 4 ribonucleotide triphosphates; (2) all pathways are anabolic; (3) all reactions operate by complete utilization of outputs with no molecules left behind as waste, ensuring conservation of information; (4) the core metabolome of 120 compounds is acidic, consisting of compounds containing phosphoric or carboxylic acid or both; and (5) the core network is both brittle-vulnerable to a single break-and robust-having persisted for 4 billion years. Preliminary analysis of the chemical reactions and resultant structures reveals (a) a sparseness among possible molecular structures; (b) subdomains in the network; and (c) restriction of anabolism to a small set of rudimentary organic reactions with limited diversity in chemical mechanisms. These generalizations have implications for biogenesis and trophic ecology.

摘要

所有现存的生命形式都直接或间接地依赖于生物圈中主要元素(碳、氢、氮、氧、磷和硫)的自养固定。我们之前展示了构成还原性化学自养生物合成代谢的典型反应网络。将这个网络分解为子图可以揭示几个经验性的概括:(1)乙酸盐(乙酰辅酶A)、丙酮酸、磷酸烯醇丙酮酸、草酰乙酸和2-氧代戊二酸作为通向通用构件(20种氨基酸和4种核糖核苷酸三磷酸)的所有途径的通用起始点;(2)所有途径都是合成代谢的;(3)所有反应通过完全利用产物进行,没有分子作为废物残留,确保了信息的守恒;(4)由120种化合物组成的核心代谢组是酸性的,由含有磷酸或羧酸或两者的化合物组成;(5)核心网络既脆弱——易受单次破坏——又稳健——已经持续了40亿年。对化学反应和所得结构的初步分析揭示了:(a)可能的分子结构之间的稀疏性;(b)网络中的子域;以及(c)合成代谢被限制在一小部分化学机制多样性有限的基本有机反应中。这些概括对生物发生和营养生态学具有启示意义。

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