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From the selfish gene to selfish metabolism: Revisiting the central dogma

机译:从自私的基因到自私的新陈代谢:重温中心教条

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The standard representation of the Central Dogma (CD) of Molecular Biology conspicuously ignores metabolism. However, both the metabolites and the biochemical fluxes behind any biological phenomenon are encrypted in the DNA sequence. Metabolism constrains and even changes the information flow when the DNA-encoded instructions conflict with the homeostasis of the biochemical network. Inspection of adaptive virulence programs and emergence of xenobiotic-biodegradation pathways in environmental bacteria suggest that their main evolutionary drive is the expansion of their metabolic networks towards new chemical landscapes rather than perpetuation and spreading of their DNA sequences. Faulty enzymatic reactions on suboptimal substrates often produce reactive oxygen species (ROS), a process that fosters DNA diversification and ultimately couples catabolism of the new chemicals to growth. All this calls for a revision of the CD in which metabolism (rather than DNA) has the leading role.
机译:中枢信条(CD)的分子生物学的标准表示法明显地忽略了新陈代谢。但是,任何生物学现象背后的代谢物和生化通量都在DNA序列中加密。当DNA编码的指令与生化网络的体内平衡发生冲突时,代谢会限制甚至改变信息流。对适应性毒力程序的检查和环境细菌中异种生物降解途径的出现表明,它们的主要进化驱动力是其代谢网络向新化学领域的扩展,而不是其DNA序列的持久和扩散。次优基质上的错误酶促反应通常会产生活性氧(ROS),该过程会促进DNA多样化,最终使新化学物质的分解代谢与生长耦合。所有这些都要求修订CD,在CD中新陈代谢(而不是DNA)起主导作用。

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