Synthesis and breakdown of universal metabolic precursors promoted by iron.

Muchowska, Kamila B; Varma, Sreejith J; Moran, Joseph · Nature · 2019

basic_science · Level V

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Abstract

Life builds its molecules from carbon dioxide (CO<sub>2</sub>) and breaks them back down again through the intermediacy of just five metabolites, which are the universal hubs of biochemistry<sup>1</sup>. However, it is unclear how core biological metabolism began and why it uses the intermediates, reactions and pathways that it does. Here we describe a purely chemical reaction network promoted by ferrous iron, in which aqueous pyruvate and glyoxylate-two products of abiotic CO<sub>2</sub> reduction<sup>2-4</sup>-build up 9 of the 11 intermediates of the biological Krebs (or tricarboxylic acid) cycle, including all 5 universal metabolic precursors. The intermediates simultaneously break down to CO<sub>2</sub> in a life-like regime that resembles biological anabolism and catabolism<sup>5</sup>. Adding hydroxylamine<sup>6-8</sup> and metallic iron into the system produces four biological amino acids in a manner that parallels biosynthesis. The observed network overlaps substantially with the Krebs and glyoxylate cycles<sup>9,10</sup>, and may represent a prebiotic precursor to these core metabolic pathways.

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