Proceedings of the Royal Society B Biological Sciences · 2020 · 194 citations · 62 references
Modern cells contain metabolic networks that form autocatalytic sets, yet how the first self‑sustaining metabolic networks arose remains an open question, and evidence for autocatalytic sets as intermediates in prebiotic evolution is lacking. The study aims to identify reflexively autocatalytic food‑generated networks (RAFs) embedded within microbial metabolism. RAFs are defined as self‑sustaining networks that collectively catalyse all their reactions. RAFs in ancient autotrophs produce acetyl‑CoA, amino acids, and bases only with small‑molecule catalysts, suggesting they capture conserved biochemical attributes, support an autotrophic origin of metabolism, and reveal intermediate stages linking early Earth chemistry to life.
Modern cells embody metabolic networks containing thousands of elements and form autocatalytic sets of molecules that produce copies of themselves. How the first self-sustaining metabolic networks arose at life's origin is a major open question. Autocatalytic sets smaller than metabolic networks were proposed as transitory intermediates at the origin of life, but evidence for their role in prebiotic evolution is lacking. Here, we identify reflexively autocatalytic food-generated networks (RAFs)—self-sustaining networks that collectively catalyse all their reactions—embedded within microbial metabolism. RAFs in the metabolism of ancient anaerobic autotrophs that live from H 2 and CO 2 provided with small-molecule catalysts generate acetyl-CoA as well as amino acids and bases, the monomeric components of protein and RNA, but amino acids and bases without organic catalysts do not generate metabolic RAFs. This suggests that RAFs identify attributes of biochemical origins conserved in metabolic networks. RAFs are consistent with an autotrophic origin of metabolism and furthermore indicate that autocatalytic chemical networks preceded proteins and RNA in evolution. RAFs uncover intermediate stages in the emergence of metabolic networks, narrowing the gaps between early Earth chemistry and life.
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The physiology and habitat of the last universal common ancestor
Madeline C. Weiss, Filipa L. Sousa, Natalia Mrnjavac et al. · Nature Microbiology · 2016 · 1K citations · Full text
Autocatalytic sets of proteins
Stuart Kauffman · Journal of Theoretical Biology · 1986 · 742 citations