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Activated Acetic Acid by Carbon Fixation on (Fe,Ni)S Under Primordial Conditions

SciencePublished 11 April 1997
Claudia Huber, Günter Wächtershäuser
Citations718
SJR quartileQ1
SJR score10.42
SNIP6.62

TL;DR

In experiments modeling the reactions of the reductive acetyl-coenzyme A pathway at hydrothermal temperatures, it was found that an aqueous slurry of coprecipitated NiS and FeS converted CO and CH3SH into the activated thioester CH3-CO-SCH3, which hydrolyzed to acetic acid.

Abstract

In experiments modeling the reactions of the reductive acetyl-coenzyme A pathway at hydrothermal temperatures, it was found that an aqueous slurry of coprecipitated NiS and FeS converted CO and CH3SH into the activated thioester CH3-CO-SCH3, which hydrolyzed to acetic acid. In the presence of aniline, acetanilide was formed. When NiS-FeS was modified with catalytic amounts of selenium, acetic acid and CH3SH were formed from CO and H2S alone. The reaction can be considered as the primordial initiation reaction for a chemoautotrophic origin of life.

Keywords

Biochemistry, Genetics and Molecular BiologyPhysics and Astronomy