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The ineluctable requirement for the trans-iron elements molybdenum and/or tungsten in the origin of life.


ABSTRACT: An evolutionary tree of key enzymes from the Complex-Iron-Sulfur-Molybdoenzyme (CISM) superfamily distinguishes "ancient" members, i.e. enzymes present already in the last universal common ancestor (LUCA) of prokaryotes, from more recently evolved subfamilies. The majority of the presented subfamilies and, as a consequence, the Molybdo-enzyme superfamily as a whole, appear to have existed in LUCA. The results are discussed with respect to the nature of bioenergetic substrates available to early life and to problems arising from the low solubility of molybdenum under conditions of the primordial Earth.

SUBMITTER: Schoepp-Cothenet B 

PROVIDER: S-EPMC3278043 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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The ineluctable requirement for the trans-iron elements molybdenum and/or tungsten in the origin of life.

Schoepp-Cothenet Barbara B   van Lis Robert R   Philippot Pascal P   Magalon Axel A   Russell Michael J MJ   Nitschke Wolfgang W  

Scientific reports 20120213


An evolutionary tree of key enzymes from the Complex-Iron-Sulfur-Molybdoenzyme (CISM) superfamily distinguishes "ancient" members, i.e. enzymes present already in the last universal common ancestor (LUCA) of prokaryotes, from more recently evolved subfamilies. The majority of the presented subfamilies and, as a consequence, the Molybdo-enzyme superfamily as a whole, appear to have existed in LUCA. The results are discussed with respect to the nature of bioenergetic substrates available to early  ...[more]

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