4.8 Article

RNA with iron(II) as a cofactor catalyses electron transfer

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NATURE CHEMISTRY
卷 5, 期 6, 页码 525-528

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NATURE PUBLISHING GROUP
DOI: 10.1038/NCHEM.1649

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  1. National Aeronautics and Space Administration Astrobiology Institute [NNA09DA78A]

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Mg2+ is essential for RNA folding and catalysis. However, for the first 1.5 billion years of life on Earth RNA inhabited an anoxic Earth with abundant and benign Fe2+. We hypothesize that Fe2+ was an RNA cofactor when iron was abundant, and was substantially replaced by Mg2+ during a period known as the 'great oxidation', brought on by photosynthesis. Here, we demonstrate that reversing this putative metal substitution in an anoxic environment, by removing Mg2+ and replacing it with Fe2+, expands the catalytic repertoire of RNA. Fe2+ can confer on some RNAs a previously uncharacterized ability to catalyse single-electron transfer. We propose that RNA function, in analogy with protein function, can be understood fully only in the context of association with a range of possible metals. The catalysis of electron transfer, requisite for metabolic activity, may have been attenuated in RNA by photosynthesis and the rise of O-2.

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