The identification of carbon dioxide mediated protein post-translational modifications.

Linthwaite, Victoria L; Janus, Joanna M; Brown, Adrian P; Wong-Pascua, David; O'Donoghue, AnnMarie C; Porter, Andrew; Treumann, Achim; Hodgson, David R W et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Carbon dioxide is vital to the chemistry of life processes including metabolism, cellular homoeostasis, and pathogenesis. CO<sub>2</sub> is generally unreactive but can combine with neutral amines to form carbamates on proteins under physiological conditions. The most widely known examples of this are CO<sub>2</sub> regulation of ribulose 1,5-bisphosphate carboxylase/oxygenase and haemoglobin. However, the systematic identification of CO<sub>2</sub>-binding sites on proteins formed through carbamylation has not been possible due to the ready reversibility of carbamate formation. Here we demonstrate a methodology to identify protein carbamates using triethyloxonium tetrafluoroborate to covalently trap CO<sub>2</sub>, allowing for downstream proteomic analysis. This report describes the systematic identification of carbamates in a physiologically relevant environment. We demonstrate the identification of carbamylated proteins and the general principle that CO<sub>2</sub> can impact protein biochemistry through carbamate formation. The ability to identify protein carbamates will significantly advance our understanding of cellular CO<sub>2</sub> interactions.

Medical subject headings