Cobalamin riboswitches are broadly sensitive to corrinoid cofactors to enable an efficient gene regulatory strategy

bioRxiv(2022)

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摘要
In bacteria, many essential metabolic processes are controlled by riboswitches, gene regulatory RNAs that directly bind and detect metabolites. Highly specific effector binding enables riboswitches to respond to a single biologically relevant metabolite. Cobalamin riboswitches are a potential exception because over a dozen chemically similar but functionally distinct cobalamin variants (corrinoid cofactors) exist in nature. Here, we measured cobalamin riboswitch activity in vivo using a Bacillus subtilis fluorescent reporter system and found that among 38 tested riboswitches, a subset responded to corrinoids promiscuously, while others were semi-selective. Analyses of chimeric riboswitches and structural models indicate that, unlike other riboswitch classes, cobalamin riboswitches indirectly differentiate among corrinoids by sensing differences in their structural conformation. This regulatory strategy aligns riboswitch-corrinoid specificity with cellular corrinoid requirements in a B. subtilis model. Thus, bacteria can employ broadly sensitive riboswitches to cope with the chemical diversity of essential metabolites. ### Competing Interest Statement The authors have declared no competing interest.
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关键词
Bacillus subtilis,RNA biology,cobalamin,coenzyme,cofactor,corrinoid,gene regulation,metabolism,physiology,riboswitch,vitamin B-12
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