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Intracellular complexities of acquiring a new enzymatic function revealed by mass-randomisation of active-site residues

Elife. 2020-11; 
Kelsi R Hall, Katherine J Robins, Elsie M Williams, Michelle H Rich, Mark J Calcott, Janine N Copp, Rory F Little, Ralf Schwörer, Gary B Evans, Wayne M Patrick, David F Ackerley
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摘要

Selection for a promiscuous enzyme activity provides substantial opportunity for competition between endogenous and newly-encountered substrates to influence the evolutionary trajectory, an aspect that is often overlooked in laboratory directed evolution studies. We selected the nitro/quinone reductase NfsA for chloramphenicol detoxification by simultaneously randomising eight active-site residues and interrogating ~250,000,000 reconfigured variants. Analysis of every possible intermediate of the two best chloramphenicol reductases revealed complex epistatic interactions. In both cases, improved chloramphenicol detoxification was only observed after an R225 substitution that largely eliminated activity with en... More

关键词

E. coli, biochemistry, chemical biology, directed evolution, enzyme evolution, enzyme promiscuity, evolutionary biology, nitroreductase, substrate competition