Evolution tunes functional sub-state interconversion to boost enzyme function
Salamonsen, D.; Pierangelini, A.; Buda, K.; Wang, D.; Kamp, M. W. v. d.; Tokuriki, N.; Bunzel, H. A.; Frohlich, C.
Show abstract
Enzymes do not operate as static structures, but continuously fluctuate between different conformations. Enzymes therefore dynamically sample conformations with varying catalytic activity. However, it remains largely unexplored whether evolution can exploit the conformational dynamics between sub-states to improve activity. Here, we dissect the evolutionary trajectory of the {beta}-lactamase OXA-48 toward improved ceftazidime hydrolysis. Evolution relieved conformational bottlenecks by promoting alternate functional sub-states, gradually shifting the rate-limiting step from substrate binding to sub-state interconversion, and finally to the chemical step. Reorganization of the conformational landscape enhanced OXA-48s ability to hydrolyze ceftazidime and introduced a trade-off in its native activity against meropenem. This trade-off stemmed from catalytic incompatibility between the native and the evolved sub-state populations. Our findings highlight the transitions between functional sub-states as a mechanism of natural selection, shaping functional divergence and offering new strategies for enzyme and antibiotic engineering.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Distal mutations enhance catalysis in designed enzymes by facilitating substrate binding and product release 97%
- Evolution of an enzyme conformational ensemble guides design of an efficient biocatalyst 96%
- Pervasive cooperative mutational effects on multiple catalytic enzyme traits emerge via long-range conformational dynamics 96%
Similar papers in this journal
- Activity regulation of a glutamine amidotransferase bienzyme complex by substrate-induced subunit interface expansion 96%
- Substrate Trapping in Polyketide Synthase Thioesterase Domains: Structural Basis for Macrolactone Formation 95%
- Structure and mechanistic analyses of the gating mechanism of elongating ketosynthases 95%
Similar papers in this journal
- Assessment of enzyme active site positioning and tests of catalytic mechanisms through X-ray-derived conformational ensembles 95%
- Sequence and Structural Determinants of Ligand-dependent Alternating Access of a MATE Transporter 95%
- Structural Basis for Iterative Methylation by a Cobalamin-dependent Radical S-Adenosylmethionine Enzyme in Cystobactamids Biosynthesis 95%
Similar papers in this journal
- Mechanism and evolutionary origins of Alanine-tail C-degron recognition by E3 ligases Pirh2 and CRL2-KLHDC10 94%
- Defining bottlenecks and opportunities for Lassa virus neutralization by structural profiling of vaccine-induced polyclonal antibody responses 93%
- Unveiling the Evolution of Antimicrobial Peptides in Gut Microbes via Foundation Model-Powered Framework 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.