首页|A combinatorially complete epistatic fitness landscape in an enzyme active site

A combinatorially complete epistatic fitness landscape in an enzyme active site

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By a News Reporter-Staff News Editor at Robotics & Machine Learning DailyNews – According to news reporting based on a preprint a bstract, our journalists obtained the followingquote sourced from biorxiv.org:“Protein engineering often targets binding pockets or active sites which are enr iched in epistasis–non-additive interactions between amino acid substitutions– and where the combined effects of multiplesingle substitutions are difficult to predict. Few existing sequence-fitness datasets capture epistasis at largescal e, especially for enzyme catalysis, limiting the development and assessment of m odel-guided enzymeengineering approaches.

BioengineeringBiotechnologyCombinato rialCombinatoricCyborgsEmerging TechnologiesEngineeringEnzymes and Coe nzymesMachine Learning

2024

Robotics & Machine Learning Daily News

Robotics & Machine Learning Daily News

ISSN:
年,卷(期):2024.(Jul.9)