To reduce experimental effort associated with directed protein evolution and to explore the sequence space encoded by mutating multiple positions simultaneously, we incorporate machine learning into the directed evolution workflow. Combinatorial sequence space can be quite expensive to sample experimentally, but machine-learning models trained on tested variants provide a fast method for testing sequence space computationally. We validated this approach on a large published empirical fitness landscape for human GB1 binding protein, demonstrating that machine learning-guided directed evolution finds variants with higher fitness than those found by other directed evolution approaches. We then provide an example application in evolving an enzy...
Abstract The engineering of enzymes with altered activity, specificity and stability, using directed...
Biocatalysis is based on the application of natural catalysts for new purposes, for which the enzyme...
Directed Evolution is one of the most powerful tools for protein engineering, which functions throug...
The combinatorial composition of proteins has triggered the application of machine learning in enzym...
Directed evolution has enabled the adaptation of natural protein sequences for an endless variety of...
The emergence of machine learning methods for expediting directed evolution via protein fitness pred...
Protein engineering through machine-learning-guided directed evolution enables the optimization of p...
Protein engineering through machine-learning-guided directed evolution enables the optimization of p...
Due to screening limitations, in directed evolution (DE) of proteins it is rarely feasible to fully ...
Directed evolution (DE) creates diversity in subsequent rounds of mutagenesis in the quest of increa...
Directed evolution has proven a successful strategy for protein engineering. To accelerate the disco...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Protein engineering can be performed by combinatorial techniques (directed evolution) and data-drive...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Abstract The engineering of enzymes with altered activity, specificity and stability, using directed...
Biocatalysis is based on the application of natural catalysts for new purposes, for which the enzyme...
Directed Evolution is one of the most powerful tools for protein engineering, which functions throug...
The combinatorial composition of proteins has triggered the application of machine learning in enzym...
Directed evolution has enabled the adaptation of natural protein sequences for an endless variety of...
The emergence of machine learning methods for expediting directed evolution via protein fitness pred...
Protein engineering through machine-learning-guided directed evolution enables the optimization of p...
Protein engineering through machine-learning-guided directed evolution enables the optimization of p...
Due to screening limitations, in directed evolution (DE) of proteins it is rarely feasible to fully ...
Directed evolution (DE) creates diversity in subsequent rounds of mutagenesis in the quest of increa...
Directed evolution has proven a successful strategy for protein engineering. To accelerate the disco...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Protein engineering can be performed by combinatorial techniques (directed evolution) and data-drive...
Directed evolution is an important research activity in synthetic biology and biotechnology. Numerou...
Abstract The engineering of enzymes with altered activity, specificity and stability, using directed...
Biocatalysis is based on the application of natural catalysts for new purposes, for which the enzyme...
Directed Evolution is one of the most powerful tools for protein engineering, which functions throug...