Protein engineering has for decades been a powerful tool in biotechnology for generating vast numbers of useful enzymes for industrial applications. Today, protein engineering has a crucial role in advancing the emerging field of synthetic biology, where metabolic engineering efforts alone are insufficient to maximize the full potential of synthetic biology. This article reviews the advancements in protein engineering techniques for improving biocatalytic properties to optimize engineered pathways in host systems, which are instrumental to achieve high titer production of target molecules. We also discuss the specific means by which protein engineering has improved metabolic engineering efforts and provide our assessment on its potential to...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
In order to enable competitive manufacturing routes, most biocatalysts must be tailor-made for their...
Proteins found in nature have traditionally been the most frequently used biocatalysts to produce nu...
Through microbial engineering, biosynthesis has the potential to produce thousands of chemicals used...
Through microbial engineering, biosynthesis has the potential to produce thousands of chemicals used...
The use of biocatalysts, including enzymes and metabolically engineered cells, has attracted a great...
Recent emphasis on using biomass as raw materials for the production of fuels and chemicals instead ...
The combination of synthetic and systems biology is a powerful framework to study fundamental questi...
Sustainable biosynthesis of chemicals and efforts to create new molecules of interest require effici...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Biocatalysis has become a powerful tool for the synthesis of high-value compounds, particularly so i...
Metabolic engineering aims at modifying the endogenous metabolic network of an organism to harness i...
Biocatalytic processes are finding increasingly widespread application not only in aca-demia, but al...
AbstractA wide range of biological laboratories have adopted protein engineering techniques, alterin...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
In order to enable competitive manufacturing routes, most biocatalysts must be tailor-made for their...
Proteins found in nature have traditionally been the most frequently used biocatalysts to produce nu...
Through microbial engineering, biosynthesis has the potential to produce thousands of chemicals used...
Through microbial engineering, biosynthesis has the potential to produce thousands of chemicals used...
The use of biocatalysts, including enzymes and metabolically engineered cells, has attracted a great...
Recent emphasis on using biomass as raw materials for the production of fuels and chemicals instead ...
The combination of synthetic and systems biology is a powerful framework to study fundamental questi...
Sustainable biosynthesis of chemicals and efforts to create new molecules of interest require effici...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Biocatalysis has become a powerful tool for the synthesis of high-value compounds, particularly so i...
Metabolic engineering aims at modifying the endogenous metabolic network of an organism to harness i...
Biocatalytic processes are finding increasingly widespread application not only in aca-demia, but al...
AbstractA wide range of biological laboratories have adopted protein engineering techniques, alterin...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
In order to enable competitive manufacturing routes, most biocatalysts must be tailor-made for their...