This brief provides a broad overview of protein-engineering research, offering a glimpse of the most common experimental methods. It also presents various computational programs with applications that are widely used in directed evolution, computational and de novo protein design. Further, it sheds light on the advantages and pitfalls of existing methodologies and future perspectives of protein engineering techniques
Peptides and proteins have attracted scientific and technological interest largely because of their...
Synthetic protein switches with tailored response functions are finding increasing applications as t...
AbstractA wide range of biological laboratories have adopted protein engineering techniques, alterin...
A broad range of topics are covered by providing a solid foundation in protein engineering and suppl...
Protein engineering, the process by which novel proteins with desired properties are developed, has ...
Protein engineering is the novel field which has wide applications from pharmaceutics, industry, c...
<div>A 2-hour lecture summarising key principles, methods and applications of protein engineering te...
The goal of a protein engineer is to adjust a protein to a specified new function. This is exactly w...
Protein engineering is the novel field which has wide applications from pharmaceutics, industry, com...
Design of proteins has far-reaching potentials in diverse areas that span repurposing of the protein...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Biocomplexity—the study of complex structures and behaviours that take place in biological systems—g...
The design and production of novel peptides and proteins occupy pivotal positions in science and tec...
A 'protein design cycle', involving cycling between theory and experiment, has led to recent advance...
Computational and theoretical methods are advancing protein design as a means to create and investig...
Peptides and proteins have attracted scientific and technological interest largely because of their...
Synthetic protein switches with tailored response functions are finding increasing applications as t...
AbstractA wide range of biological laboratories have adopted protein engineering techniques, alterin...
A broad range of topics are covered by providing a solid foundation in protein engineering and suppl...
Protein engineering, the process by which novel proteins with desired properties are developed, has ...
Protein engineering is the novel field which has wide applications from pharmaceutics, industry, c...
<div>A 2-hour lecture summarising key principles, methods and applications of protein engineering te...
The goal of a protein engineer is to adjust a protein to a specified new function. This is exactly w...
Protein engineering is the novel field which has wide applications from pharmaceutics, industry, com...
Design of proteins has far-reaching potentials in diverse areas that span repurposing of the protein...
In the past 20 years protein engineering has been used for the production of proteins mostly for bio...
Biocomplexity—the study of complex structures and behaviours that take place in biological systems—g...
The design and production of novel peptides and proteins occupy pivotal positions in science and tec...
A 'protein design cycle', involving cycling between theory and experiment, has led to recent advance...
Computational and theoretical methods are advancing protein design as a means to create and investig...
Peptides and proteins have attracted scientific and technological interest largely because of their...
Synthetic protein switches with tailored response functions are finding increasing applications as t...
AbstractA wide range of biological laboratories have adopted protein engineering techniques, alterin...