Enzymes have been used in organic chemistry and biotechnology for 100 years, but their widespread application has been prevented by a number of limitations, including the often- obser ved limited thermostability, narrow substrate scope, and low or wrong stereo- and/or regioselectivity. Directed evolution provides a means to address and generally solve these problems, especially since recent methodology development has made this protein engineering method faster, more efficient, and more reliable than in the past. This Darwinian approach to asymmetric catalysis has led to a number of industrial applications. Metabolic-pathway engineering, mutasynthesis, and fermentation are likewise enzyme-based techniques that enrich chemistry. This account ...
Enzymes have enormous potential for reducing energy requirements and environmental problems in the c...
Directed evolution is a method to tune the properties of enzymes for use in organic chemistry and bi...
The use of enzymes as catalysts for the preparation of novel organic molecules is becoming more wide...
Enzymes have been used in organic chemistry and biotechnology for 100 years, but their widespread ap...
Enzymes as catalysts in synthetic organic chemistry gained importance in the latter half of the 20th...
In order to enable competitive manufacturing routes, most biocatalysts must be tailor-made for their...
Developments in biocatalysis have been largely fuelled by consumer demands for new products, industr...
Abstract The engineering of enzymes with altered activity, specificity and stability, using directed...
The rapid expansion of the field of biotechnology during the past decade has resulted in an increase...
Present state of research on expanding enzyme catalysis beyond nature For more than twenty years thi...
Enzymes are used in biocatalytic processes for the efficient and sustainable production of pharmaceu...
Directed evolution is a method to tune the properties of enzymes for use in organic chemistry and bi...
There are near-to-infinite combinations of possibilities for evolution to happen within nature, maki...
Enzymes are biocatalysts evolved in nature to achieve the speed and coordination of nearly all the c...
This review outlines recent developments in protein engineering of stereo- and regioselective enzyme...
Enzymes have enormous potential for reducing energy requirements and environmental problems in the c...
Directed evolution is a method to tune the properties of enzymes for use in organic chemistry and bi...
The use of enzymes as catalysts for the preparation of novel organic molecules is becoming more wide...
Enzymes have been used in organic chemistry and biotechnology for 100 years, but their widespread ap...
Enzymes as catalysts in synthetic organic chemistry gained importance in the latter half of the 20th...
In order to enable competitive manufacturing routes, most biocatalysts must be tailor-made for their...
Developments in biocatalysis have been largely fuelled by consumer demands for new products, industr...
Abstract The engineering of enzymes with altered activity, specificity and stability, using directed...
The rapid expansion of the field of biotechnology during the past decade has resulted in an increase...
Present state of research on expanding enzyme catalysis beyond nature For more than twenty years thi...
Enzymes are used in biocatalytic processes for the efficient and sustainable production of pharmaceu...
Directed evolution is a method to tune the properties of enzymes for use in organic chemistry and bi...
There are near-to-infinite combinations of possibilities for evolution to happen within nature, maki...
Enzymes are biocatalysts evolved in nature to achieve the speed and coordination of nearly all the c...
This review outlines recent developments in protein engineering of stereo- and regioselective enzyme...
Enzymes have enormous potential for reducing energy requirements and environmental problems in the c...
Directed evolution is a method to tune the properties of enzymes for use in organic chemistry and bi...
The use of enzymes as catalysts for the preparation of novel organic molecules is becoming more wide...