Directed evolution of stereo‐ and regioselective enzymes as catalysts in organic chemistry and biotechnology constitutes a complementary alternative to selective transition‐metal catalysts and organocatalysts. Saturation mutagenesis at sites lining the binding pocket has emerged as a key method in this endeavor, but it suffers from amino acid bias, which reduces the quality of the library at the DNA level and, thus, at the protein level. Chemical solid‐phase gene synthesis for library construction offers a solution to this fundamental problem, and the Sloning and Twist platforms are two possible options. This concept article analyzes these approaches and compares them to traditional PCR‐based saturation mutagenesis; the superior commercial ...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
The emerging field of synthetic biology evolved from biological research much the same way synthetic...
Saturation mutagenesis (SM) constitutes a widely used technique in the directed evolution of selecti...
Saturation mutagenesis (SM) constitutes a widely used technique in the directed evolution of selecti...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Directed evolution of enzymes provides a prolific source of biocatalysts for asymmetric reactions in...
Directed evolution of enzymes provides a prolific source of biocatalysts for asymmetric reactions in...
Directed evolution has emerged as one of the most effective protein engineering methods in basic res...
Directed evolution of stereo-, regio-, and chemoselective enzymes has enriched the toolbox of synthe...
Directed evolution is a powerful approach to study the molecular basis of protein evolution and to e...
Directed evolution of stereo- and regioselective enzymes constitutes a prolific source of catalysts ...
Directed evolution of stereo- and regioselective enzymes constitutes a prolific source of catalysts ...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
The emerging field of synthetic biology evolved from biological research much the same way synthetic...
Saturation mutagenesis (SM) constitutes a widely used technique in the directed evolution of selecti...
Saturation mutagenesis (SM) constitutes a widely used technique in the directed evolution of selecti...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
Directed evolution of enzymes provides a prolific source of biocatalysts for asymmetric reactions in...
Directed evolution of enzymes provides a prolific source of biocatalysts for asymmetric reactions in...
Directed evolution has emerged as one of the most effective protein engineering methods in basic res...
Directed evolution of stereo-, regio-, and chemoselective enzymes has enriched the toolbox of synthe...
Directed evolution is a powerful approach to study the molecular basis of protein evolution and to e...
Directed evolution of stereo- and regioselective enzymes constitutes a prolific source of catalysts ...
Directed evolution of stereo- and regioselective enzymes constitutes a prolific source of catalysts ...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
Enzymes have been used for a long time as catalysts in the asymmetric synthesis of chiral intermedia...
The emerging field of synthetic biology evolved from biological research much the same way synthetic...