Compared to the biological world's rich chemistry for functionalizing carbon, enzymatic transformations of the heavier homologue silicon are rare. We report that a wild‐type cytochrome P450 monooxygenase (P450_(BM3) from Bacillus megaterium, CYP102A1) has promiscuous activity for oxidation of hydrosilanes to give silanols. Directed evolution was applied to enhance this non‐native activity and create a highly efficient catalyst for selective silane oxidation under mild conditions with oxygen as the terminal oxidant. The evolved enzyme leaves C−H bonds present in the silane substrates untouched, and this biotransformation does not lead to disiloxane formation, a common problem in silanol syntheses. Computational studies reveal that catalysis ...
The intricate siliceous architectures of diatom species have inspired our exploration of biosilicifi...
Biotransformations make use of biological systems to catalyze or promote specific chemical reactions...
AbstractCytochromes P450 can catalyse hydroxylation reactions that are of considerable potential syn...
Compared to the biological world's rich chemistry for functionalizing carbon, enzymatic transformati...
Directed evolution of enzymes can reveal activities that do not occur in the natural world. While mo...
A peroxygenase-catalysed hydroxylation of organosilanes is reported. The recombinant peroxygenase fr...
Efficient catalysts for selective oxidation of C–H bonds using atmospheric oxygen are highly desirab...
From MDPI via Jisc Publications RouterHistory: accepted 2021-07-20, pub-electronic 2021-07-22Publica...
Organic compounds containing silicon are important for a number of applications, from polymers to se...
The intricate siliceous architectures of diatom species have inspired our exploration of biosilicifi...
P450pyr monooxygenase from Sphingomonas sp. HXN-200 catalysed the regio- and stereoselective hydroxy...
In recent years reusable and highly active metal-nanoparticle catalysts were developed for the selec...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
H2O2 is a relatively 'green' oxidant because its by-products are only H2O. In recent years, an incre...
The intricate siliceous architectures of diatom species have inspired our exploration of biosilicifi...
Biotransformations make use of biological systems to catalyze or promote specific chemical reactions...
AbstractCytochromes P450 can catalyse hydroxylation reactions that are of considerable potential syn...
Compared to the biological world's rich chemistry for functionalizing carbon, enzymatic transformati...
Directed evolution of enzymes can reveal activities that do not occur in the natural world. While mo...
A peroxygenase-catalysed hydroxylation of organosilanes is reported. The recombinant peroxygenase fr...
Efficient catalysts for selective oxidation of C–H bonds using atmospheric oxygen are highly desirab...
From MDPI via Jisc Publications RouterHistory: accepted 2021-07-20, pub-electronic 2021-07-22Publica...
Organic compounds containing silicon are important for a number of applications, from polymers to se...
The intricate siliceous architectures of diatom species have inspired our exploration of biosilicifi...
P450pyr monooxygenase from Sphingomonas sp. HXN-200 catalysed the regio- and stereoselective hydroxy...
In recent years reusable and highly active metal-nanoparticle catalysts were developed for the selec...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
H2O2 is a relatively 'green' oxidant because its by-products are only H2O. In recent years, an incre...
The intricate siliceous architectures of diatom species have inspired our exploration of biosilicifi...
Biotransformations make use of biological systems to catalyze or promote specific chemical reactions...
AbstractCytochromes P450 can catalyse hydroxylation reactions that are of considerable potential syn...