Heme enzymes are some of the most versatile catalysts in nature. In recent years it has been found that they can also catalyze reactions for which there are no equivalents in nature. This development has been driven by the abiological catalytic reactivity reported for bio-inspired and biomimetic iron porphyrin complexes. This review focuss es on heme enzymes for catalysis of cyclopropanation reactions. The two most important approaches used to create enzymes for cyclopropanation are repurposing of heme enzymes and the various strategies used to improve these enzymes such as mutagenesis and heme replacement, and artificial heme enzymes. These strategies are introduced and compared. Moreover, lessons learned with regard to mechanism and desig...
Heme enzymes have the potential to be widely used as biocatalysts due to their capability to perform...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Iron porphyrin methoxy complexes, of the general formula [Fe(porphyrin)(OCH3)], are able to catalyze...
Heme enzymes are some of the most versatile catalysts in nature. In recent years it has been found t...
Altres ajuts: PhD grant from the Generalitat de CatalunyaAn artificial heme enzyme was created throu...
Cyclopropyl motifs are present in a variety of compounds important to pharmaceutical, agrochemical, ...
Recent work has shown that engineered variants of cytochrome P450_(BM3) (CYP102A1) efficiently catal...
The repurposing of hemoproteins for non-natural carbene transfer activities has generated enzymes fo...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Enzymes have evolved to catalyze a range of biochemical transformations with high efficiencies and u...
Following the recent discovery that heme proteins can catalyze the cyclopropanation of styrenyl olef...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Synthetic biology promises to transform organic synthesis by enabling artificial catalysis in living...
Heme proteins, in particular cytochromes P450, have been extensively used in biocatalytic applicatio...
Heme enzymes have the potential to be widely used as biocatalysts due to their capability to perform...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Iron porphyrin methoxy complexes, of the general formula [Fe(porphyrin)(OCH3)], are able to catalyze...
Heme enzymes are some of the most versatile catalysts in nature. In recent years it has been found t...
Altres ajuts: PhD grant from the Generalitat de CatalunyaAn artificial heme enzyme was created throu...
Cyclopropyl motifs are present in a variety of compounds important to pharmaceutical, agrochemical, ...
Recent work has shown that engineered variants of cytochrome P450_(BM3) (CYP102A1) efficiently catal...
The repurposing of hemoproteins for non-natural carbene transfer activities has generated enzymes fo...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Enzymes have evolved to catalyze a range of biochemical transformations with high efficiencies and u...
Following the recent discovery that heme proteins can catalyze the cyclopropanation of styrenyl olef...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Synthetic biology promises to transform organic synthesis by enabling artificial catalysis in living...
Heme proteins, in particular cytochromes P450, have been extensively used in biocatalytic applicatio...
Heme enzymes have the potential to be widely used as biocatalysts due to their capability to perform...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Iron porphyrin methoxy complexes, of the general formula [Fe(porphyrin)(OCH3)], are able to catalyze...