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2017, RSC Metallobiology Series,x2045-547X, ISBN 9781782628859
Web Resource
Bioorganic & medicinal chemistry, ISSN 0968-0896, 10/2014, Volume 22, Issue 20, p. 5657
Journal Article
Advanced synthesis & catalysis, ISSN 1615-4150, 06/2017, Volume 359, Issue 12, pp. 2076 - 2089
Engineered myoglobins have recently emerged as promising scaffolds for catalyzing carbene‐mediated transformations. In this work, we investigated the effect of... 
protein engineering | C–H carbene insertion | biocatalysis | carbene transfer | myoglobin | artificial metalloenzymes | Myoglobin | Catalysis | Catalysts | Metalloenzymes | Cobalt | Cyclopropane compounds | Alpha iron | Transition metals | Ruthenium | Insertion | Catalytic activity | Iron | Stereoselectivity | Valence | Rhodium | Oxidation | Iridium | Scaffolds | Porphyrins | Manganese
Journal Article
Angewandte Chemie, ISSN 1521-3757, 08/2019, Volume 131, Issue 39, pp. 14092 - 14098
The selective functionalization of one C−H bond over others in nearly identical steric and electronic environments can facilitate the construction of complex... 
Artifizielle Metalloenzymes | Porphyrine | P450-Enzyme | C-H-Funktionalisierung | Biokatalyse | Metalloenzymes | Bonds | Porphyrins | Catalysts | Hydrogen bonds | Chemical reactions | Selectivity | Iridium | Isomers | Carbenes | Mutants
Journal Article
Advanced synthesis & catalysis, ISSN 1615-4150, 05/2015, Volume 357, Issue 8, pp. 1567 - 1586
Artificial metalloenzymes combine the excellent selective recognition/binding properties of enzymes with transition metal catalysts, and therefore many... 
hybrid catalysts | asymmetric catalysis | artificial metalloenzymes | Artificial metalloenzymes | Asymmetric catalysis | Hybrid catalysts | Physical Sciences | Chemistry | Chemistry, Organic | Chemistry, Applied | Science & Technology | Catalysis | Transition metal compounds | Metalloenzymes | Metal catalysts | Asymmetry | Catalysts | Chemical synthesis
Journal Article
ACS medicinal chemistry letters, ISSN 1948-5875, 12/2017, Volume 8, Issue 12, pp. 1314 - 1319
Incorporation of the purine/pyrimidine moieties as tails to classical benzenesulfonamide scaffolds afforded two series of human (h) carbonic anhydrase (CA, EC... 
Carbonic anhydrase | inhibitor | anticancer | metalloenzymes | nitrogenous base
Journal Article
European journal of inorganic chemistry, ISSN 1434-1948, 07/2015, Volume 2015, Issue 21, pp. 3371 - 3390
A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a trivial number of them through evolution, composing an... 
Iron | DF models | Helical structures | Enzyme mimics | Protein design | Metallo­enzymes | Metalloenzymes | Physical Sciences | Chemistry, Inorganic & Nuclear | Chemistry | Science & Technology | Enzymes | Binding sites | Catalysis | Proteins | Bundling | Polypeptides | Alphabets | Mathematical models | Scaffolds
Journal Article
Chemistry : a European journal, ISSN 1521-3765, 07/2018, Volume 24, Issue 46, pp. 11821 - 11830
Nature employs a limited number of genetically encoded, metal‐coordinating residues to create metalloenzymes with diverse structures and functions. Engineered... 
heme enzymes | non-canonical amino acids | biocatalysis | metalloenzymes | directed evolution | Physical Sciences | Chemistry | Chemistry, Multidisciplinary | Science & Technology | Metalloenzymes | Catalysis | Proteins | Organic chemistry | Genetic code | Properties (attributes) | Catalysts | Coding | Metals | Ligands | Optimization | Cellular structure
Journal Article