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Anca Pordea
Anca Pordea
Verified email at nottingham.ac.uk
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Year
Artificial transfer hydrogenases based on the biotin−(strept) avidin technology: fine tuning the selectivity by saturation mutagenesis of the host protein
C Letondor, A Pordea, N Humbert, A Ivanova, S Mazurek, M Novic, ...
Journal of the American Chemical Society 128 (25), 8320-8328, 2006
1872006
X-ray structure and designed evolution of an artificial transfer hydrogenase
M Creus, A Pordea, T Rossel, A Sardo, C Letondor, A Ivanova, I LeTrong, ...
Angewandte Chemie 120 (8), 1422, 2008
1822008
Artificial metalloenzyme for enantioselective sulfoxidation based on vanadyl-loaded streptavidin
A Pordea, M Creus, J Panek, C Duboc, D Mathis, M Novic, TR Ward
Journal of the American Chemical Society 130 (25), 8085-8088, 2008
1802008
OsO4⋅ Streptavidin: A Tunable Hybrid Catalyst for the Enantioselective cis‐Dihydroxylation of Olefins
V Köhler, J Mao, T Heinisch, A Pordea, A Sardo, YM Wilson, L Knörr, ...
Angewandte Chemie-International Edition 50 (46), 10863, 2011
892011
Incorporation of biotinylated manganese-salen complexes into streptavidin: new artificial metalloenzymes for enantioselective sulfoxidation
A Pordea, D Mathis, TR Ward
Journal of Organometallic Chemistry 694 (6), 930-936, 2009
712009
Iron-catalyzed indolizine synthesis from pyridines, diazo compounds, and alkynes
T Douglas, A Pordea, J Dowden
Organic letters 19 (23), 6396-6399, 2017
602017
Rational design of thermostable carbonic anhydrase mutants using molecular dynamics simulations
R Parra-Cruz, CM Jäger, PL Lau, RL Gomes, A Pordea
The Journal of Physical Chemistry B 122 (36), 8526-8536, 2018
452018
Metal-binding promiscuity in artificial metalloenzyme design
A Pordea
Current Opinion in Chemical Biology 25, 124-132, 2015
432015
Biocatalyst–artificial metalloenzyme cascade based on alcohol dehydrogenase
S Morra, A Pordea
Chemical Science 9 (38), 7447-7454, 2018
392018
Chemogenetic protein engineering: an efficient tool for the optimization of artificial metalloenzymes
A Pordea, TR Ward
Chemical communications, 4239-4249, 2008
352008
Improving the enantioselectivity of artificial transfer hydrogenases based on the biotin–streptavidin technology by combinations of point mutations
A Pordea, M Creus, C Letondor, A Ivanova, TR Ward
Inorganica Chimica Acta 363 (3), 601-604, 2010
312010
Catalytic epoxidation of alkenes by the manganese complex of a reduced porphyrinogen macrocycle
F Bruyneel, C Letondor, B Bastuerk, A Gualandi, A Pordea, ...
Advanced Synthesis & Catalysis 354 (2‐3), 428-440, 2012
242012
Artificial metalloenzymes: combining the best features of homogeneous and enzymatic catalysis
A Pordea, TR Ward
Synlett 2009 (20), 3225-3236, 2009
242009
Engineering of Thermovibrio ammonificans carbonic anhydrase mutants with increased thermostability
R Parra-Cruz, PL Lau, HS Loh, A Pordea
Journal of CO2 Utilization 37, 1-8, 2020
172020
Iodine-mediated oxidative cyclization of 2-(Pyridin-2-yl) acetate derivatives with alkynes: condition-controlled selective synthesis of multisubstituted indolizines
L He, Y Yang, X Liu, G Liang, C Li, D Wang, W Pan
Synthesis 52 (03), 459-470, 2020
152020
Design of artificial metalloenzymes for the reduction of nicotinamide cofactors
M Basle, HAW Padley, FL Martins, GS Winkler, CM Jäger, A Pordea
Journal of Inorganic Biochemistry 220, 111446, 2021
92021
Computationally driven design of an artificial metalloenzyme using supramolecular anchoring strategies of iridium complexes to alcohol dehydrogenase
FL Martins, A Pordea, CM Jäger
Faraday Discussions 234, 315-335, 2022
32022
Enhanced n-butanol tolerance of E. coli via adaptive evolution
R Menchavez, L Rossoni, A Pordea, G Eastham, G Stephens
SIMB Annual Meeting 2018, 2018
32018
Synthesis and Reactions of 2‐[1‐Methyl‐1‐(pyrrolidin‐2‐yl)ethyl]‐1H‐pyrrole and Some Derivatives with Aldehydes: Chiral Structures Combining a Secondary‐Amine Group …
A Pordea, H Stoeckli‐Evans, C Dalvit, R Neier
Helvetica Chimica Acta 95 (11), 2249-2264, 2012
32012
Enantioselective Hybrid Catalysts
TR Ward, A Pordea
Elsevier 6, 516-552, 2012
22012
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