نتایج جستجو برای: zinc metalloenzymes

تعداد نتایج: 74030  

Journal: :Progress in Biophysics and Molecular Biology 1997

Journal: :Nature Catalysis 2021

Artificial metalloenzymes result from anchoring an organometallic catalyst within evolvable protein scaffold. Thanks to its dimer of dimers quaternary structure, streptavidin allows the precise positioning two metal cofactors activate a single substrate, thus expanding reaction scope accessible artificial metalloenzymes. To validate this concept, we report herein on our efforts engineer and evo...

2007
Untung E. Rusbandi Cheikh Lo Myriem Skander Anita Ivanova Marc Creus Nicolas Humbert Thomas R. Ward

We report on our efforts to create efficient artificial metalloenzymes for the enantioselective hydrogenation of N-protected dehydroamino acids using either avidin or streptavidin as host proteins. Introduction of chiral amino acid spacers – phenylalanine or proline – between the biotin anchor and the flexible aminodiphosphine moiety 1, combined with saturation mutagenesis at position S112X of ...

Journal: :Chemical communications 2011
Cheikh Lo Mark R Ringenberg David Gnandt Yvonne Wilson Thomas R Ward

Incorporation of a biotinylated Hoveyda-Grubbs catalyst within (strept)avidin affords artificial metalloenzymes for the ring-closing metathesis of N-tosyl diallylamine in aqueous solution. Optimization of the performance can be achieved either by chemical or genetic means.

Journal: :Chemical communications 2005
Myriem Skander Christophe Malan Anita Ivanova Thomas R Ward

Incorporation of biotinylated-[rhodium(diphosphine)]+ complexes, with enantiopure amino acid spacers, in streptavidin affords solvent-tolerant and selective artificial metalloenzymes: up to 91% ee (S) in the hydrogenation of N-protected dehydroamino acids.

Journal: :Archives of biochemistry and biophysics 1999
G Schenk Y Ge L E Carrington C J Wynne I R Searle B J Carroll S Hamilton J de Jersey

Purple acid phosphatases comprise a family of binuclear metal-containing acid hydrolases, representatives of which have been found in animals, plants, and fungi. The goal of this study was to characterize purple acid phosphatases from sweet potato tubers and soybean seeds and to establish their relationship with the only well-characterized plant purple acid phosphatase, the FeIII-ZnII-containin...

Journal: :Proceedings of the National Academy of Sciences 1979

Journal: :Current Opinion in Chemical Biology 2015

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