A dual anchoring strategy for the localization and activation of artificial metalloenzymes based on the biotin-streptavidin technology
about
Modular Artificial CupredoxinsHybrid ruthenium ROMP catalysts based on an engineered variant of β-barrel protein FhuA ΔCVF(tev) : effect of spacer length.Opportunities for merging chemical and biological synthesisCustomization of Protein Single Nanowires for Optical Biosensing.Library design and screening protocol for artificial metalloenzymes based on the biotin-streptavidin technology.Computational strategies for the design of new enzymatic functionsLeonidas Zervas award lecture: abiotic ligands for new quaternary architectures of peptides and proteins.Streptavidin-biotin technology: improvements and innovations in chemical and biological applications.Metalloenzyme design and engineering through strategic modifications of native protein scaffolds.Genetic Optimization of Metalloenzymes: Enhancing Enzymes for Non-Natural Reactions.Design and engineering of artificial oxygen-activating metalloenzymes.Imino Transfer Hydrogenation Reductions.Selection of Single-Stranded DNA Molecular Recognition Elements against Exotoxin A Using a Novel Decoy-SELEX Method and Sensitive Detection of Exotoxin A in Human Serum.2-Methyl-2,4-pentanediol (MPD) boosts as detergent-substitute the performance of ß-barrel hybrid catalyst for phenylacetylene polymerization.Novel artificial metalloenzymes by in vivo incorporation of metal-binding unnatural amino acids.Artificial Diels-Alderase based on the transmembrane protein FhuA.Engineering a dirhodium artificial metalloenzyme for selective olefin cyclopropanation.Bovine serum albumin-cobalt(ii) Schiff base complex hybrid: an efficient artificial metalloenzyme for enantioselective sulfoxidation using hydrogen peroxide.Rhodium-Complex-Linked Hybrid Biocatalyst: Stereo-Controlled Phenylacetylene Polymerization within an Engineered Protein Cavity
P2860
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P2860
A dual anchoring strategy for the localization and activation of artificial metalloenzymes based on the biotin-streptavidin technology
description
2013 nî lūn-bûn
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2013 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2013 թվականի ապրիլին հրատարակված գիտական հոդված
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2013年の論文
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2013年学术文章
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2013年学术文章
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2013年学术文章
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2013年学术文章
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2013年学术文章
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2013年學術文章
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name
A dual anchoring strategy for ...... biotin-streptavidin technology
@ast
A dual anchoring strategy for ...... biotin-streptavidin technology
@en
A dual anchoring strategy for ...... biotin-streptavidin technology
@nl
type
label
A dual anchoring strategy for ...... biotin-streptavidin technology
@ast
A dual anchoring strategy for ...... biotin-streptavidin technology
@en
A dual anchoring strategy for ...... biotin-streptavidin technology
@nl
prefLabel
A dual anchoring strategy for ...... biotin-streptavidin technology
@ast
A dual anchoring strategy for ...... biotin-streptavidin technology
@en
A dual anchoring strategy for ...... biotin-streptavidin technology
@nl
P2093
P3181
P356
P1476
A dual anchoring strategy for ...... biotin-streptavidin technology
@en
P2093
Didier Hamels
Elisa S Nogueira
Jeremy M Zimbron
Maurus Schmid
Thomas R Ward
P304
P3181
P356
10.1021/JA309974S
P407
P577
2013-04-10T00:00:00Z