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- W1907588512 abstract "Originally published in: Artificial Enzymes. Edited by Ronald Breslow. Copyright © 2005 Wiley-VCH Verlag GmbH & Co. KGaA Weinheim. Print ISBN: 3-527-31165-1The sections in this article areIntroductionArtificial Nucleases Based on DNA and RNA Binding ProteinsIntroductionArtificial Nucleases from Native Protein ScaffoldsOP Nuclease Design by Mutagenesis and Chemical ModificationAdditional Applications for OP ConjugatesA Fe-EDTA Artificial NucleaseConcluding RemarksCatalysts Based on Hollow Lipid-binding ProteinsLipid-binding ProteinsInitial WorkExploiting the Advantage of a Protein-based ScaffoldCatalytic Turnover with Rate AccelerationModulation of Cofactor Reactivity with Metal IonsChemogenetic ApproachAdding Functional Groups within the CavityScaffold RedesignHydrolytic ReactionsA Flavin-containing ConjugateSome LimitationsMyoglobin as a Starting Point for Oxidase DesignArtificial Metalloproteins and MyoglobinNon-covalent Attachment of a Redox CenterDual Anchoring StrategyAntibodies as Scaffolds for Catalyst DesignAntibodies as Specificity ElementsIncorporation of an Imidazole Functional Group into an Antibody for CatalysisComparison of Imidazole-containing Antibodies Produced by Chemical Modification and Site-directed MutagenesisConclusionsKeywords:artificial enzymes;protein-based artificial enzymes;artificial nucleases;DNA and RNA binding proteins;catalysts;hollow lipid-binding proteins;myoglobin;starting point for oxidase design;antibodies scaffolds for catalyst design" @default.
- W1907588512 created "2016-06-24" @default.
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- W1907588512 date "2005-05-25" @default.
- W1907588512 modified "2023-10-14" @default.
- W1907588512 title "Protein‐based Artificial Enzymes" @default.
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- W1907588512 doi "https://doi.org/10.1002/3527606645.ch5" @default.
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