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Titlebook: Restriction Endonucleases; Alfred M. Pingoud Book 2004 Springer-Verlag Berlin Heidelberg 2004 ATP.DNA.DNA-Erkennung.DNA-Spaltung.Restrikti

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The Type I and III Restriction Endonucleases: Structural Elements in Molecular Motors that Process es and the Res subunits of the Type III enzymes carry amino acid motifs characteristic of superfamily 2 helicases. In this review, the structural and mechanistic implications of this relationship are discussed and models suggested for how the ATP-dependent restriction enzymes might couple chemical energy to mechanical motion on DNA.
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A Nomenclature for Restriction Enzymes, DNA Methyltransferases, Homing Endonucleases, and Their Genases) have been named based on an original suggestion by Smith and Nathans (3). They proposed that the enzyme names should begin with a three-letter acronym in which the first letter was the first letter of the genus from which the enzyme was isolated and the next two letters were the first two lett
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Molecular Phylogenetics of Restriction Endonucleases,ed (‘restricted’) the growth of bacteriophages previously propagated on a different strain. In the early 1960s, it was found that the restriction is due to the enzymatic cleavage of the phage DNA by sequence -specific endonucleases (REases), which are sensitive to covalent modification of bases in t
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