artificial processivity clamp made with streptavidin facilitates oriented attachment of polymerase-DNA complexes to surfaces

Single molecule analysis of individual enzymes can require oriented immobilization of the subject molecules on a detection surface. As part of a technology development project for single molecule DNA sequencing, we faced the multiple challenges of immobilizing both a DNA polymerase and its DNA templ...

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Veröffentlicht in:Nucleic acids research 2008-10, Vol.36 (18), p.e121-e121
Hauptverfasser: Williams, John G.K, Steffens, David L, Anderson, Jon P, Urlacher, Teresa M, Lamb, Donald T, Grone, Daniel L, Egelhoff, Jolene C
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Sprache:eng
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Zusammenfassung:Single molecule analysis of individual enzymes can require oriented immobilization of the subject molecules on a detection surface. As part of a technology development project for single molecule DNA sequencing, we faced the multiple challenges of immobilizing both a DNA polymerase and its DNA template together in an active, stable complex capable of highly processive DNA synthesis on a nonstick surface. Here, we report the genetic modification of the archaeal DNA polymerase 9°N in which two biotinylated peptide 'legs' are inserted at positions flanking the DNA-binding cleft. Streptavidin binding on either side of the cleft both traps the DNA template in the polymerase and orients the complex on a biotinylated surface. We present evidence that purified polymerase-DNA-streptavidin complexes are active both in solution and immobilized on a surface. Processivity is improved from
ISSN:0305-1048
1362-4962
DOI:10.1093/nar/gkn531