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Association of the yeast DNA helicase Pif1p with mitochondrial membranes and mitochondrial DNA
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The Protease Domain Increases the Translocation Stepping Efficiency of the Hepatitis C Virus NS3-4A Helicase
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Pif1 helicase directs eukaryotic Okazaki fragments toward the two-nuclease cleavage pathway for primer removal
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Andrew N. Lane et al.
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The yeast Pif1p DNA helicase preferentially unwinds RNA-DNA substrates
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A nonuniform stepping mechanism for E-coli UvrD monomer translocation along single-stranded DNA
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The role of Pif1p, a DNA helicase in Saccharomyces cerevisiae, in maintaining mitochondrial DNA
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UvrD helicase unwinds DNA one base pair at a time by a two-part power stroke
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DNA unwinding by Escherichia coli DNA helicase I (Tral) provides evidence for a processive monomeric molecular motor
Bartek Sikora et al.
JOURNAL OF BIOLOGICAL CHEMISTRY (2006)
Evidence suggesting that Pif1 helicase functions in DNA replication with the DNA2 helicase/nuclease and DNA polymerase δ
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Intermediates revealed in the kinetic mechanism for DNA unwinding by a monomeric helicase
RL Eoff et al.
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The yeast Pif1p helicase removes telomerase from telomeric DNA
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The functional interaction of the hepatitis C virus helicase molecules is responsible for unwinding processivity
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Fluorescence stopped-flow studies of single turnover kinetics of E-coli RecBCD helicase-catalyzed DNA unwinding
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Protein displacement by an assembly of helicase molecules aligned along single-stranded DNA
AK Byrd et al.
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The Saccharomyces cerevisiae helicase Rrm3p facilitates replication past nonhistone protein-DNA complexes
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DNA unwinding step-size of E-coli RecBCD helicase determined from single turnover chemical quenched-flow kinetic studies
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The Saccharomyces Pif1p DNA helicase and the highly related Rrm3p have opposite effects on replication fork progression in ribosomal DNA
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