Analysis of the DNA unwinding activity of RecQ family helicases.
about
ATRX dysfunction induces replication defects in primary mouse cellsThe Bloom's syndrome helicase (BLM) interacts physically and functionally with p12, the smallest subunit of human DNA polymerase deltaPif1 family helicases suppress genome instability at G-quadruplex motifs.The Werner syndrome helicase/exonuclease processes mobile D-loops through branch migration and degradationReplication protein A stimulates the Werner syndrome protein branch migration activity.Post-replication repair suppresses duplication-mediated genome instabilityG-quadruplex DNA sequences are evolutionarily conserved and associated with distinct genomic features in Saccharomyces cerevisiaeSelection for the G4 DNA motif at the 5' end of human genesAnalysis of the DNA translocation and unwinding activities of T4 phage helicases.Characterization of the helicase activity and anti-telomerase properties of yeast Pif1p in vitro.A parallel quadruplex DNA is bound tightly but unfolded slowly by pif1 helicase.Cancer-associated mutants of RNA helicase DDX3X are defective in RNA-stimulated ATP hydrolysisBLM ortholog, Sgs1, prevents aberrant crossing-over by suppressing formation of multichromatid joint molecules.Rising from the RecQ-age: the role of human RecQ helicases in genome maintenanceBLM helicase measures DNA unwound before switching strands and hRPA promotes unwinding reinitiation.The yeast Pif1 helicase prevents genomic instability caused by G-quadruplex-forming CEB1 sequences in vivoNon-B DNA Secondary Structures and Their Resolution by RecQ Helicases.Perspectives in Pediatric Pathology, Chapter 17. Other Hypergonadotropic Hypogonadisms.Mms1 binds to G-rich regions in Saccharomyces cerevisiae and influences replication and genome stability.The Drosophila orthologue of progeroid human WRN exonuclease, DmWRNexo, cleaves replication substrates but is inhibited by uracil or abasic sites : analysis of DmWRNexo activity in vitro.The disruptive positions in human G-quadruplex motifs are less polymorphic and more conserved than their neutral counterparts.Biochemical characterization of AtRECQ3 reveals significant differences relative to other RecQ helicases.
P2860
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P2860
Analysis of the DNA unwinding activity of RecQ family helicases.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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2006年学术文章
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2006年学术文章
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2006年學術文章
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2006年學術文章
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name
Analysis of the DNA unwinding activity of RecQ family helicases.
@en
Analysis of the DNA unwinding activity of RecQ family helicases.
@nl
type
label
Analysis of the DNA unwinding activity of RecQ family helicases.
@en
Analysis of the DNA unwinding activity of RecQ family helicases.
@nl
prefLabel
Analysis of the DNA unwinding activity of RecQ family helicases.
@en
Analysis of the DNA unwinding activity of RecQ family helicases.
@nl
P1476
Analysis of the DNA unwinding activity of RecQ family helicases.
@en
P2093
Csanád Z Bachrati
Ian D Hickson
P304
P356
10.1016/S0076-6879(05)09005-1
P407
P577
2006-01-01T00:00:00Z