Tim/Timeless, a member of the replication fork protection complex, operates with the Warsaw breakage syndrome DNA helicase DDX11 in the same fork recovery pathway
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Title
Tim/Timeless, a member of the replication fork protection complex, operates with the Warsaw breakage syndrome DNA helicase DDX11 in the same fork recovery pathway
Authors
Keywords
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Journal
NUCLEIC ACIDS RESEARCH
Volume 44, Issue 2, Pages 705-717
Publisher
Oxford University Press (OUP)
Online
2015-10-27
DOI
10.1093/nar/gkv1112
References
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Related references
Note: Only part of the references are listed.- Temporospatial Coordination of Meiotic DNA Replication and Recombination via DDK Recruitment to Replisomes
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- (2013) Niyant Shah et al. EXPERIMENTAL CELL RESEARCH
- The Human Tim-Tipin Complex Interacts Directly with DNA Polymerase ϵ and Stimulates Its Synthetic Activity
- (2013) Valentina Aria et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Specialization among Iron-Sulfur Cluster Helicases to Resolve G-quadruplex DNA Structures That Threaten Genomic Stability
- (2013) Sanjay Kumar Bharti et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Human Tim-Tipin complex affects the biochemical properties of the replicative DNA helicase and DNA polymerases
- (2013) W.-H. Cho et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
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- (2012) Soumya Rudra et al. CELL CYCLE
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- (2012) Adam R. Leman et al. CELL CYCLE
- Local and global functions of Timeless and Tipin in replication fork protection
- (2012) Adam R. Leman et al. CELL CYCLE
- Identification and Biochemical Characterization of a Novel Mutation inDDX11Causing Warsaw Breakage Syndrome
- (2012) José-Mario Capo-Chichi et al. HUMAN MUTATION
- DNA Repair and Replication Fork Helicases Are Differentially Affected by Alkyl Phosphotriester Lesion
- (2012) Avvaru N. Suhasini et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- The DEAD/DEAH box helicase, DDX11, is essential for the survival of advanced melanomas
- (2012) Chitralekha Bhattacharya et al. Molecular Cancer
- DNA helicase and helicase-nuclease enzymes with a conserved iron-sulfur cluster
- (2012) Y. Wu et al. NUCLEIC ACIDS RESEARCH
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- (2011) Stephanie L. Smith-Roe et al. CELL CYCLE
- CHL-1 provides an essential function affecting cell proliferation and chromosome stability in Caenorhabditis elegans
- (2011) George Chung et al. DNA REPAIR
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- (2011) Yuliang Wu et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Warsaw Breakage Syndrome, a Cohesinopathy Associated with Mutations in the XPD Helicase Family Member DDX11/ChlR1
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- (2009) Dana Branzei et al. DNA REPAIR
- Tipin/Tim1/And1 protein complex promotes Polα chromatin binding and sister chromatid cohesion
- (2009) Alessia Errico et al. EMBO JOURNAL
- Replisome progression complex links DNA replication to sister chromatid cohesion inXenopusegg extracts
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- Studies with the Human Cohesin Establishment Factor, ChlR1
- (2008) Andrea Farina et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- RFCCtf18 and the Swi1-Swi3 Complex Function in Separate and Redundant Pathways Required for the Stabilization of Replication Forks to Facilitate Sister Chromatid Cohesion in Schizosaccharomyces pombe
- (2007) Alison B. Ansbach et al. MOLECULAR BIOLOGY OF THE CELL
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