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PCNA promotes processive DNA end resection by Exo1.
scientific article published on 11 August 2013
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Europe PubMed Central
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3814391
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
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7 March 2020
title
PCNA promotes processive DNA end resection by Exo1
(English)
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stated in
Europe PubMed Central
PMCID
3814391
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
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7 March 2020
author
Re-I Chin
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3
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Europe PubMed Central
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3814391
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7 March 2020
author name string
Xiaoqing Chen
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1
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Europe PubMed Central
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3814391
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
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7 March 2020
Sharad C Paudyal
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2
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Europe PubMed Central
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3814391
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https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
retrieved
7 March 2020
Zhongsheng You
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4
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3814391
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7 March 2020
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English
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publication date
11 August 2013
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Europe PubMed Central
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3814391
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retrieved
7 March 2020
published in
Nucleic Acids Research
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Europe PubMed Central
PMCID
3814391
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
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7 March 2020
volume
41
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Europe PubMed Central
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3814391
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7 March 2020
issue
20
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3814391
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7 March 2020
page(s)
9325-9338
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Europe PubMed Central
PMCID
3814391
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
retrieved
7 March 2020
copyright license
Creative Commons Attribution 3.0 Unported
start time
7 November 2016
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cites work
Mammalian Exo1 encodes both structural and catalytic functions that play distinct roles in essential biological processes
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Relationship of DNA degradation by Saccharomyces cerevisiae exonuclease 1 and its stimulation by RPA and Mre11-Rad50-Xrs2 to DNA end resection
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The SOSS1 single-stranded DNA binding complex promotes DNA end resection in concert with Exo1.
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Okazaki fragment processing-independent role for human Dna2 enzyme during DNA replication
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Exo1 plays a major role in DNA end resection in humans and influences double-strand break repair and damage signaling decisions
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14-3-3 checkpoint regulatory proteins interact specifically with DNA repair protein human exonuclease 1 (hEXO1) via a semi-conserved motif
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Human Ku70/80 protein blocks exonuclease 1-mediated DNA resection in the presence of human Mre11 or Mre11/Rad50 protein complex
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Release of Ku and MRN from DNA ends by Mre11 nuclease activity and Ctp1 is required for homologous recombination repair of double-strand breaks.
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14-3-3 Proteins regulate exonuclease 1-dependent processing of stalled replication forks
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Structures of Human Exonuclease 1 DNA Complexes Suggest a Unified Mechanism for Nuclease Family
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Mechanistic analysis of Xenopus EXO1's function in 5'-strand resection at DNA double-strand breaks
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BLM-DNA2-RPA-MRN and EXO1-BLM-RPA-MRN constitute two DNA end resection machineries for human DNA break repair
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MMSET regulates histone H4K20 methylation and 53BP1 accumulation at DNA damage sites
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DNA end resection by CtIP and exonuclease 1 prevents genomic instability
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Bi-directional routing of DNA mismatch repair protein human exonuclease 1 to replication foci and DNA double strand breaks
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Ku prevents Exo1 and Sgs1-dependent resection of DNA ends in the absence of a functional MRX complex or Sae2
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DNA end resection: many nucleases make light work
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Human CtIP promotes DNA end resection
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Mre11-Rad50-Xrs2 and Sae2 promote 5' strand resection of DNA double-strand breaks
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Saccharomyces cerevisiae Mre11/Rad50/Xrs2 and Ku proteins regulate association of Exo1 and Dna2 with DNA breaks
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3 September 2018
Exo1 processes stalled replication forks and counteracts fork reversal in checkpoint-defective cells
1 reference
stated in
PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=3814391
retrieved
3 September 2018
On the mechanism of loading the PCNA sliding clamp by RFC
1 reference
stated in
Crossref
reference URL
https://api.crossref.org/works/10.1093%2FNAR%2FGKT672
retrieved
21 January 2018
ATP-independent loading of the proliferating cell nuclear antigen requires DNA ends
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23939618
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Inhibition of cell proliferation by the PCNA-binding region of p21 expressed as a GFP miniprotein
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/23939618
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
Identifiers
DOI
10.1093/NAR/GKT672
1 reference
stated in
Europe PubMed Central
PMCID
3814391
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
retrieved
7 March 2020
PMCID
3814391
1 reference
stated in
Europe PubMed Central
PMCID
3814391
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
retrieved
7 March 2020
PubMed ID
23939618
1 reference
stated in
Europe PubMed Central
PMCID
3814391
reference URL
https://www.ebi.ac.uk/europepmc/webservices/rest/search?query=EXT_ID:23939618%20AND%20SRC:MED&resulttype=core&format=json
retrieved
7 March 2020
ResearchGate publication ID
255790248
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