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UHRF1 regulation of Dnmt1 is required for pre-gastrula zebrafish development
Brandon Kent
, Elena Magnani
,
Martin J. Walsh
,
Kirsten C. Sadler
Cancer Mechanisms
Environmental Medicine
Friedman Brain Institute
Genetics and Genomic Sciences
Graduate School of Biomedical Sciences
Icahn School of Medicine at Mount Sinai
Institute for Exposomic Research
Mindich Child Health and Development Institute
Mount Sinai Tisch Cancer Center
Pediatrics
Pharmacological Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
26
Scopus citations
Overview
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Keyphrases
DNA Methyltransferase 1 (DNMT1)
100%
Gastrula
100%
UHRF1
100%
Zebrafish Development
100%
Overexpression
54%
Gastrulation
36%
Epiboly
36%
Knockdown
27%
Phosphorylation
18%
DNA Hypomethylation
18%
Epigenetic Modifiers
18%
DNA Methylation (DNAm)
9%
Epigenome
9%
Epigenetic Events
9%
Epigenetic Regulators
9%
Penetrance
9%
Early Embryonic Development
9%
Multisystemic
9%
Developmental Arrest
9%
Developmental Consequences
9%
Bulk DNA
9%
Zebrafish Embryogenesis
9%
Maintenance DNA Methylation
9%
Biochemistry, Genetics and Molecular Biology
Zebra Fish
100%
DNA Methyltransferase
100%
UHRF1
100%
Epigenetics
50%
DNA Methylation
50%
Gastrulation
50%
Epiboly
50%
Embryogenesis
25%
DNA Hypomethylation
25%
Epigenome
12%
Penetrance
12%
Messenger RNA
12%