Characterization of constitutive CTCF/cohesin loci: a possible role in establishing topological domains in mammalian genomes
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Biotechnology
Reference47 articles.
1. CTCF is a uniquely versatile transcription regulator linked to epigenetics and disease
2. Evidence that homologous X-chromosome pairing requires transcription and Ctcf protein
3. Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene
4. CTCF binding at the H19 imprinting control region mediates maternally inherited higher-order chromatin conformation to restrict enhancer access to Igf2
5. Interaction between differentially methylated regions partitions the imprinted genes Igf2 and H19 into parent-specific chromatin loops
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1. Replication stress underlies genomic instability at CTCF/cohesin-binding sites in cancer;2023-10-27
2. Neural network modeling of differential binding between wild-type and mutant CTCF reveals putative binding preferences for zinc fingers 1–2;BMC Genomics;2022-04-12
3. Neural network modeling of differential binding between wild-type and mutant CTCF reveals putative binding preferences for zinc fingers 1-2;2021-09-24
4. The Myc-associated zinc finger protein (MAZ) works together with CTCF to control cohesin positioning and genome organization;Proceedings of the National Academy of Sciences;2021-02-08
5. Histone Variants and Histone Modifications in Neurogenesis;Trends in Cell Biology;2020-11
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