The Testis-Specific Factor CTCFL Cooperates with the Protein Methyltransferase PRMT7 in H19 Imprinting Control Region Methylation
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Summary
It is demonstrated that CTCFL/BORIS, a paralog of CTCF, is an ICR-binding protein expressed during embryonic male germ cell development, coinciding with the timing of ICR methylation.
- Type
- article
- Published
- 2006-10-17
- Cited by
- 233
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W1997663843
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17258177
Keywords
Biology, Genomic imprinting, Histone methyltransferase, Methyltransferase, Methylation
References
- Using a eukaryotic GST fusion vector for proteins difficult to express in E. coli.
- CTCF mediates methylation-sensitive enhancer-blocking activity at the H19/Igf2 locus
- Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene
- High-efficiency transformation of mammalian cells by plasmid DNA.
- Antigen retrieval technique utilizing citrate buffer or urea solution for immunohistochemical demonstration of androgen receptor in formalin-fixed paraffin sections.
- High sensitivity mapping of methylated cytosines.
- Tudor Domains Bind Symmetrical Dimethylated Arginines*
- Parental genomic imprinting of the human IGF2 gene
- PRMT7, a New Protein Arginine Methyltransferase That Synthesizes Symmetric Dimethylarginine*
- Dynamic expression of DNMT3a and DNMT3b isoforms during male germ cell development in the mouse.
- The paternal methylation imprint of the mouse H19 locus is acquired in the gonocyte stage during foetal testis development
- Establishment of male-specific epigenetic information.
- Co-expression of de novo DNA methyltransferases Dnmt3a2 and Dnmt3L in gonocytes of mouse embryos.
- Windows for sex-specific methylation marked by DNA methyltransferase expression profiles in mouse germ cells.
- Essential role for de novo DNA methyltransferase Dnmt3a in paternal and maternal imprinting
- Transitions in histone acetylation reveal boundaries of three separately regulated neighboring loci
- DNA methyltransferase expression in the mouse germ line during periods of de novo methylation
- Epigenetic regulation by histone methylation and histone variants.
- BORIS, a novel male germ-line-specific protein associated with epigenetic reprogramming events, shares the same 11-zinc-finger domain with CTCF, the insulator protein involved in reading imprinting marks in the soma
- CTCF maintains differential methylation at the Igf2/H19 locus
Cited by
- Retroposition and evolution of the DNA-binding motifs of YY1, YY2 and REX1
- Methylation of the nuclear poly(A)-binding protein by type I protein arginine methyltransferases – how and why
- Cross-talk among epigenetic modifications: lessons from histone arginine methylation.
- Hypomethylation of BORIS is a promising prognostic biomarker in hepatocellular carcinoma.
- Plant PRMTs broaden the scope of arginine methylation.
- Role of HSWI/SNF associated PRMT5 and MSIN3A/HDAC in the control of gene expression and cancer.
- DNA repair and the control of DNA methylation.
- Genetics and epigenetics of the multifunctional protein CTCF.
- Disturbed protein arginine methylation in hyperhomocysteinemia
- Étude structurale de l’histoneméthyltransférase « CARM1 » et de ses complexes biologiquement significatifs : des structures 3D vers la conception rationnelle de composés à action pharmacologique
- Comprehensive Review on the Existence of Genomic Imprinting in Aves
- Histone methylation modifiers in cellular signaling pathways
- The cancer‐testis antigen BORIS phenocopies the tumor suppressor CTCF in normal and neoplastic cells
- Evolutionarily conserved protein arginine methyltransferases in non‐mammalian animal systems
- Computational regulatory genomics: motifs, networks, and dynamics
- Chromatin Insulators: A Role in Nuclear Organization and Gene Expression
- Fetal germ cell development in the rat testis and the impact of di (n-Butyl) phthalate exposure
- Role of PRMTs in cancer: Could minor isoforms be leaving a mark?
- Untersuchungen zur epigenetischen Regulation der humanen Cancer-Testis MAGE-A Gene
- Histone Arginine Methylation by PRMT7 Controls Germinal Center Formation via Regulating Bcl6 Transcription
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