FB2026_02 , released June 18, 2026
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Citation
Kamalyan, S., Kyrchanova, O., Klimenko, N., Babosha, V., Vasileva, Y., Belova, E., Fursenko, D., Maksimenko, O., Georgiev, P. (2024). The N-terminal dimerization domains of human and Drosophila CTCF have similar functionality.  Epigenetics Chromatin 17(1): 9.
FlyBase ID
FBrf0259157
Publication Type
Research paper
Abstract
CTCF is highly likely to be the ancestor of proteins that contain large clusters of C2H2 zinc finger domains, and its conservation is observed across most bilaterian organisms. In mammals, CTCF is the primary architectural protein involved in organizing chromosome topology and mediating enhancer-promoter interactions over long distances. In Drosophila, CTCF (dCTCF) cooperates with other architectural proteins to establish long-range interactions and chromatin boundaries. CTCFs of various organisms contain an unstructured N-terminal dimerization domain (DD) and clusters comprising eleven zinc-finger domains of the C2H2 type. The Drosophila (dCTCF) and human (hCTCF) CTCFs share sequence homology in only five C2H2 domains that specifically bind to a conserved 15 bp motif. Previously, we demonstrated that CTCFs from different organisms carry unstructured N-terminal dimerization domains (DDs) that lack sequence homology. Here we used the CTCF[attP(mCh)] platform to introduce desired changes in the Drosophila CTCF gene and generated a series of transgenic lines expressing dCTCF with different variants of the N-terminal domain. Our findings revealed that the functionality of dCTCF is significantly affected by the deletion of the N-terminal DD. Additionally, we observed a strong impact on the binding of the dCTCF mutant to chromatin upon deletion of the DD. However, chromatin binding was restored in transgenic flies expressing a chimeric CTCF protein with the DD of hCTCF. Although the chimeric protein exhibited lower expression levels than those of the dCTCF variants, it efficiently bound to chromatin similarly to the wild type (wt) protein. Our findings suggest that one of the evolutionarily conserved functions of the unstructured N-terminal dimerization domain is to recruit dCTCF to its genomic sites in vivo.
PubMed ID
PubMed Central ID
PMC10983669 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Epigenetics Chromatin
    Title
    Epigenetics & chromatin
    ISBN/ISSN
    1756-8935
    Data From Reference
    Alleles (10)
    Genes (3)
    Physical Interactions (3)
    Cell Lines (1)
    Insertions (10)
    Experimental Tools (2)
    Transgenic Constructs (1)