Evidence map›Paper›PMID 41444637›Full record

ArticleEpigenetics & chromatin2025

Cooperation between architectural C2H2 proteins in CP190 recruitment to Drosophila regulatory elements.

Oksana Maksimenko, Natalia Klimenko, Ghadeer Salloum, Anastasia Umnova, Olga Kyrchanova, Larisa Melnikova, Pavel Georgiev

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Article in Epigenetics & chromatin, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

7 authors.

Oksana Maksimenko *Center for Genome Research, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia. maksog@mail.ru.
Natalia Klimenko *Center for Genome Research, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia.
Ghadeer Salloum *Center for Genome Research, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia.
Anastasia UmnovaCenter for Genome Research, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia.
Olga KyrchanovaDepartment of the Control of Genetic Processes, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia.
Larisa MelnikovaDepartment of Drosophila Molecular Genetics, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia.
Pavel GeorgievDepartment of the Control of Genetic Processes, Institute of Gene Biology Russian Academy of Sciences, 34/5 Vavilov St., Moscow, 119334, Russia. georgiev_p@mail.ru.

Funding

Russian Science Foundation 19-74-30026-PRussian Science Foundation 25-14-00142
6 · The paper itself

Abstract

backgroundCTCF (CCCTC-binding factor) is the best-studied architectural protein that is highly conserved among animals, including Drosophila and mammals. In Drosophila, CTCF is involved in the organization of functional promoters and insulators, in cooperation with many other architectural proteins, including Su(Hw) and Pita. These proteins, like many other architectural proteins, interact with CP190, which, along with its partners, recruits transcriptional complexes to target promoters. This study was conducted to investigate the cooperation between architectural proteins in the recruitment of CP190 to regulatory elements.

resultsWe generated transgenic flies expressing double and triple mutants of dCTCF, Su(Hw), and Pita that cannot interact with CP190. The single mutants are fully viable; however, few triple mutants develop into adults. In the triple mutant, although the CP190 concentration is reduced, the level of gene transcription remains unaltered, suggesting that co-expression of the three mutant proteins is responsible for CP190 instability. ChIP-seq analysis showed that CP190 is required for dCTCF-chromatin binding. In the triple mutant, CP190 demonstrates an almost complete loss of association with the promoters and insulators to which the tested architectural proteins bind; however, these regulatory elements were found to retain their activity.

conclusionsArchitectural proteins cooperate to recruit CP190 to regulatory elements and determine its stability. Despite the important role of CP190 in transcriptional regulation, its functions may be partially performed by partner proteins.

Indexed as

DNA-Binding ProteinsDrosophila melanogasterDrosophila ProteinsNuclear ProteinsRegulatory Sequences, Nucleic AcidTranscription FactorsAnimalsAnimals, Genetically ModifiedCCCTC-Binding FactorChromatinMicrotubule-Associated ProteinsMutationPromoter Regions, GeneticProtein BindingRepressor ProteinsCCCTC-Binding FactorChromatinCP190 protein, DrosophilaCTCF protein, DrosophilaDNA-Binding ProteinsDrosophila ProteinsMicrotubule-Associated ProteinsNuclear ProteinsRepressor Proteinssu(Hw) protein, DrosophilaTranscription FactorsBithoraxChromatin insulatorCTCFHousekeeping promotersPitaSu(Hw)ZFPZinc-finger protein

Identifiers

PMID41444637
PMCPMC12849374

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