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Review

Functional sub-division of the Drosophila genome via chromatin looping

The emerging importance of CP190

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Pages 115-122 | Published online: 18 Jan 2013

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Debaditya De, Satish Kallappagoudar, Jae-Min Lim, Rashmi U. Pathak & Rakesh K. Mishra. (2018) O-GlcNAcylation of boundary element associated factor (BEAF 32) in Drosophila melanogaster correlates with active histone marks at the promoters of its target genes. Nucleus 9:1, pages 65-86.
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Ananya R. Guntur, John E. Smith, Archana Brahmandam, Phillip DeBauche, Claire Cronmiller & Martha J. Lundell. (2023) ZFH-2 is required for Drosophila ovarian follicle development and is expressed at the band/interband boundaries of polytene chromosomes. Developmental Biology 504, pages 1-11.
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Anton Golovnin, Larisa Melnikova, Valentin Babosha, Galina V. Pokholkova, Ivan Slovohotov, Anastasia Umnova, Oksana Maksimenko, Igor F. Zhimulev & Pavel Georgiev. (2023) The N-Terminal Part of Drosophila CP190 Is a Platform for Interaction with Multiple Architectural Proteins. International Journal of Molecular Sciences 24:21, pages 15917.
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Marat Sabirov, Anastasia Popovich, Konstantin Boyko, Alena Nikolaeva, Olga Kyrchanova, Oksana Maksimenko, Vladimir Popov, Pavel Georgiev & Artem Bonchuk. (2021) Mechanisms of CP190 Interaction with Architectural Proteins in Drosophila Melanogaster. International Journal of Molecular Sciences 22:22, pages 12400.
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Olga Kyrchanova, Natalia Klimenko, Nikolay Postika, Artem Bonchuk, Nikolay Zolotarev, Oksana Maksimenko & Pavel Georgiev. (2021) Drosophila architectural protein CTCF is not essential for fly survival and is able to function independently of CP190. Biochimica et Biophysica Acta (BBA) - Gene Regulatory Mechanisms 1864:10, pages 194733.
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K. Y. Khalisova, P. G. Georgiev & A. N. Bonchuk. (2021) Human CTCF Interacts with Drosophila CP190, but not with Kaiso. Doklady Biochemistry and Biophysics 497:1, pages 112-115.
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Larisa Melnikova, Varvara Molodina, Maksim Erokhin, Pavel Georgiev & Anton Golovnin. (2019) HIPP1 stabilizes the interaction between CP190 and Su(Hw) in the Drosophila insulator complex. Scientific Reports 9:1.
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Larisa Melnikova, Margarita Kostyuchenko, Varvara Molodina, Alexander Parshikov, Pavel Georgiev & Anton Golovnin. (2017) Interactions between BTB domain of CP190 and two adjacent regions in Su(Hw) are required for the insulator complex formation. Chromosoma 127:1, pages 59-71.
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Larisa Melnikova, Margarita Kostyuchenko, Alexander Parshikov, Pavel Georgiev & Anton Golovnin. (2018) Role of Su(Hw) zinc finger 10 and interaction with CP190 and Mod(mdg4) proteins in recruiting the Su(Hw) complex to chromatin sites in Drosophila. PLOS ONE 13:2, pages e0193497.
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Nikolay Zolotarev, Oksana Maksimenko, Olga Kyrchanova, Elena Sokolinskaya, Igor Osadchiy, Charles Girardot, Artem Bonchuk, Lucia Ciglar, Eileen E. M. Furlong & Pavel Georgiev. (2017) Opbp is a new architectural/insulator protein required for ribosomal gene expression. Nucleic Acids Research 45:21, pages 12285-12300.
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Larisa Melnikova, Margarita Kostyuchenko, Varvara Molodina, Alexander Parshikov, Pavel Georgiev & Anton Golovnin. (2017) Multiple interactions are involved in a highly specific association of the Mod(mdg4)-67.2 isoform with the Su(Hw) sites in Drosophila . Open Biology 7:10, pages 170150.
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Ramona Lattao, Levente Kovács & David M Glover. (2017) The Centrioles,Centrosomes, Basal Bodies, and Cilia of Drosophila melanogaster . Genetics 206:1, pages 33-53.
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R. Carballar‐Lejarazú, P. Brennock & A. A. James. (2016) Suppressor of hairy‐wing, modifier of mdg4 and centrosomal protein of 190 gene orthologues of the gypsy insulator complex in the malaria mosquito, Anopheles stephensi . Insect Molecular Biology 25:4, pages 460-469.
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Nikolay Zolotarev, Anna Fedotova, Olga Kyrchanova, Artem Bonchuk, Aleksey A. Penin, Andrey S. Lando, Irina A. Eliseeva, Ivan V. Kulakovskiy, Oksana Maksimenko & Pavel Georgiev. (2016) Architectural proteins Pita, Zw5,and ZIPIC contain homodimerization domain and support specific long-range interactions in Drosophila . Nucleic Acids Research, pages gkw371.
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Karen M. Plevock, Brian J. Galletta, Kevin C. Slep & Nasser M. Rusan. (2015) Newly Characterized Region of CP190 Associates with Microtubules and Mediates Proper Spindle Morphology in Drosophila Stem Cells. PLOS ONE 10:12, pages e0144174.
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Anton Golovnin, Larisa Melnikova, Igor Shapovalov, Margarita Kostyuchenko & Pavel Georgiev. (2015) EAST Organizes Drosophila Insulator Proteins in the Interchromosomal Nuclear Compartment and Modulates CP190 Binding to Chromatin. PLOS ONE 10:10, pages e0140991.
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Navneet Matharu & Sajad Ahanger. (2015) Chromatin Insulators and Topological Domains: Adding New Dimensions to 3D Genome Architecture. Genes 6:3, pages 790-811.
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S. V. Razin, A. A. Gavrilov & S. V. Ulyanov. (2015) Transcription-controlling regulatory elements of the eukaryotic genome. Molecular Biology 49:2, pages 185-194.
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Oksana Maksimenko, Marek Bartkuhn, Viacheslav Stakhov, Martin Herold, Nickolay Zolotarev, Theresa Jox, Melanie K. Buxa, Ramona Kirsch, Artem Bonchuk, Anna Fedotova, Olga Kyrchanova, Rainer Renkawitz & Pavel Georgiev. (2015) Two new insulator proteins, Pita and ZIPIC, target CP190 to chromatin. Genome Research 25:1, pages 89-99.
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Dorte Bohla, Martin Herold, Imke Panzer, Melanie K. Buxa, Tamer Ali, Jeroen Demmers, Marcus Krüger, Maren Scharfe, Michael Jarek, Marek Bartkuhn & Rainer Renkawitz. (2014) A Functional Insulator Screen Identifies NURF and dREAM Components to Be Required for Enhancer-Blocking. PLoS ONE 9:9, pages e107765.
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Sajad H. Ahanger, Katharina Günther, Oliver Weth, Marek Bartkuhn, Ramesh R. Bhonde, Yogesh S. Shouche & Rainer Renkawitz. (2014) Ectopically tethered CP190 induces large-scale chromatin decondensation. Scientific Reports 4:1.
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