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184 related items for PubMed ID: 36115870

  • 1. Regulation of human cortical interneuron development by the chromatin remodeling protein CHD2.
    Lewis EMA, Chapman G, Kaushik K, Determan J, Antony I, Meganathan K, Narasimhan M, Gontarz P, Zhang B, Kroll KL.
    Sci Rep; 2022 Sep 17; 12(1):15636. PubMed ID: 36115870
    [Abstract] [Full Text] [Related]

  • 2. Regulatory networks specifying cortical interneurons from human embryonic stem cells reveal roles for CHD2 in interneuron development.
    Meganathan K, Lewis EMA, Gontarz P, Liu S, Stanley EG, Elefanty AG, Huettner JE, Zhang B, Kroll KL.
    Proc Natl Acad Sci U S A; 2017 Dec 26; 114(52):E11180-E11189. PubMed ID: 29229852
    [Abstract] [Full Text] [Related]

  • 3. Human CHD2 is a chromatin assembly ATPase regulated by its chromo- and DNA-binding domains.
    Liu JC, Ferreira CG, Yusufzai T.
    J Biol Chem; 2015 Jan 02; 290(1):25-34. PubMed ID: 25384982
    [Abstract] [Full Text] [Related]

  • 4. CHD2 is Required for Embryonic Neurogenesis in the Developing Cerebral Cortex.
    Shen T, Ji F, Yuan Z, Jiao J.
    Stem Cells; 2015 Jun 02; 33(6):1794-806. PubMed ID: 25786798
    [Abstract] [Full Text] [Related]

  • 5. Chd2 regulates chromatin for proper gene expression toward differentiation in mouse embryonic stem cells.
    Semba Y, Harada A, Maehara K, Oki S, Meno C, Ueda J, Yamagata K, Suzuki A, Onimaru M, Nogami J, Okada S, Akashi K, Ohkawa Y.
    Nucleic Acids Res; 2017 Sep 06; 45(15):8758-8772. PubMed ID: 28549158
    [Abstract] [Full Text] [Related]

  • 6. Mutations in CHD2 cause defective association with active chromatin in chronic lymphocytic leukemia.
    Rodríguez D, Bretones G, Quesada V, Villamor N, Arango JR, López-Guillermo A, Ramsay AJ, Baumann T, Quirós PM, Navarro A, Royo C, Martín-Subero JI, Campo E, López-Otín C.
    Blood; 2015 Jul 09; 126(2):195-202. PubMed ID: 26031915
    [Abstract] [Full Text] [Related]

  • 7. Chd2 Is Necessary for Neural Circuit Development and Long-Term Memory.
    Kim YJ, Khoshkhoo S, Frankowski JC, Zhu B, Abbasi S, Lee S, Wu YE, Hunt RF.
    Neuron; 2018 Dec 05; 100(5):1180-1193.e6. PubMed ID: 30344048
    [Abstract] [Full Text] [Related]

  • 8. FGF2-induced chromatin remodeling regulates CNTF-mediated gene expression and astrocyte differentiation.
    Song MR, Ghosh A.
    Nat Neurosci; 2004 Mar 05; 7(3):229-35. PubMed ID: 14770186
    [Abstract] [Full Text] [Related]

  • 9. Chromatin Remodeling Proteins in Epilepsy: Lessons From CHD2-Associated Epilepsy.
    Lamar KJ, Carvill GL.
    Front Mol Neurosci; 2018 Mar 05; 11():208. PubMed ID: 29962935
    [Abstract] [Full Text] [Related]

  • 10. Chromatin gatekeeper and modifier CHD proteins in development, and in autism and other neurological disorders.
    Muhammad T, Pastore SF, Good K, Ausió J, Vincent JB.
    Psychiatr Genet; 2023 Dec 01; 33(6):213-232. PubMed ID: 37851134
    [Abstract] [Full Text] [Related]

  • 11. Regulation of CHD2 expression by the Chaserr long noncoding RNA gene is essential for viability.
    Rom A, Melamed L, Gil N, Goldrich MJ, Kadir R, Golan M, Biton I, Perry RB, Ulitsky I.
    Nat Commun; 2019 Nov 08; 10(1):5092. PubMed ID: 31704914
    [Abstract] [Full Text] [Related]

  • 12. Chd2 interacts with H3.3 to determine myogenic cell fate.
    Harada A, Okada S, Konno D, Odawara J, Yoshimi T, Yoshimura S, Kumamaru H, Saiwai H, Tsubota T, Kurumizaka H, Akashi K, Tachibana T, Imbalzano AN, Ohkawa Y.
    EMBO J; 2012 Jun 29; 31(13):2994-3007. PubMed ID: 22569126
    [Abstract] [Full Text] [Related]

  • 13. Transcription-coupled recruitment of human CHD1 and CHD2 influences chromatin accessibility and histone H3 and H3.3 occupancy at active chromatin regions.
    Siggens L, Cordeddu L, Rönnerblad M, Lennartsson A, Ekwall K.
    Epigenetics Chromatin; 2015 Jun 29; 8(1):4. PubMed ID: 25621013
    [Abstract] [Full Text] [Related]

  • 14. Gene regulatory networks in neural cell fate acquisition from genome-wide chromatin association of Geminin and Zic1.
    Sankar S, Yellajoshyula D, Zhang B, Teets B, Rockweiler N, Kroll KL.
    Sci Rep; 2016 Nov 24; 6():37412. PubMed ID: 27881878
    [Abstract] [Full Text] [Related]

  • 15. Role of chromodomain helicase DNA-binding protein 2 in DNA damage response signaling and tumorigenesis.
    Nagarajan P, Onami TM, Rajagopalan S, Kania S, Donnell R, Venkatachalam S.
    Oncogene; 2009 Feb 26; 28(8):1053-62. PubMed ID: 19137022
    [Abstract] [Full Text] [Related]

  • 16. Chromatin regulators with tumor suppressor properties and their alterations in human cancers.
    Shu XS, Li L, Tao Q.
    Epigenomics; 2012 Oct 26; 4(5):537-49. PubMed ID: 23130835
    [Abstract] [Full Text] [Related]

  • 17. PARP1 Links CHD2-Mediated Chromatin Expansion and H3.3 Deposition to DNA Repair by Non-homologous End-Joining.
    Luijsterburg MS, de Krijger I, Wiegant WW, Shah RG, Smeenk G, de Groot AJL, Pines A, Vertegaal ACO, Jacobs JJL, Shah GM, van Attikum H.
    Mol Cell; 2016 Feb 18; 61(4):547-562. PubMed ID: 26895424
    [Abstract] [Full Text] [Related]

  • 18. Genome-wide nucleosome specificity and function of chromatin remodellers in ES cells.
    de Dieuleveult M, Yen K, Hmitou I, Depaux A, Boussouar F, Bou Dargham D, Jounier S, Humbertclaude H, Ribierre F, Baulard C, Farrell NP, Park B, Keime C, Carrière L, Berlivet S, Gut M, Gut I, Werner M, Deleuze JF, Olaso R, Aude JC, Chantalat S, Pugh BF, Gérard M.
    Nature; 2016 Feb 04; 530(7588):113-6. PubMed ID: 26814966
    [Abstract] [Full Text] [Related]

  • 19. A mutation in the mouse Chd2 chromatin remodeling enzyme results in a complex renal phenotype.
    Marfella CG, Henninger N, LeBlanc SE, Krishnan N, Garlick DS, Holzman LB, Imbalzano AN.
    Kidney Blood Press Res; 2008 Feb 04; 31(6):421-32. PubMed ID: 19142019
    [Abstract] [Full Text] [Related]

  • 20. Chromatin remodeling dysfunction extends the etiological spectrum of schizophrenia: a case report.
    Poisson A, Chatron N, Labalme A, Fourneret P, Ville D, Mathieu ML, Sanlaville D, Demily C, Lesca G.
    BMC Med Genet; 2020 Jan 08; 21(1):10. PubMed ID: 31914951
    [Abstract] [Full Text] [Related]


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