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PUBMED FOR HANDHELDS

Journal Abstract Search


213 related items for PubMed ID: 38427231

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  • 3. Precise epigenomic editing with a SunTag-based modular epigenetic toolkit.
    Guhathakurta S, Adams L, Jeong I, Sivakumar A, Cha M, Bernardo Fiadeiro M, Hu HN, Kim YS.
    Epigenetics; 2022 Dec; 17(13):2075-2081. PubMed ID: 35920441
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  • 5. Establishment of Cell Lines Stably Expressing dCas9-Fusions to Address Kinetics of Epigenetic Editing.
    Goubert D, Koncz M, Kiss A, Rots MG.
    Methods Mol Biol; 2018 Dec; 1767():395-415. PubMed ID: 29524148
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  • 8. Enzyme-free targeted DNA demethylation using CRISPR-dCas9-based steric hindrance to identify DNA methylation marks causal to altered gene expression.
    Sapozhnikov DM, Szyf M.
    Nat Protoc; 2022 Dec; 17(12):2840-2881. PubMed ID: 36207463
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  • 9. Epigenome editing based on CRISPR/dCas9p300 facilitates transdifferentiation of human fibroblasts into Leydig-like cells.
    Huang H, Zhang W, Zhang J, Zhao A, Jiang H.
    Exp Cell Res; 2023 Apr 15; 425(2):113551. PubMed ID: 36914062
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  • 11. Development of an inducer-free, virulence gene promoter-controlled, and fluorescent reporter-labeled CRISPR interference system in Staphylococcus aureus.
    Miah R, Johannessen M, Kjos M, Lentz CS.
    Microbiol Spectr; 2024 Oct 03; 12(10):e0060224. PubMed ID: 39162514
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  • 12. Stabilization of Foxp3 expression by CRISPR-dCas9-based epigenome editing in mouse primary T cells.
    Okada M, Kanamori M, Someya K, Nakatsukasa H, Yoshimura A.
    Epigenetics Chromatin; 2017 Oct 03; 10():24. PubMed ID: 28503202
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  • 13. CRISPR-based epigenome editing: mechanisms and applications.
    Fadul SM, Arshad A, Mehmood R.
    Epigenomics; 2023 Nov 03; 15(21):1137-1155. PubMed ID: 37990877
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  • 16. CRISPR/dCas9-mediated epigenetic modification reveals differential regulation of histone acetylation on Aspergillus niger secondary metabolite.
    Li X, Huang L, Pan L, Wang B, Pan L.
    Microbiol Res; 2021 Apr 03; 245():126694. PubMed ID: 33482403
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  • 17. Targeting cancer epigenetics with CRISPR-dCAS9: Principles and prospects.
    Rahman MM, Tollefsbol TO.
    Methods; 2021 Mar 03; 187():77-91. PubMed ID: 32315755
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  • 18. Genome and epigenome engineering CRISPR toolkit for in vivo modulation of cis-regulatory interactions and gene expression in the chicken embryo.
    Williams RM, Senanayake U, Artibani M, Taylor G, Wells D, Ahmed AA, Sauka-Spengler T.
    Development; 2018 Feb 23; 145(4):. PubMed ID: 29386245
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  • 19. Temporal and Spatial Epigenome Editing Allows Precise Gene Regulation in Mammalian Cells.
    Kuscu C, Mammadov R, Czikora A, Unlu H, Tufan T, Fischer NL, Arslan S, Bekiranov S, Kanemaki M, Adli M.
    J Mol Biol; 2019 Jan 04; 431(1):111-121. PubMed ID: 30098338
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  • 20. Site-specific recruitment of epigenetic factors with a modular CRISPR/Cas system.
    Anton T, Bultmann S.
    Nucleus; 2017 May 04; 8(3):279-286. PubMed ID: 28448738
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