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PUBMED FOR HANDHELDS

Journal Abstract Search


294 related items for PubMed ID: 29155797

  • 1. Immunofluorescence Microscopy of γH2AX and 53BP1 for Analyzing the Formation and Repair of DNA Double-strand Breaks.
    Popp HD, Brendel S, Hofmann WK, Fabarius A.
    J Vis Exp; 2017 Nov 03; (129):. PubMed ID: 29155797
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  • 6. TRIM29 is required for efficient recruitment of 53BP1 in response to DNA double-strand breaks in vertebrate cells.
    Wikiniyadhanee R, Lerksuthirat T, Stitchantrakul W, Chitphuk S, Sura T, Dejsuphong D.
    FEBS Open Bio; 2020 Oct 03; 10(10):2055-2071. PubMed ID: 33017104
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  • 8. Particles with similar LET values generate DNA breaks of different complexity and reparability: a high-resolution microscopy analysis of γH2AX/53BP1 foci.
    Jezkova L, Zadneprianetc M, Kulikova E, Smirnova E, Bulanova T, Depes D, Falkova I, Boreyko A, Krasavin E, Davidkova M, Kozubek S, Valentova O, Falk M.
    Nanoscale; 2018 Jan 18; 10(3):1162-1179. PubMed ID: 29271466
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  • 9. DNA repair foci and late apoptosis/necrosis in peripheral blood lymphocytes of breast cancer patients undergoing radiotherapy.
    Marková E, Somsedíková A, Vasilyev S, Pobijaková M, Lacková A, Lukačko P, Belyaev I.
    Int J Radiat Biol; 2015 Jan 18; 91(12):934-45. PubMed ID: 26537244
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  • 11. Double strand break repair functions of histone H2AX.
    Scully R, Xie A.
    Mutat Res; 2013 Oct 18; 750(1-2):5-14. PubMed ID: 23916969
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  • 17. FocAn: automated 3D analysis of DNA repair foci in image stacks acquired by confocal fluorescence microscopy.
    Memmel S, Sisario D, Zimmermann H, Sauer M, Sukhorukov VL, Djuzenova CS, Flentje M.
    BMC Bioinformatics; 2020 Jan 28; 21(1):27. PubMed ID: 31992200
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  • 20. HDGFRP3 interaction with 53BP1 promotes DNA double-strand break repair.
    Zhang Z, Samsa WE, De Y, Zhang F, Reizes O, Almasan A, Gong Z.
    Nucleic Acids Res; 2023 Mar 21; 51(5):2238-2256. PubMed ID: 36794849
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