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    Academic Journal
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    المساهمون: Работа выполнена при финансовой поддержке Российского научного фонда (проект №19-74- 30003).

    المصدر: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; Том 75, № 4 (2020); 296-301 ; Вестник Московского университета. Серия 16. Биология; Том 75, № 4 (2020); 296-301 ; 0137-0952

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    Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/942/538; Horn V., Ingen van H. Recognition of nucleosomes by chromatin factors: lessons from data-driven dockingbased structures of nucleosome-protein complexes // Chromatin and Epigenetics / Eds. C. Logie and T.A. Knoch. IntechOpen, 2018. DOI:10.5772/intechopen.81016.; Armeev G.A., Gribkova A.K., Pospelova I., Komarova G.A., Shaytan A.K. Linking chromatin composition and structural dynamics at the nucleosome level // Curr. Opin. Struct. Biol. 2019. Vol. 56. P. 46–55.; Kalashnikova A.A., Porter-Goff M.E., Muthurajan U.M., Luger K., Hansen J.C. The role of the nucleosome acidic patch in modulating higher order chromatin structure // J. R. Soc. Interface. 2013. Vol. 10. N 82: 20121022; Barbera A.J., Chodaparambil J.V., Kelley-Clarke B., Joukov V., Walter J.C., Luger K., Kaye K.M. The nucleosomal surface as a docking station for Kaposi’s sarcoma herpesvirus LANA // Science. 2006. Vol. 311. N 5762. P. 856–861.; Adhireksan Z., Palermo G., Riedel T., Ma Z., Muhammad R., Rothlisberger U., Dyson P.J., Davey C.A. Allosteric cross-talk in chromatin can mediate drug-drug synergy: 1 // Nat. Commun. 2017. Vol. 8. N 1: 14860.; Beauchemin C., Moerke N.J., Faloon P., Kaye K.M. Assay development and high-throughput screening for inhibitors of Kaposi’s sarcoma–associated herpesvirus N-terminal latency-associated nuclear antigen binding to nucleosomes // J. Biomol. Screen. 2014. Vol. 19. N 6. P. 947–958.; Teles K., Fernandes V., Silva I., Leite M., Grisolia C., Lobbia V.R., van Ingen H., Honorato R., Lopes-de-Oliveira P., Treptow W., Santos G. Nucleosome binding peptide presents laudable biophysical and in vivo effects // Biomed. Pharmacother. 2020. Vol. 121: 109678.; Gaykalova D.A., Kulaeva O.I., Bondarenko V.A., Studitsky V.M. Preparation and analysis of uniquely positioned mononucleosomes // Chromatin Protocols. Methods in Molecular Biology (Methods and Protocols), vol 523 / Ed. S. Chellappan. Clifton: Humana Press, 2009. P. 109–123.; Lowary P.T., Widom J. New DNA sequence rules for high affinity binding to histone octamer and sequencedirected nucleosome positioning // J. Mol. Biol. 1998. Vol. 276. N 1. P. 19–42.; Schindelin J., Arganda-Carreras I., Frise E., et al. Fiji: an open-source platform for biological-image analysis // Nat. Methods. 2012. Vol. 9. N 7. P. 676–682.; Millman K.J., Aivazis M. Python for scientists and engineers // Comput. Sci. Eng. 2011. Vol. 13. N 2. P. 9–12.; Weiss J.N. The Hill equation revisited: uses and misuses // FASEB J. 1997. Vol. 11. N 11. P. 835–841.; Chodaparambil J.V., Barbera A.J., Lu X., Kaye K.M., Hansen J.C., Luger K. A charged and contoured surface on the nucleosome regulates chromatin compaction: 11 // Nat. Struct. Mol. Biol. 2007. Vol. 14. N 11. P. 1105–1107.; Lyubitelev A.V., Kudryashova K.S., Mikhaylova M.S., Malyuchenko N.V., Chertkov O.V., Studitsky V.M., Feofanov A.V., Kirpichnikov M.P. Change in linker DNA conformation upon histone H1.5 binding to nucleosome: Fluorescent microscopy of single complexes // Moscow Univ. Biol. Sci. Bull. 2016. Vol. 71. N 2. P. 108–113.; Shaytan A.K., Armeev G.A., Goncearenco A., Zhurkin V.B., Landsman D., Panchenko A.R. Coupling between histone conformations and DNA geometry in nucleosomes on a microsecond timescale: atomistic insights into nucleosome functions // J. Mol. Biol. 2016. Vol. 428. N 1. P. 221–237.; https://vestnik-bio-msu.elpub.ru/jour/article/view/942

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    Relation: ДНК-связывающие свойства 2'-гидроксифлаванона и его производного на основе модификации Шиффа / В. М. Королевич [и др.] // Весці Нацыянальнай акадэміі навук Беларусі. Серыя біялагічных навук. - 2019. - Том 64, N 2. - С. 222-228 : граф.; https://rep.polessu.by/handle/123456789/19413