Диссертация (1149296), страница 16
Текст из файла (страница 16)
1. – №. 3. – С. 169-175.37.Sirajuddin M., Ali S., Badshah A. Drug–DNA interactions and their studyby UV–Visible, fluorescence spectroscopies and cyclic voltametry //Journal ofPhotochemistry and Photobiology B: Biology. – 2013. – Т. 124. – С. 1-19.38.Zimmer C., Reinert K. E., Luck G. et al. Interaction of the oligopeptideantibiotics netropsin and distamycin A with nucleic acids //Journal of molecularbiology. – 1971. – Т. 58. – №. 1. – С. 329-348.10839.Garbett N.
C., Ragazzon P. A., Chaires J. B. Circular dichroism todetermine binding mode and affinity of ligand–DNA interactions //Nature protocols. –2007. – Т. 2. – №. 12. – С. 3166-3172.40.Lewis E. A., Munde M., Wang S. et al. Complexity in the binding of minorgroove agents: netropsin has two thermodynamically different DNA binding modes at asingle site //Nucleic acids research.
– 2011. – Т. 39. – №. 22. – С. 9649-9658.41.Liu Y., Collar C. J., Kumar A. et al. Heterocyclic diamidine interactions atAT base Pairs in the DNA minor groove: effects of heterocycle differences, DNA ATsequence and length //The Journal of Physical Chemistry B. – 2008. – Т. 112. – №. 37.– С. 11809-11818.42.Matulis D., Rouzina I., Bloomfield V. A. Thermodynamics of DNAbinding and condensation: isothermal titration calorimetry and electrostatic mechanism//Journal of molecular biology. – 2000. – Т. 296. – №. 4. – С. 1053-1063.43.Bloomfield V.
A. Condensation of DNA by multivalent cations:considerations on mechanism //Biopolymers. – 1991. – Т. 31. – №. 13. – С. 1471-1481.44.Bloomfield V. A. DNA condensation by multivalent cations //Biopolymers.– 1997. – Т. 44. – №. 3. – С. 269-282.45.Bloomfield V. A. DNA condensation //Current opinion in structuralbiology.
– 1996. – Т. 6. – №. 3. – С. 334-341.46.Fiel R. J., Howard J. C., Mark E. H., Gupta N. D. Interaction of DNA witha porphyrin ligand: evidence for intercalation //Nucleic acids research. – 1979. – Т. 6. –№. 9. – С. 3093-3118.47.Moroshkina E. B., Saf'yannikova M. G. Interaction of DNA withCompounds of the Phenazine Series //Биофизика.
– 1999. – Т. 44. – №. 3. – С. 428429.48.Strekowski L., Wilson B. Noncovalent interactions with DNA: an overview//Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis. – 2007.– Т. 623. – №. 1. – С. 3-13.10949.Quigley G. J., Wang A. H., Ughetto G. et al. Molecular structure of ananticancer drug-DNA complex: daunomycin plus d (CpGpTpApCpG) //Proceedings ofthe National Academy of Sciences.
– 1980. – Т. 77. – №. 12. – С. 7204-7208.50.Веселков А. Н., Морошкина Е. Б., Соболева О. И., Фрисман Э. В.СравнительноеисследованиевзаимодействияДНКсдауномициномипрофлавином в растворе // Молек. биология. –Т. 18. Вып. 2. – С. 481–487.51.Кривцова М.
А., Морошкина Е. Б., Хамман Х. и др. Изучениевзаимодействия ДНК с низкомолекулярными лигандами различной структуры. 1.Комплексы ДНК с актиномицином и его простыми аналогами // Молек. биология.– 1981. –Т. 15. – Вып. 3. – С. 613–62152.Sobell H. M., Jain S. C.
Stereochemistry of actinomycin binding to DNA:II. Detailed molecular model of actinomycin-DNA complex and its implications//Journal of molecular biology. – 1972. – Т. 68. – №. 1. – С. 21-34.53.Le Pecq J. B., Le Bret M., Barbet J., Roques B. DNA polyintercalatingdrugs: DNA binding of diacridine derivatives //Proceedings of the National Academy ofSciences. – 1975. – Т. 72. – №.
8. – С. 2915-2919.54.Kuhlmann K. F., Charbeneau N. J., Mosher C. W. Synthesis, DNA-bindingand biological activity of a double intercalating analog of ethidium bromide //Nucleicacids research. – 1978. – Т. 5. – №. 7. – С. 2629-2642.55.Canellakis E. S., Bono V., Bellantone R. A. et al.
Diacridines: Bifunctionalintercalators III. Definition of the general site of action //Biochimica et Biophysica Acta(BBA)-Nucleic Acids and Protein Synthesis. – 1976. – Т. 418. – №. 3. – С. 300-314.56.Морошкина Е.Б., Степанова Т.Ф., Ракецкая В.В., Фрисман Э.В.Взаимодействие ДНК с бифункциональным акридиновым красителем // Мол.Биол. – 1987. –Т.21. – Вып. 2. – С. 389-39457.Trauger J.
W., Baird E. E., Dervan P. B. Recognition of 16 base pairs in theminor groove of DNA by a pyrrole-imidazole polyamide dimer //Journal of theAmerican Chemical Society. – 1998. – Т. 120. – №. 14. – С. 3534-3535.58.Mrksich M., Wade W. S., Dwyer T. J. et al. Antiparallel side-by-sidedimeric motif for sequence-specific recognition in the minor groove of DNA by the110designed peptide 1-methylimidazole-2-carboxamide netropsin //Proceedings of theNational Academy of Sciences.
– 1992. – Т. 89. – №. 16. – С. 7586-7590.59.Wade W. S., Mrksich M., Dervan P. B. Design of peptides that bind in theminor groove of DNA at 5'-(A, T) G (A, T) C (A, T)-3'sequences by a dimeric side-byside motif //Journal of the American Chemical Society. – 1992. – Т.
114. – №. 23. – С.8783-8794.60.Морошкина Е.Б., Кривцова М.А., Глибин Е.Н. Взаимодействие ДНК сактиноцил -бис-битиазолом// Молек. биология. – 1995. – Т.29. – №. 1. – С.354-359.61.Фрисман Э.В., Дьякова Е.Б., Голикова А.И. и др. Сравнительноеизучение конформации свободной ДНК и комплексованной с гистоном f1 врастворах разной ионной силы. // Молек. биология. – 1973. – Т. 7. – Вып. 5. – С.745-752.62.Морошкин В.А., Фрисман Э.В., Рамм Е.В. и др. Исследованиекомплексов ДНК с синтетическим фрагментом гистона Н4 и полипептидом (alyorn-cly). // Молек.
биология. – 1980.– Т. 14. – С. 795-803.63.ЕвдокимовЮ.М.,СаляновВ.И.,МчедлишвилиБ.В.идр.Молекулярное конструирование на основе двухцепочечных нуклеиновых кислоти синтетических полинуклеотидов для создания интегрального биодатчика. //Сенсорные системы. – 1999. –Т.13.– №1. – С. 82-91.64.Lloyd R. S., Haidle C. W., Robberson D. L. Noncovalent intermolecularcrosslinks are produced by bleomycin reaction with duplex DNA //Proceedings of theNational Academy of Sciences. – 1979. – Т.
76. – №. 6. – С. 2674-2678.65.Wang J., Yang X. Multiplex binding modes of toluidine blue with calfthymus DNA and conformational transition of DNA revealed by spectroscopic studies//Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. – 2009. – Т.74. – №. 2. – С. 421-426.66.Goodwin S., Smith A.
F., Horning E. C. Alkaloids of Ochrosia ellipticaLabill. 1 //Journal of the American Chemical Society. – 1959. – Т. 81. – №. 8. – С.1903-1908.11167.Devraj R., Cushman M. Selective cytotoxicity of certain 9-substitutedellipticines for leukemia cells in a variety of leukemia cell cultures //Bioorganic &Medicinal Chemistry Letters. – 1997. – Т. 7. – №. 3. – С. 369-372.68.Acton E. M., Narayanan V. L., Risbood P. A. et al. Anticancer specificityof some ellipticinium salts against human brain tumors in vitro //Journal of medicinalchemistry. – 1994. – Т.
37. – №. 14. – С. 2185-2189.69.Rouesse J., Spielmann M., Turpin F. et al. Phase II study of elliptiniumacetate salvage treatment of advanced breast cancer //European Journal of Cancer. –1993. – Т. 29. – №. 6. – С. 856-859.70.Ohashi M., Oki T. Overview Oncologic, Endocrine & Metabolic:Oncologic, Endocrine & Metabolic: Ellipticine and Related Anticancer Agents //ExpertOpinion on Therapeutic Patents. – 1996. – Т. 6.
– №. 12. – С. 1285-1294.71.Feigon J., Denny W. A., Leupin W., Kearns D. R.Interactions ofantitumor drugs with natural DNA: proton NMR study of binding mode and kinetics//Journal of medicinal chemistry. – 1984. – Т. 27. – №. 4. – С. 450-465.72.Ismail M. A., Sanders K. J., Fennell G. C. et al. Spectroscopic studies of9‐hydroxyellipticine binding to DNA //Biopolymers. – 1998.
– Т. 46. – №. 3. – С. 127143.73.Monnot M., Mauffret O., Simon V. et al. DNA-drug recognition and effectson topoisomerase II-mediated cytotoxicity. A three-mode binding model for ellipticinederivatives //Journal of Biological Chemistry. – 1991. – Т. 266. – №. 3. – С. 1820-1829.74.Monnot M., Mauffret O., Simon V. et al. A CD study of interactions ofellipticine derivatives with DNA //FEBS letters. – 1990. – Т. 273. – №. 1-2.
– С. 71-74.75.Grummitt A. R., Harding M. M., Anderberg P. I., Rodger A. CarbohydrateDerivatives of the Antitumour Alkaloid 9‐Hydroxyellipticine //European Journal ofOrganic Chemistry. – 2003. – Т. 2003. – №. 1. – С. 63-71.76.Maiti M., Kumar G. S. Polymorphic nucleic acid binding of bioactiveisoquinoline alkaloids and their role in cancer //Journal of nucleic acids.
– 2010. – Т.2010. – С. 1-23.11277.Birdsall T. C., Kelly G. S. Berberine therapeutic potential of an alkaloidfound in several medicinal plants //Alternative Medicine Review. – 1997. – Т. 2. – №.2. – С. 94-103.78.Verpoorte R. Antimicrobially active alkaloids //Alkaloids. – Springer US,1998. – С. 397-433.79.Debnath D., Kumar G. S., Nandi R., Maiti M. Interaction of berberinechloride with deoxyribonucleic acids: evidence for base and sequence specificity//Indian journal of biochemistry & biophysics. – 1989.
– Т. 26. – №. 4. – С. 201-208.80.Bhadra K., Maiti M., Kumar G. S. Interaction of isoquinoline alkaloidpalmatine with deoxyribonucleic acids: binding heterogeneity, and conformational andthermodynamic aspects //Chemistry & biodiversity. – 2008. – Т. 5. – №. 4. – С. 575590.81.Pilch D. S., Yu C., Makhey D. et al. Minor groove-directed andintercalative ligand-DNA interactions in the poisoning of human DNA topoisomerase Iby protoberberine analogs //Biochemistry.
– 1997. – Т. 36. – №. 41. – С. 12542-12553.82.Chen W. H., Chan C. L., Cai Z. et al. Study on noncovalent complexes ofcytotoxic protoberberine alkaloids with double-stranded DNA by using electrosprayionization mass spectrometry //Bioorganic & medicinal chemistry letters. – 2004. – Т.14. – №. 19. – С. 4955-4959.83.Mandel I. D. Antimicrobial mouthrinses: overview and update //TheJournal of the American Dental Association. – 1994.















