Czasopismo
Tytuł artykułu
Warianty tytułu
Języki publikacji
Abstrakty
9-Aminoacridine carboxamide derivatives studied here form with DNA intercalative complexes which differ in the kinetics of dissociation. Inhibition of total RNA synthesis catalyzed by phage T7 and Escherichia coli DNA-dependent RNA polymerases correlates with the formation of slowly dissociating acridine-DNA complex of time constant of 0.4-2.3 s. Their effect on RNA synthesis is compared with other ligands which form with DNA stable complexes of different steric properties. T7 RNA polymerase is more sensitive to distamycin A and netropsin than the E. coli enzyme while less sensitive to actinomycin D. Actinomycin induces terminations in the transcript synthesized by T7 RNA polymerase. Despite low dissociation rates of DNA complexes with acridines and pyrrole antibiotics no drug dependent terminations are observed with these ligands.
Wydawca
Czasopismo
Rocznik
Tom
Numer
Opis fizyczny
p.127-132,fig.
Twórcy
autor
- Medical University in Lodz, W.Lindleya 6, 90-131 Lodz, Poland, E-mail: chemgen@psk2.am.lodz.pl
autor
autor
autor
autor
Bibliografia
- 1. Richardson, J.P. (1973) J. Moi BioL 78. 703-714.
- 2. Sarris, A.M., Niles, E.G. & Canellakis, E.S. (1977) Biochim. Biophys. Acta 474, 268-278.
- 3. Geacintov, N.E., Waldmeyer, I., Kuzmin, V.A. & Kolubayev, T. (1981) J. Phys. Chem. 85, 3608-3613.
- 4. Straney, D.C. & Crothers, D.M. (1987) Biochemistry 26, 1987-1995.
- 5. Mirau, P.A. & Shafer, R.H. (1982) Biochemistry- 21, 2626-2631.
- 6. Gale, E.F., Cundliffe, E., Reynold«, P.E., Richmond, M.H. & Waring, M.J. (1981) in: The Molecular Basis of Antibiotic Action, pp. 258-401, J. Wiley, New York.
- 7. Wakelin, L.P.G., Atwell, G.J., Rewcastle, G.W. & Denny, W.A. (1987) J. Med. Chem. 30, 855-861.
- 8. Piestrzeniewicz, M., Czyż, M., Denny, W.A. & Gniazdowski, M. (1990) Acta Biochim. Polon. 37, 299-307.
- 9. Piestrzeniewicz, M., Wilmańska. D., Studzian, K., Szemraj, J., Czyż, M., Denny, W.A. & Gniazdowski, M., Z. Naturforsch. in press.
- 10. Tabor, S. & Richardson, C.C. (1985) Proc. Natl. Acad. Sci. U.S.A 82, 1074-1078.
- 11. Evans, C.T., Owens, D.D., Sumegi, B., Kispal, G. & Srere, P.A. (1988) Biochemistry 27, 4680-4686.
- 12. Halle well, R.A., Masiarz, F.R., Najarian, R.C., Puma, J.P., Quiroga, M.R., Randolph, A., Sanchez-Pescador, R., Scandella, C.J., Smith, B.f Steimer, K.S. & Mullenbach, G.T. (1985) Nucleic Acids Res. 13, 2017-2034.
- 13. Sherman, L., Dafni, N., Lieman-Hurwitz, J. & Groner, Y. (1983) Proc. Natl. Acad. Sci. U.S.A. 80,5465-5469.
- 14. Jaros-Kam:ńska, B., Małagocka, E., Ciesielska, E. & Gniazdowski, M. (1981) Stud. Bio- phys. 86, 211-218.
- 15. Krey. A.K., Allison, R.G. & Hahn, F.E. (1973) FEBS Lett 29, 58-62.
- 16. Küpper, K.A., McAllister, W.T. & Bautz, E.K.F. (1973) Eur. J. Biochem. 38, 581-586.
- 17. White, R.J. & Phillips, D.R. (1989) Biochemistry 28, 4277-4282.
- 18. Portugal. J. (1995) Anti-Cancer Drug Design 10, 427-438.
- 19. Puschendorf, B., Petersen, E., Wolf, H., Wer- chau, H. & Grunicke, H. (1971) Biochem. Bio- phys. Res. Commun. 43, 617-624.
- 20. Gniazdowski, M. & Cera, C. (1996) Chem. Rev. 96. 619-634.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.agro-article-555dc6b5-7fea-4511-9b72-9a32677d6e99