Структурно-функциональные основы каталитической активности эндонуклеазы рестрикции Eco29kI
Диссертация
Интересным оказался тот факт, что среди эндонуклеаз рестрикции типа II существуют ферменты, имеющие в своей структуре консервативные мотивы неродственных фосфодиэстераз других классов и тем самым отличающиеся от типичных систем типа II семейства «PD.(D/E)XnK». Первым ферментом типа II, в структуре которого был обнаружен каталитический мотив нуклеазы Nuc семейства «PLD», была эндонуютеаза ВШ типа… Читать ещё >
Список литературы
- Зайцев Е.Н., Зайцева Е. М., Бакланова И. В., Горелов В. Н., Кузьмин Н. П., Крюков В. М., Лапцов В. А. Клонирование и секвенирование гена гесА из штамма Pseudomonas aeruginosa. II Генетика. 1986. Т. 22. С. 2721−2727.
- Мазин А.В., Кузнеделов К. Д. Методы молекулярной генетики и генной инженерии.-Новосибирск: Наука, сиб. отд-е. 1990. С. 14−25.
- Ackers G.K., Johnson A.D. and Shea M.A. Quantitative model for gene regulation by lambda phage repressor // Proc Natl Acad Sci U S A. 1982. Vol. 79. P. 1129−1133.
- Aravind L., Makarova K.S. and Koonin E.V. Survey and summary: Holliday junction resolvases and related nucleases: identification of new families, phyletic distribution and evolutionary trajectories //Nucleic Acids Res. 2000. Vol. 28. P. 3417−3432.
- Barkley M.D. Salt dependence of the kinetics of the lac repressor-operator interaction: role of nonopcrator deoxyribonucleic acid in the association reaction // Biochemistry. 1981. Vol. 20. P. 3833−3842.
- Belfort M. and Roberts R.J. Homing endonucleases: keeping the house in order // NAR. 1997. Vol. 25. N. 17. P. 3379−3388.
- Bcrtani G. and Weigle J.J. Host-controlled variation in bacterial viruses // J.Bacteriol. 1953. Vol. 65. P. 113−121.
- Bitinaite J., Wah D. A., Aggarwal A. K. and Schildkraut I. Fokl dimerization is required for DNA cleavage // Biochemistry. 1998. Vol. 95. P. 10 570−10 575.
- Bujard H., Gentz R., Lanzer M., Stuber D., Miiller M., Ibrahimi I., Hauptle M.T., Dobberstein В. A T5 promotor based transcription-translation system for the analysis of proteins in vivo and in vitro. // Methods in Enzymology. 1987. V. 155. P. 416−433.
- Bujnicki J.M. Understanding the evolution of restriction-modification systems: Clues from sequence and structure comparisons // Acta Biochim Pol. 2001. Vol. 4. P. 935−967.
- Bujnicki J.M., Radlinska M. and Rychlewski L. Polyphyletic evolution of type II restriction enzymes revisited: two independent sources of second-hand folds revealed // Trends Biochem Sci. 2001. Vol. 26. P. 9−11.
- Catto L.E., Bellamy S.R.W., Retter S.E. and Halford S.E. Dynamics and consequences of DNA looping by the Fokl restriction endonucleases // Nucleic Acids Research. 2008. Vol. 36(6). P. 2073−2081.
- Chan S.H., Bao Y., Ciszak E., Laget S., Xu S.Y. Catalytic domain of restriction endonuclease Bmrl as a cleavage module for engineering endonucleases with novel substrate specificities // Nucleic Acids Res. 2007. Vol. 35. P. 6238−6248.
- Chevalier B.S. and Stoddard B.L. Homing cndonucleases: structural and functional insight into the catalysts of intron/intein mobility // Nucleic Acids Res. 2001. Vol. 29(18). P. 3757−3774.
- Christ F., Schoettler S., Wende W., Steuer S., Pingoud A. and Pingoud V. The monomeric homing endonuclease Pl-Scel has two catalytic centres for cleavage of the two strands of its DNA substrate // EMBO J. 1999. Vol. 18(24). P. 6908−6916.
- Connolly B.A. Assay of restriction endonucleases using oligonucleotides // From: Methods in Molecular Biology. 30: DNA-Protein Interactions: Principles and Protocols. Edited by: G. G. Kneale. 1994. P. 371−383.
- Ehbrecht H.-J., Pingoud A., Urbanke C., Maass G. and Gualerzi C. Linear diffusion of restriction endonucleases on DNA // J. Biol. Chem. 1985. Vol. 260. P. 6160−6166.
- Fiandt M., Hraedecna Z., Lozeron II.A., Szybalski W. The Bacteriophage Lambda. // Cold Spring Harbor Lab. New York. 1971.
- Frednoff P., Lurz R., Luder G. and Pingoud A. Sau3Al, a monomeric type II restriction endonuclease that dimerizes on thereby induces DNA loops // J Biol Chem. 2001. Vol. 276(26). P. 23 581−23 588.
- Galburt E.A. and Stoddard B.L. Catalytic mechanisms of restriction and homing endonucleases // Biochemistry. 2002. Vol. 47. P. 13 851−13 860.
- Gasiunas G., Sasnauskas G., Tamulaitis G., Urbanke C., Razaniene D., Siksnys V. Tetrameric restriction enzymes: expansion to the GIY-YIG nuclease family // Nucleic Acids Res. 2008. Vol. 36(3). P. 938−949.
- Groger R.K., Morrow D.M., Tykocinski M.L. Directional antisense and sense cDNA cloning using Epstein-Barr virus episomal expression vectors. // Gene. 1989. V. 81. P. 285−294
- Huai Q., Colandene J.D., Chen Y., Luo F., Zhao Y., Topal M.D. and Ke H. Crystal structure of Nael an evolutionary bridge between DNA endonuclease and topoisomerase//The EMBO Journal. 2000. Vol. 19(12). P. 3110−3118.
- Ibryashkina E.M., Sasnauskas G., Solonin A.S., Zakharova M.V. and Siksnys V. Oligomeric Structure Diversity within the GIY-YIG Nuclease Family // J. Mol. Biol. 2009. Vol. 387. P. 10−16.
- Jakubauskas A., Giedriene J., Bujnicki. J.M., Janulaitis A. Identification of a single HNH active site in type IIS restriction endonuclease Eco31I // J. Mol. Biol. 2007. Vol. 370. P. 157−169.
- Jo K., Topal M.D. DNA topoisomerase and recombinase activities in Nael restriction endonucleases // Science. 1995. Vol. 267. P. 1817−1820.
- Jurica M.S. and Stoddard B.L. Homing endonucleases: structure, function and evolution // Cell. Mol. Life Sci. 1999. Vol. 55. P. 1304−1326.
- Kessler C. and Manta V. Specificity of restriction endonucleases and DNA modification methyltransferases a review (edition 3) // Gene. 1990. Vol. 92. P. 1−248.
- Kim Y., Grable J. C., Love R., Green P.J. and Rosenberg J.M. Refinement of EcoRI endonuclease crystal structure: A revised protein chain tracing // Science. 1990. Vol. 249. P. 1307−1309.
- Kirsanova O.V., Baskunov V.B., Gromova E.S. Type HE and IIF restriction endonucleases interacting with two recognition sites in DNA // Mol Biol (Mosk). 2004. Vol. 38(5). P. 886−900.
- Kriukiene E., Lubiene J., Lagunavicius A., Lubys A. Mnll—The member of H-N-H subtype of Type IIS restriction endonucleases // Biochim. Biophys. Acta. 2005. Vol. 1751. P. 194−204.
- Kruger D.H., Kupper D., Meisel A., Reuter M. and Schroeder C. The significance of distance and orientation of restriction endonuclease recognition sites in viral DNA genomes // FEMS Microbiol. Rev. 1995. Vol. 17. P. 177−184.
- Modrich P. and Zabel D. EcoRI endonuclease. Physical and catalytic properties of the homogenous enzyme // J Biol Chem. 1976. Vol. 251(19). P. 5866−74.
- Mucke M., Kruger D. H. and Reuter M. Diversity of Type II restriction endonucleases that require two DNA recognition sites // Nucleic Acids Res. 2003. Vol. 31(21). P. 60 796 084.
- Newman M., Lunnen K., Wilson G., Greci J., Schildkraut I. and Phillips S.E. Crystal structure of restriction endonuclease Bgll bound to its interrupted DNA recognition sequence // EMBO J. 1998. Vol. 17. P. 5466−5476.
- Newman M., Strzelecka Т., Dorner L.F., Schildkraut I. and Aggarwal A.K. Structure of BamHI endonuclease bound to DNA: Partial folding and unfolding on DNA binding // Science. 1995. Vol. 269. P. 656−663.
- Orlowski J. and Bujnicki J. M. Structural and evolutionary classification of Type II restriction enzymes based on theoretical and experimental analyses // Nucleic Acids Research. 2008. Vol. 36 (11). P. 3552−3569.
- Pertzev A.V., Kravetz A.N., Mayorov S.G., Zakharova M.V., Solonin A.S. Isolation of a strain overproducing endonuclease Eco29kI: purification and characterization of the homogeneous enzyme // Biochemistry (Mosc). 1997. Vol. 62(7). P. 732−741.
- Pertzev A.V., Ruban N.M., Zakharova M.V., Beletzkaja I.V., Petrov S.I., Kravetz A.N., Solonin A.S. Eco29kl, a novel plasmid encoded restriction endonuclease from Escherichia coli II Nucl. Acids Res. 1992. V. 20. P. 1991.
- Pingoud A. and Jeltsch A. Recognition and clcavage of DNA by type II restriction endonucleases // Eur. J. Biochem. 1997. Vol. 246. P. 1−22.
- Pingoud A. and Jeltsch A. Structure and function of type II restriction endonucleases // Nucleic Acids Res. 2001. Vol. 18. P. 3705−3727.
- Pommer A.J., Cal S., Keeble A.H., Walker D., Evans S.J., Kuhlmann U.C., Cooper A., Connolly B.A., Hemmings A.M. Mechanism and cleavage specificity of the H-N-H endonuclease colicin E9 // J. Mol. Biol. 2001. Vol. 314. P. 735−749.
- Roberts R.J. and Halford S.E. Type II restriction endonucleases. In:(Eds.) Nucleases // Cold Spring Harbor Laboratory Press. New York. 1992. P. 35−88.
- Ruther U. A recA lacZ transformation host. // Nucleic Acids Res. 1981. V. 9. P. 40 874 098.
- Sambrook J., Frith E.F., Maniatis T. Molecular cloning: A laboratory manual // Cold Spring Harbor Lab. Press. New York. 1989.
- Sanger F., Nicklen S., Coulson A.R. DNA sequencing with chain-terminating inhibitors // Proc Natl Acad Sci USA. 1977. Vol. 74(12). P. 5463−5467.
- Saravanan M., Bujnicki J.M., Cymerman I.A., Rao D.N. and Nagaraja V. Type II restriction endonuclease R. Kpnl is a member of the HNH nuclease superfamily // Nucleic Acids Res. 2004. Vol. 32. P. 6129−6135.
- Sasnauskas G., Halford S. E. and Siksnys V. How the Bfil restriction enzyme uses one active site to cut two DNA strands // PNAS. 2003. Vol. 11. P. 6410−6415.
- Sasnauskas G., Jeltsch A., Pingoud A. and Siksnys V. Plasmid DNA cleavage by Muni restriction enzyme: single-turnover and steady-state kinetic analysis // Biochemistry. 1999. Vol. 38. P. 4028−4036.
- Shen B.W., Landthaler M., Shub D.A., Stoddard B.L. DNA binding and cleavage by the HNH homing endonuclease I-Hmul // J. Mol. Biol. 2004. Vol. 342. P. 43−56.
- Shibata Т., Ikava S., Kim C., Ando T. Sate specific deoxyribonucleases in Bacillus subtilis and other Bacillus strains // J. Bacteriol. 1976. Vol. 128. P. 473−476.
- Shimotsu H., Takahashi H., Saito H. Site-specific endonucleases in Streptomyces strains //Agric. Biol. Chem. 1980. Vol. 44. P. 1665−1666.
- Siksnys V., Skirgaila R., Sasnauskas G., Urbankc C., Cherny D., Grazulis S., Huber R. The CfrlOI restriction enzyme is functional as a tetramer // J Mol Biol. 1999. Vol. 291(5). P. 1105−18.
- Sistla S. and Rao D.N. S-adenosyl-L-methionine-dependent restriction enzymes // Crit. Rev. Biochem. Mol. Biol. 2004. Vol. 39. P. 1−19.
- Soundararajan M., Chang Z., Morgan R. D., Heslop P. and Connolly B. A. DNA binding and recognition by the lis restriction endonuclease MboII // J Biol Chem. 2002. Vol. 277(2). P. 887−895.
- Tamulaitis G., Sasnauskas G., Mucke M., Siksnys V. Simultaneous binding of three recognition sites is necessary for a concerted plasmid DNA cleavage by EcoRII restriction endonucleases // J Mol Biol. 2006. Vol. 358(2). P. 406−419.
- Tamulaitis G., Solonin A.S., Siksnys V. Alternative arrangements of catalytic residues at the active sites of restriction enzymes // FEBS Letters. 2002. Vol. 518(1−3). P. 17−22.
- Taylor J.D. and Halford S.E. The activity of the EcoRV restriction endonuclease is influenced by flanking DNA sequences both inside and outside the DNA-protein complex // Biochemistry. 1992. Vol. 31. P. 90−97.
- Terry B.J., Jack W.E. and Modrich P. Facilitated diffusion during catalysis by EcoRI endonuclease: nonspecific interactions in EcoRI catalysis // J. Biol. Chem., 1985. Vol. 260. P. 13 130−13 137.
- Venclovas C., Timinskas A. and Siksnys V. Five-stranded beta-sheet sandwiched with two alpha-helices: a structural link between restriction endonucleases EcoRI and EcoRV // Proteins. 1994. Vol. 20. P. 279−282.
- Wah D.A., Bitinaite J., Schildkraut I. and Aggarwal A.K. Structure of Fokl has implications for DNA cleavage // Proc. Natl Acad. Sci. USA. 1998. Vol. 95. P. 1 056 410 569.
- Wende W., Grindl W., Christ F., Pingoud A. and Pingoud V. Binding, bending and cleavage of DNA substrates by the homing endonuclease Pl-Scel // Nucleic Acids Research. 1996. Vol. 24 (21). P. 4123132.
- Werner W. E. Ferguson Plot Analysis of High Molecular Weight Glutenin Subunits by Capillary Electrophoresis // Cereal Chem. 1995. Vol. 72(3). P. 248−251.
- Wilson G.G. and Murray N.E. Restriction and modification systems // Annu. Rev. Genet. 1991. Vol. 25. P. 585−627.
- Xia Y., Burbank D.E., Van Etten J.L. Restriction endonuclease activity induced by NC-1A virus infection of a Chlorella-like green alga // Nucleic Acids Res. 1986. Vol. 14. P. 6017−6030.
- Yoshioka K. KyPlot — a user-oriented tool for statistical data analysis and visualization // Comput. Stat. 2002. Vol. 17. P. 425−437.
- Zakharova M.V., Pertzev A.V., Kravetz A.N., Beletskaya I.V., Shlyapnikov M.G. and Solonin A.S. Complete nucleotide of the Hsd plasmid pEC029 and identification of its functional regions // BBA. 1998. Vol. 1398. P. 106−112.
- Zaremba M., Sasnauskas G., Urbanke C., Siksnys V. Conversion of the tctrameric restriction endonuclease Bse634I into a dimer: oligomeric structure-stability-function correlations // J Mol Biol. 2005. Vol. 348(2). P. 459−78.
- Zaremba M., Sasnauskas G., Urbanke C., Siksnys V. Allosteric communication network in the tetrameric restriction endonuclease Bse634I // J Mol Biol. 2006. Vol. 363(4). P. 800−812.1. БЛАГОДАРНОСТИ
- Выражаю искреннюю благодарность своему научному руководителю к.б.н. Марине Викторовне Захаровой за руководство, моральную поддержку и постоянную помощь при выполнении данной работы.
- Особо благодарна зав. лабораторией «Молекулярной микробиологии» к.б.н. Александру Сергеевичу Солонину за ценные советы, критические замечания и помощь в написании диссертационной работы.
- Я глубоко признательна всем сотрудникам нашей лаборатории за поддержку и помощь, оказанную мне в процессе выполнения экспериментов.
- Выражаю большую благодарность д.м.н. Япушу Буйницкому (Институт молекулярной биологии, г. Варшава, Польша) за сравнительный анализ эндонуклеаз I-Tevl и Eco29kI и предоставленные компьютерные модели этих белков.
- Я благодарю Еремина Сергея Александровича (МГУ) за предоставленную возможность повысить свою квалификацию на базе лаборатории «Биотехнологии» при МГУ и помощь в освоении новых методик.
- Я признательна всем сотрудникам лаборатории «ДНК-белковых взаимодействий» института Биотехнологии (Вильнюс, Литва) за оказанную мне помощь в приобретении новых знаний и навыков в области кинетики взаимодействий.