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Искусственные генетические системы. Том 1 - Патрушев Л.И.

Патрушев Л.И. Искусственные генетические системы. Том 1 — М.: Наука, 2004. — 256 c.
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116. Takahashi T.T., Austin R.J., Roberts R.W. mRNA display: Ligand discovery, interaction analysis and beyond // Ibid. 2003. Vol. 28. P. 159-165.
111. McDonald P.N. Two-hybrid systems: Methods and protocols: Introduction // Meth. Mol. Biol. 2001. Vol. 177. P. v-viii.
118. Carter B.T., Lin H., Cornish V.W. Yeast n-hybrid systems for molecular evolution // Directed evolution of proteins, or how to improve enzymes for biocatalysis / Ed. S. Brakmann, K. Johnsson. N.Y.: Wiley, 2002. P. 127-158.
119. Fields S., Song O. A novel genetic system to detect protein-protein interactions I I Nature. 1989. Vol. 340, N 6230. P. 245-246.
120. Brent R., Ptashne M. A eukaryotic transcriptional activator bearing the DNA specificity of a prokaryotic repressor // Cell. 1985. Vol. 43, N 2/3. P. 729-736.
121. Hope I.A., Struhl K. Functional dissection of a eukaryotic transcriptional activator protein, GCN4 of yeast // Cell. 1986. Vol. 46, N 6. P. 885-894.
122. Boeke J.D., La Croute F., Fink G.R. A positive selection for mutants lacking orotidine-5’-phosphate decarboxylase activity in yeast: 5-fluoro-orotic acid resistance // Mol. Gen. Genet. 1984. Vol. 197, N 2. P. 345-346.
123. Vojtek A.B., Hollenberg S.М., Cooper J.A. Mammalian Ras interacts directly with the serine/threonine kinase Raf // Cell. 1993. Vol. 74, N 1. P. 205-214.
124. Serebriiskii /., Khazak V., Golemis E. A two-hybrid dual bait system to discriminate specificity of protein interactions // J. Biol. Chem. 1999. Vol. 274, N 24. P. 17080-17087.
125. Le Douarin B., Pierrat B., Von Baur E. et al. A new version of the two-
hybrid assay for detection of protein-protein interactions // Nucl. Acids Res. 1995. Vol. 23, N 5. P. 876-878.
126. Ptashne M. A genetic switch. 2nd ed. Cambridge: Blackwell: Cell press,
1992.
127. Vidal М., Brachmann R.K., Fattaey A. et al. Reverse two-hybrid and one-hybrid systems to detect dissociation of protein-protein and DNA-protein interactions // Proc. Nat. Acad. Sci. USA. 1996. Vol. 93, N 19. P. 10315-10320.
128. Shih H.M., Goldman P.S., De Maggio A.J. et al. A positive genetic selection for disrupting protein-protein interactions: Identification of CREB mutations that prevent association with the coactivator СВР // Ibid. N 24. P. 13896-13901.
129. Hirst М., Но C., Sabourin L. et al. A two-hybrid system for transactivator bait proteins // Ibid. 2001. Vol. 98, N 15. P. 8726-8731.
130. Tzamarias D., Struhl K. Functional dissection of the yeast Cyc8-Tupl transcriptional co-repressor complex // Nature. 1994. Vol. 369, N 6483. P. 758-761.
131. MichnikS.W. Exploring protein interactions by interaction-induced folding of proteins from complementary peptide fragments // Curr. Opin. Struct. Biol. 2001. Vol. 11, N 4. P. 472-477.
132. Ito Т., Ota K., Kubota H. et al. Roles for the two-hybrid system in exploration of the yeast protein interactome // Mol. Cell. Proteomics. 2002. Vol. 1. P. 561-566.
133. Ito Т., Chiba Т., Ozawa R. et al. A comprehensive two-hybrid analysis to explore the yeast protein interactome I I Proc. Nat. Acad. Sci. USA. 2001. Vol. 98. P. 4569-4574.
134. Deane С .М., Salwinski L., Xenarios I., Eisenberg D. Protein interactions: Two methods for assessment of the reliability of high throughput observations // Mol. Cell. Proteomics. 2002. Vol. 1. P. 349-356.
135. Matthews L.R., Vaglio P., Reboul J. et al. Identification of potential interaction networks using sequence-based searches for conserved protein-pro-tein interactions or “interologs” // Genome Res. 2001. Vol. 11. P. 1771-1775.
136. Hu J.C., O’Shea EX., Kim P.S., Sauer R.T. Sequence requirements for coiled-coils: analysis with lambda repressor-GCN4 leucine zipper fusions // Science. 1990. Vol. 250, N 4986. P. 1400-1403.
137. Kornacker M.G., Remsburg B., Menzel R. Gene activation by the AraC protein can be inhibited by DNA looping between AraC and a LexA repressor that interacts with AraC: possible applications as a two-hybrid system // Mol. Microbiol. 1998. Vol. 30, N 3. P. 615-624.
138. Whipple F.W. Genetic analysis of prokaryotic and eukaryotic DNA-bind-ing proteins in Escherichia coli // Nucl. Acids Res. 1998. Vol. 26, N 16. P. 3700-3706.
139. Joung J.K., Ramm E.I., Pabo C.O. A bacterial two-hybrid selection system for studying protein-DNA and protein-protein interactions // Proc. Nat. Acad. Sci. USA. 2000. Vol. 97, N 13. P. 7382-7387.
140. Marsolier M.C., Prioleau M.N., Sentenac A. A RNA polymerase Ill-based
two-hybrid system to study RNA polymerase II transcriptional regulators // J. Mol. Biol. 1997. Vol. 268, N 2. P. 243-249.
141. Karimova G., Ullmann A., Ladant D. A bacterial two-hybrid system that exploits a cAMP signaling cascade in Escherichia coli // Meth. Enzymol. 2000. Vol. 328. P. 59-73.
142. Vidal М., Legrain P. Yeast forward and reverse “n”-hybrid systems // Nucl. Acids Res. 1999. Vol. 27, N 4. P. 919-929.
143. Salero E., Perez-Sen R., Aruga J. et al. Transcription factors Zicl and Zic2 bind and transactivate the a Apolipoprotein E gene promoter // J. Biol. Chem. 2001. Vol. 276. P. 1881-1888.
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