1078. Feng L., Park S., Reif J., Yan H. A two-state DNA lattice switched by DNA nanoactuator // Angew. Chem. Int. Ed. 2003. V.42. P.4342-4346.
1079. Li J., Tan W. A single DNA molecule nanomotor // Nano Lett. 2002. V.2. P.315318.
1080. Sherman W., Seeman N. A precisely controlled DNA biped walking device // Nano Lett. 2004. V.4. P.1203-1207.
1081. Shin J., Pierce N. A synthetic DNA walker for molecular transport // J. Am. Chem. Soc. 2004. V.126. P.10834-10835.
1082. Reif J.H. The Design of Autonomous DNA Nanomechanical Devices: Walking and Rolling DNA // DNA Based Computers, Sapporo, Japan. Edited by Masami Hagiya and Azuma Ohuchi. LNCS. 2003. V.2568. P.22-37.
1083. Yin P., Turberfield A.J., Sahu S., Reif J.H. Designs for Autonomous Unidirectional Walking DNA Devices // Tenth International Meeting on DNA Based Computers, Milano, Italy. Edited by C Ferretti, G. Mauri and C. Zandron. LNCS. 2005. V.3384. P.410-425.
1084. Yin P., Yan H., Daniel X.G., Turberfield A.J., Reif J.H. A Unidirectional DNA Walker Moving Autonomously Along a Linear Track // Angewandte Chemie. 2004. V.43. N.37. P.4906-4911.
1085. Chen Y., Wang M., Mao C. An autonomous DNA motor powered by a DNA enzyme // Angew. Int. Ed. 2004. V.43. P.2-5.
1086. Sherman W.B., Seeman N.C. A precisely controlled DNA biped walking device // Nano. Lett. 2004. V.4. P.1203-1207.
1087. Turberfield A., Mitchell J., Yurke B., Mills J.A.P., Blakey M., Simmel F. DNA fuel for free-running nanomachines // Phys. Rev. Lett. 2003. V.90. P.118102.
1088. Barish R.D., Rothemund P.W.K., Winfree E. Two Computational Primitives for Algorithmic Self-Assembly: Copying and Counting // NanoLetters. 2005. V.5. P.2586-2592.
1089. Mao C., LaBean T.H., Reif J.H., Seeman N.C. Logical Computation Using Algorithmic Self-Assembly of DNA Triple Crossover Molecules // Nature. 2000. V.407. P.493-496.
166
1090. Mao C., LaBean T.H., Reif J.H., Seeman N.C. Erratum // Nature. 2000. V.408. P.750.
1091. Rothemund P.W.K., Papadakis N., Winfree E. Algorithmic Self-Assembly of DNA Sierpinski Triangles // PLoS Biology. 2004. V.2.
1092. Yan H., Feng L., LaBean T.H., Reif J. DNA Nanotubes, Parallel Molecular Computations of Pairwise Exclusive-Or (XOR) Using DNA "String Tile" SelfAssembly // Journal of American Chemistry Society(JACS). 2003. V.125. P.1424614247.
1093. Carbone A., Seeman N.C. Circuits and Programmable Self-Assembling DNA Structures // Proc. Nat. Acad. Sci. USA. 2002. V.99. P.12577-12582.
1094. Reif J., Sahu S. Autonomous Programmable DNA Nanorobotic Devices Using DNAzymes // 13th International Meeting on DNA Computing (DNA 13), Memphis, Tennessee, June 4-8, 2007. P.1–16.
1095. Yin P., Turberfield A., Sahu S., Reif J. Design of an autonomous DNA nanomechanical device capable of universal computation and universal translational motion // Tenth International Meeting on DNA Computing. LNCS. 2005. V.3384. P.426--444.
1096. Dirks R.M., Pierce N.A. Triggered amplification by hybridization chain reaction // PNAS. 2004. V.101. P.15275-15278.
1097. Cavalcanti A. Assembly Automation with Evolutionary Nanorobots and SensorBased Control applied to Nanomedicine // IEEE Transactions on Nanotechnology. 2003. V. 2. P.82-87.
1098. Vriezema D.M. et al. Self-assembled nanoreactors // Chem. Rev. 2005. V.105. P.1445–1489.
1099. Douglas T. et al. Synthesis and structure of an iron(III) sulfide–ferritin bioinorganic nanocomposite // Science. 1995. V.269. P.54–57.
1100. Meldrum F.C., Heywood B.R., Mann S. Magnetoferritin—in vitro synthesis of a novel magnetic protein // Science. 1992. V.257. P.522–523.
1101. Ueno T. et al. Size-selective olefin hydrogenation by a Pd nanocluster provided in an apoferritin cage // Angew. Chem. Int. Edn. 2004. V.43. P.2527–2530.
167
1102. Seebeck F.P., Woycechowsky K.J., Zhuang W., Rabe J.P., Hilvert D. A simple tagging system for protein encapsulation // J. Am. Chem. Soc. 2006. V.128. P.4516– 4517.
1103. Varpness Z., Peters J.W., Young M., Douglas T. Biomimetic synthesis of an H2 catalyst using a protein cage architecture // Nano Lett. 2005. V.5. P.2306–2309.
1104. Douglas T., Young M. Host–guest encapsulation of materials by assembled virus protein cages // Nature. 1998. V.393. P.152–155.
1105. Douglas T. et al. Protein engineering of a viral cage for constrained nanomaterials synthesis // Adv. Mater. 2002. V.14. P.415–418.
1106. Douglas T., Young M. Viruses: Making friends with old foes // Science. 2006. V.312. P.873–875.
1107. Flynn C.E., Lee S.-W., Peelle B.R., Belcher A.M. Viruses as vehicles for growth, organization and assembly of materials // Acta Mater. 2003. V.51. P.5867–5880.
1108. Shenton W., Douglas T., Young M., Stubbs G., Mann S. Inorganic–organic nanotube composites from template mineralization of tobacco mosaic virus // Adv. Mater. 1999. V.11. P.253–256.
1109. Dujardin E., Peet C., Stubbs G., Culver J.N., Mann S. Organization of metallic nanoparticles using tobacco mosaic virus templates // Nano Lett. 2003. V.3. P.413– 417.
1110. Mao C.B. et al. Virus-based toolkit for the directed synthesis of magnetic and semiconducting nanowires // Science. 2004. V.303. P.213–217.
1111. Carette N. et al. A virus-based biocatalyst // Nature Nanotech. 2007. V.2. P.226– 229.
1112. Arora P.S., Kirshenbaum K. Nano-tailoring: Stitching alterations on viral coats // Chem. Biol. 2004. V.11. P.418–420.
1113. Wang Q. et al. Bioconjugation by copper(I)-catalyzed azide-alkyne 3 ю 2 cycloaddition // J. Am. Chem. Soc. 2003. V.125. P.3192–3193.
1114. Hooker J.M., Kovacs E.W., Francis M.B. Interior surface modification of bacteriophage MS2 // J. Am. Chem. Soc. 2004. V.126. P.3718–3719.
1115. Comellas-Aragone M., Engelkamp H., Claessen V.I., Sommerdijk N.A.J.M., Rowan A.E., Christianen P.C.M., Maan J.C., Verduin B.J.M., Cornelissen J.J.L.M.,
168
Nolte R.J.M. A virus-based single-enzyme nanoreactor // Nature nanotechnology. 2007. V.2. P.635-639.
1116. Venkataraman S., Dirks R.M., Rothemund P.W.K., Winfree E., Pierce N.A. An autonomous polymerization motor powered by DNA hybridization // Nature Nanotechnology. 2007. V.2. P.490-494.
1117. Wang Y., Muller J.E., Kemper B., Seeman N.C. The assembly and characterization of 5-arm and 6-arm DNA branched junctions // Biochemistry. 1991. V.30. P.5667-5674.
1118. LaBen T.H., Yan H., Kopatsch J., Liu F., Winfree E., Reif J.H, Seeman N.C. The Construction of DNA Triple Crossover Molecules // Journal of the American Chemical Society. 2000. V.122. P.1848-1860.
1119. Park S.H., Pistol C., Ahn S.J., Reif J.H., Lebeck A.R., Dwyer C., LaBean T.H. Finite-size, fully addressable dna tile lattices formed by hierarchical assembly procedures // Angew. Chem. Int. Ed. 2006. V.45. P.735-739.
1120. Chen J., Seeman N.C. The electrophoretic properties of a DNA cube and its substructure catenanes // Electrophoresis. 1991. V.12. P.607-611.
1121. Ajo-Franklin C.M., Drubin D.A., Eskin J.A., Gee E.P.S., Landgraf D., Phillips I., Silver P.A. Rational design of memory in eukaryotic cells // Genes & Dev. 2007. V.21. P.2271-2276.
1122. Anantharam A., Markowitz S.M., Abbott G.W. Pharmacogenetic considerations in diseases of cardiac ion channels // J. Pharmacol. Exp. Ther. 20003. V.307. P.831–838.
1123. Anderson J.C., Clarke E.J., Arkin A.P., Voigt C.A. Environmentally controlled invasion of cancer cells by engineered bacteria // J. Mol. Biol. 2006. V.355. P.619– 627.
1124. Andrianantoandro E., Basu S., Karig D.K., Weiss R. Synthetic biology: New engineering rules for an emerging discipline // Mol. Syst. Biol. 2006. V.22006.0028.
1125. Arkin A.P. Synthetic cell biology // Curr. Opin. Biotechnol. 2001. V.12. P.638– 644.
1126. Arkin A.P., Fletcher D.A. Fast, cheap and somewhat in control // Genome Biol. 2006. V.7. P.114.
169
1127. Atkinson M.R., et al. Development of genetic circuit exhibiting toggle switch or oscillatory behavior in. Escherichia Coli // Cell. 2003. V.113. P.597–607.
1128. Atsumi S., Little J.W. Regulatory circuit design and evolution using phage
// Genes & Dev. 2004. V.18. P.2086–2094.
1129. Babu M.M., Teichmann S.A. Evolution of transcription factors and the gene regulatory network in Escherichia coli // Nucleic Acids Res. 2003. V.31. P.1234– 1244.
1130. Basu S., Mehreja R., Thiberge S., Chen M.T., Weiss R. Spatiotemporal control of gene expression with pulse-generating networks // Proc. Natl. Acad. Sci. 2004. V.101. P.6355–6360.
1131. Basu S., Gerchman Y., Collins C.H., Arnold F.H., Weiss R. A synthetic multicellular system for programmed pattern formation // Nature. 2005. V.434. P.1130–1134.
1132. Bayer T.S., Smolke C.D. Programmable ligand-controlled riboregulators of eukaryotic gene expression // Nat. Biotechnol. 2005. V.23. P.337–343.
1133. Becskei A., Serrano L. Engineering stability in gene networks by autoregulation // Nature. 2000. V.405. P.590–593.
1134. Becskei A., Seraphin B., Serrano L. Positive feedback in eukaryotic gene networks: Cell differentiation by graded to binary response conversion // EMBO J. 2001. V.20. P.2528–2535.
1135. Benner S.A. Synthetic biology: Act natural // Nature. 2003. V.421. P.118.
1136. Benner S.A., Sismour A.M. Synthetic biology // Nat. Rev. Genet. 2005. V.6. P.533–543.
1137. Beyer P., Al-Babili S., Ye X., Lucca P., Schaub P., Welsch R., Potrykus I. Golden Rice: Introducing the
-carotene biosynthesis pathway into rice endosperm by genetic engineering to defeat vitamin A deficiency // J. Nutr. 2002. V.132. P.506S–510S.
1138. Bhattacharyya R.P., Remenyi A., Yeh B.J., Lim W.A. Domains, motifs, and scaffolds: The role of modular interactions in the evolution and wiring of cell signaling circuits // Annu. Rev. Biochem. 2006. V.75. P.655–680.
1139. Bintu L., et al. Transcriptional regulation by the numbers: applications // Curr. Opin. Genet. & Dev. 2005. V.15. P.125–135.
170