Диссертация (1151496), страница 14
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- 2008.32. Furuno ,T. Denaturation of purple membranes at the air/water interface studied bySEM / T. Furuno, H. Sasabe // J. Colloid Interface Sci. - 1991. - V. 147. № 1. - P. 225–232.33. Ganea, C. Chloride- and pH-dependent proton transport by BR mutant D85N / C.Ganea, J.
Tittorc, E. Bamberga, D. Oesterheltc // Biochim. Biophys. Acta - Biomembr. 1998. - V. 1368. № 1. - P. 84–96.34. Green, M.A. Dunlop Solar cell efficiency tables (version 36) / M.A. Green, K.Emery, Y. Hishikawa, W. Warta, E.D. Dunlop // Prog. Photovoltaics Res.
Appl. - 2010.- V. 18. № 5. - P. 346–352.35. Griep, M. Optical protein modulation via quantum dot coupling and use of a hybridsensor protein / M. Griep, Winder E., Lueking D., Friedrich C., Mallick G., Karna S // J.Nanosci. Nanotechnol. - 2010. - V. 10. № 9. - P. 6029–6035.36. Griep, M.H. Quantum dot enhancement of bacteriorhodopsin-based electrodes /M.H. Griep, K.A. Walczak, E.M. Winder, D.R.
Lueking, C.R. Friedrich // Biosens.Bioelectron. - 2010. - V. 25. № 6. - P. 1493–1497.10037. Griep, M.H. Förster Resonance Energy Transfer between Core/Shell Quantum Dotsand Bacteriorhodopsin / M.H. Griep, E.M. Winder, D.R. Lueking, G.A. Garrett, S.P.Karna, C.R. Friedrich // Mol. Biol. Int. - 2012. - V. 2012. - P. 1–7.38. Hampp, N. Bacteriorhodopsin and Its Potential in Technical Applications / N.Hampp, D. Oesterhelt. - Wiley-VCH Verlag GmbH & Co. KGaA. - 2008. - P.
146–167.39. Hardzei, M. Comparative Efficiency of Energy Transfer from CdSe-ZnS QuantumDots or Nanorods to Organic Dye Molecules / M. Hardzei, M. Artemyev, M. Molinari,M. Troyon, A. Sukhanova, I. Nabiev // ChemPhysChem. - 2012. - V. 13. № 1. - P. 330–335.40. Haupts, U. Closing in on bacteriorhodopsin: Progress in Understanding theMolecule / U. Haupts, J. Tittor, D. Oesterhelt // Annu. Rev. Biophys. Biomol. Struct. 1999. - V. 28. № 1. - P. 367–399.41. He, J.
Oriented Bacteriorhodopsin / Polycation Multilayers by Electrostatic Layerby-Layer Assembly / J. He, L.Samuelson, L. Li, J. Kumar, S.K. Tripathy // Langmuir. 1998. - V. 7463. № 16. - P. 1674–1679.42. He, J.-A., Photoelectric Properties of Oriented Bacteriorhodopsin/PolycationMultilayers by Electrostatic Layer-by-Layer Assembly / J.-A.
He, L. Samuelson, L. Li,J. Kumar, S.K. Tripathy // J. Phys. Chem. B. - 1998. - V. 102. № 36. - P. 7067–7072.43. Henderson, R. Model for the structure of bacteriorhodopsin based on highresolution electron cryo-microscopy / R. Henderson, J.M. Baldwin, T.A. Ceska, F.Zemlin, E. Beckmann, K.H. Downing// J.
Mol. Biol. - 1990. - V. 213. № 4. - P. 899–929.44. Hong, F.T. Interfacial photochemistry of retinal proteins / F.T. Hong // Prog. Surf.Sci. - 1999. - V. 62. № 1. - P. 1–237.45. Horn, C. Photocurrents generated by bacteriorhodopsin adsorbed on nano-blacklipid membranes / C. Horn, C. Steinem // Biophys. J. - 2005. - V. 89. № 2. - P. 1046–1054.46. Jin, Y. Bacteriorhodopsin as an electronic conduction medium for biomolecularelectronics / Y.
Jin, T. Honig, I. Ron, N. Friedman, M. Sheves, D. Cahen// Chem. Soc.Rev. - 2008. - V. 37. № 11. - P. 2422.10147. Kononenko, A.A. Oriented purple-membrane films as a probe for studies of themechanism of bacteriorhodopsin functioning. I. The vectorial character of the externalelectric-field effect on the dark state and the photocycle of bacteriorhodopsin / A.A.Kononenko, E.P.
Lukashev, A.V. Maximychev, S.K. Chamorovsky, A.B. Rubin, S.F.Timashev, L.N. Chekulaeva // Biochim. Biophys. Acta - Bioenerg. - 1986. - V. 850. №1. - P. 162–169.48. Lavoie, H. The behavior of membrane proteins in monolayers at the gas–waterinterface: comparison between photosystem II, rhodopsin and bacteriorhodopsin / H.Lavoie, J. Gallant, M. Grandbois, D. Blaudez, B. Desbat, F. Boucher, C. Salesse //Mater.
Sci. Eng. C. - 1999. - V. 10. № 1–2. - P. 147–154.49.Li,R.Stationarycurrentgeneratedfromphotocycleofahybridbacteriorhodopsin/quantum dot bionanosystem / R. Li, C.M. Li, H. Bao, Q. Bao, V.S.Lee // Appl. Phys. Lett. - 2007. - V. 91. № 22. - P. 7–10.50. Li, R. Ming Fabrication of oriented poly-l-lysine/bacteriorhodopsin-embeddedpurple membrane multilayer structure for enhanced photoelectric response / R. Li, X.Cui, W. Hu, Z. Lu, C. Li // J. Colloid Interface Sci. - 2010.
- V. 344. № 1. - P. 150–157.51. Manoj, A.G. Voltage-controlled spectral tuning of photoelectric signals in aconducting polymer-bacteriorhodopsin device / A.G. Manoj, K.S. Narayan // Appl.Phys. Lett. - 2003. - V. 83. № 17. - P. 3614–3616.52. Manoj, A.G. Opto-electrical processes in a conducting polymer-bacteriorhodopsinsystem / A.G. Manoj, K.S. Narayan // Biosens. Bioelectron. - 2004.
- V. 19. № 9. - P.1067–1074.53. Medintz, I.L. Quantum dot bioconjugates for imaging, labelling and sensing / I.L.Medintz, H.T. Uyeda, E.R. Goldman, H. Mattoussi // Nat. Mater. - 2005. - V. 4. № 6. P. 435–446.54. Méthot, M. In situ characterization of functional purple membrane monolayers atthe air-water interface / M. Méthot, P.
Desmeules, D. Vaknin, F. Boucher, C. Salesse//Langmuir. - 2004. - V. 20. № 3. - P. 934–40.55. Miyasaka, T. Rectified photocurrents from purple membrane Langmuir-Blodgettfilms at the electrode-electrolyte interface / T. Miyasaka, K. Koyama // Thin Solid102Films. - 1992. - V. 210. - P. 146–149.56. Murray, E.G.D. Red and purple membrane of h.
h a l o b i u m 667 / E.G.D. Murray,N.R. Smith, S.T. Bayley, J. Boring, M. Kates, N.E. Gibbons, N.E. Gibbons, S.T.Bayley, R. Rowen, W.H. Kunau, L.S. Yengoyan, P.S. Sastry // 1968. - Т. 483. - №1964.57. Nabiev, I. Fluorescent quantum dots as artificial antennas for enhanced lightharvesting and energy transfer to photosynthetic reaction centers / I. Nabiev, A.Rakovich, A. Sukhanova, E. Lukashev, V. Zagidullin, V.
Pachenko, Y.P. Rakovich, J.F.Donegan, A.B. Rubin, A.O. Govorov // Angew. Chemie - Int. Ed. - 2010. - V. 49. № 40.- P. 7217–7221.58. Nabiev, I.R. Surface-enhanced Raman spectroscopy of biomolecules. Part II.Application of short- and long-range components of SERS to the study of the structureand function of membrane proteins / I.R. Nabiev, G.D.
Chumanov, R.G. Efremov // J.Raman Spectrosc. - 1990. - V. 21. № 1. - P. 49–53.59. Nicolini, C. Toward bacteriorhodopsin based photocells / C. Nicolini, V. Erokhin, S.Paddeu, C. Paternolli, M.K. Ram // Biosens. Bioelectron. - 1999. - V.
14. № 4. - P. 427–433.60. Niemeyer, C.M. Nanobiotechnology / C.M. Niemeyer, C.A. Mirkin. - Wiley-VCH. 2004.61. Oesterhelt, D. The structure and mechanism of the family of retinal proteins fromhalophilic archaea / D. Oesterhelt // Curr. Opin. Struct. Biol. - 1998. - V. 8. № 4. - P.489–500.62. Oesterhelt, D. Isolation of the cell membrane of Halobacterium halobium and itsfractionation into red and purple membrane / D. Oesterhelt, W. Stoeckenius // MethodsEnzymol. - 1974. - V. 31. - P. 667–78.63.
Oesterhelt, D. Rhodopsin-like Protein from the Purple Membrane of Halobacteriumhalobium / D. Oesterhelt, W. Stoeckenius // Nature. - 1971. - V. 233. № 39. - P. 149.64. Oleinikov, V.A. The effect of silver nanoparticles on the photocycle ofbacteriorhodopsin of purple membranes of Halobacterium salinarum / V.A. Oleinikov,K.E. Mochalov, D.O. Solovyeva, A.A. Chistyakov, E.P. Lukashev, I.R. Nabiev // Opt.103Spectrosc. - 2016. - V.
121. № 2. - P. 210–219.65. Patil, A.V. Enhanced Photocurrent in Engineered Bacteriorhodopsin Monolayer /A.Patil, V.T. Premaruban, O. Berthoumieu, A. Watts, J.J. Davis // J. Phys. Chem. B. 2012. - V. 116. № 1. - P. 683–689.66. Patzelt, H. The structures of the active center in dark-adapted bacteriorhodopsin bysolution-state NMR spectroscopy / H.
Patzelt, B. Simon, A. terLaak, B. Kessler, R.Kühne, P. Schmieder, D. Oesterhelt, H. Oschkinat // Proc. Natl. Acad. Sci. U. S. A. 2002. - V. 99. № 15. - P. 9765–70.67. Pepe, I.M. Langmuir–Blodgett films of rhodopsin: an infrared spectroscopic study /I.M. Pepe, M.K. Ram, S. Paddeu, C. Nicolini // Thin Solid Films. - 1998. - V. 327. - P.118–122.68. Radionov, A.N. Cooperative phenomena in the photocycle of D96N mutantbacteriorhodopsin / A.N. Radionov, A.D. Kaulen // FEBS Letters. - 1995. - V.
377. - P.330–332.69. Rakovich, A. Resonance energy transfer improves the biological function ofbacteriorhodopsin within a hybrid material built from purple membranes andsemiconductor quantum dots / A. Rakovich, A. Sukhanova, N. Bouchonville, E.Lukashev, V.Oleinikov, M. Artemyev, V. Lesnyak, N. Gaponik, M. Molinari,M.Troyon, Y.P. Rakovich, J.F. Donegan, I. Nabiev // Nano Lett.
- 2010. - V. 10. № 7. P. 2640–2648.70. Rashid, M.U. Synthesis of Silver Nano Particles (Ag-NPs) and their uses forQuantitative Analysis of Vitamin C Tablets / M.U. Rashid, M.K.H. Bhuiyan, M.E.Quayum // Dhaka Univ. J. Pharm. Sci. - 2013. - V. 12. № 1. - P. 29–33.71.
Renugopalakrishnan, V. Engineering a robust photovoltaic device with quantumdots and bacteriorhodopsin / V. Renugopalakrishnan, B. Barbiellini, C. King, M.Molinari, K. Mochalov, A. Sukhanova, I. Nabiev, P. Fojan, H.L. Tuller, M. Chin, P.Somasundaran, E. Padrós, S. Ramakrishna // J. Phys. Chem. C. - 2014. - V. 118. № 30.
P. 16710–16717.72. Roberts, G.G. Langmuir-Blodgett Films. / G.G. Roberts. - N.Y. & London: PlenumPress. - 1990. - 133 P.10473. Römer, W. Impedance Analysis and Single-Channel Recordings on Nano-BlackLipid Membranes Based on Porous Alumina / W. Römer, C. Steinem // Biophys. J. 2004. - V. 86. № 2. - P. 955–965.74.