22.07.2013 Views

Principles of Fluorescence Spectroscopy

Principles of Fluorescence Spectroscopy

Principles of Fluorescence Spectroscopy

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

440 ADVANCED ANISOTROPY CONCEPTS<br />

61. Lakowicz JR, Maliwal BP. 1985. Construction and performance <strong>of</strong> a<br />

variable-frequency phase-modulation fluorometer. Biophys Chem<br />

21:61–78.<br />

62. Lakowicz JR, Gryczynski I, Cherek H, Laczko G. 1991. Anisotropy<br />

decays <strong>of</strong> indole, melittin monomer and melittin tetramer by frequency-domain<br />

fluorometry and multi-wavelength global analysis.<br />

Biophys Chem 39:241–251.<br />

63. Gryczynski I, Cherek H, Laczko G, Lakowicz JR. 1987. Enhanced<br />

resolution <strong>of</strong> anisotropic rotational diffusion by multi-wavelength<br />

frequency-domain fluorometry and global analysis. Chem Phys Lett<br />

135(3):193–199.<br />

64. Gryczynski I, Cherek H, Lakowicz JR. 1988. Detection <strong>of</strong> three rotational<br />

correlation times for a rigid asymmetric molecule using frequency-domain<br />

fluorometry. SPIE Proc 909:285–292.<br />

65. Gryczynski I, Danielson E, Lakowicz JR. Unpublished observations.<br />

66. Lakowicz JR, Gryczynski I, Wiczk WM. 1988. Anisotropic rotational<br />

diffusion <strong>of</strong> indole in cyclohexane studied by 2 GHz frequencydomain<br />

fluorometry. Chem Phys Lett 149(2):134–139.<br />

67. Gryczynski I, Cherek H, Lakowicz JR. 1988. Detection <strong>of</strong> three rotational<br />

correlation times for a rigid asymmetric molecule using frequency-domain<br />

fluorometry. Biophys Chem 30:271–277.<br />

68. Gryczynski I, Wiczk W, Johnson ML, Lakowicz JR. 1988. Lifetime<br />

distributions and anisotropy decays <strong>of</strong> indole fluorescence in cyclohexane/ethanol<br />

mixtures by frequency-domain fluorometry. Biophys<br />

Chem 32:173–185.<br />

69. Lakowicz JR, Cherek H, Gryczynski I, Joshi N, Johnson ML. 1987.<br />

Enhanced resolution <strong>of</strong> fluorescence anisotropy decays by simultaneous<br />

analysis <strong>of</strong> progressively quenched samples. Biophys J 51:<br />

755–768.<br />

70. Lakowicz JR, Gryczynski I, Szmacinski H, Cherek H, Joshi N. 1991.<br />

Anisotropy decays <strong>of</strong> single-tryptophan proteins measured by GHz<br />

frequency-domain fluorometry with collisional quenching. Eur<br />

Biophys J 19:125–140.<br />

71. Barkley MD, Zimm BH. 1979. Theory <strong>of</strong> twisting and bending <strong>of</strong><br />

chain macromolecules; analysis <strong>of</strong> the fluorescence depolarization <strong>of</strong><br />

DNA. J Chem Phys 70(6):2991–3007.<br />

72. Thomas JC, Allison SA, Appell<strong>of</strong> CJ, Schurr JM. 1980. Torsion<br />

dynamics and depolarization <strong>of</strong> fluorescence <strong>of</strong> linear macromolecules,<br />

II: fluorescence polarization anisotropy measurements on a<br />

clean viral 29 DNA. Biophys Chem 12:177–188.<br />

73. Schurr JM, Fujimoto BS, Wu P, Song L. 1992. <strong>Fluorescence</strong> studies<br />

<strong>of</strong> nucleic acids: dynamics, rigidities, and structures. In Topics in fluorescence<br />

spectroscopy, Vol. 3: Biochemical applications, pp.<br />

137–229. Ed JR Lakowicz. Plenum Press, New York.<br />

74. Millar DP, Robbins RJ, Zewail AH. 1981. Time-resolved spectroscopy<br />

<strong>of</strong> macromolecules: effect <strong>of</strong> helical structure on the torsional<br />

dynamics <strong>of</strong> DNA and RNA. J Chem Phys 74(7):4200–4201.<br />

75. Ashikawa I, Furuno T, Kinosita K, Ikegami A, Takahashi H, Akutsu<br />

H. 1983. Internal motion <strong>of</strong> DNA in bacteriophages. J Biol Chem 259<br />

(13):8338–8344.<br />

76. Ashikawa I, Kinosita K, Ikegami A. 1984. Dynamics <strong>of</strong> z-form DNA.<br />

Biochim Biophys Acta 782:87–93.<br />

77. Genest D, Wahl Ph, Erard M, Champagne M, Daune M. 1982.<br />

<strong>Fluorescence</strong> anisotropy decay <strong>of</strong> ethidium bromide bound to nucleosomal<br />

core particles. Biochim. 64:419–427.<br />

78. Ashikawa, I., Kinosita, K., Ikegami, A., Nishimura, Y., Tsuboi, M.,<br />

Watanabe, K., Iso, K., and Nakano, T., 1983. Internal motion <strong>of</strong><br />

deoxyribonucleic acid in chromatin. Nanosecond fluorescence studies<br />

<strong>of</strong> intercalated ethidium. Biochemistry 22:6018–6026.<br />

79. Thulstrup EW, Michl J. 1988. Polarized absorption spectroscopy <strong>of</strong><br />

molecules aligned in stretched polymers. Spectrochim Acta<br />

A44:767–782.<br />

80. Michl J, Thulstrup EW. 1987. Ultraviolet and infrared linear dichroism:<br />

polarized light as a probe <strong>of</strong> molecular and electronic structure.<br />

Acc Chem Res 20:192–199.<br />

81. Van Gurp M, Levine YK. 1989. Determination <strong>of</strong> transition moment<br />

directions in molecules <strong>of</strong> low symmetry using polarized fluorescence,<br />

I: theory. J Chem Phys 90(8):4095–4100.<br />

82. Matsuoka Y, Yamaoka K. 1980. Film dichrosim, V: linear dichroism<br />

study <strong>of</strong> acridine dyes in films with emphasis on the electronic transitions<br />

involved in the long-wavelength band <strong>of</strong> the absorption spectrum.<br />

Bull Chem Soc Jpn 53:2146–2151.<br />

83. Michl J, Thulstrup EW. 1986. <strong>Spectroscopy</strong> with polarized light.<br />

VCH Publishers, New York.<br />

84. Kawski A, Gryczynski Z. 1986. On the determination <strong>of</strong> transitionmoment<br />

directions from emission anisotropy measurements. Z<br />

Naturforsch A 41:1195–1199.<br />

85. Kawski A, Gryczynski Z, Gryczynski I, Lakowicz JR, Piszczek G.<br />

1996. Photoselection <strong>of</strong> luminescent molecules in anisotropic media<br />

in the case <strong>of</strong> two-photon excitation, II: experimental studies <strong>of</strong><br />

Hoechst 33342 in stretched poly(vinyl alcohol) films. Z Naturforsch<br />

A 51:1037–1041.<br />

86. Matsuoka Y, Norden B. 1982. Linear dichroism study <strong>of</strong> 9-substituted<br />

acridines in stretched poly(vinyl alcohol) film. Chem Phys Lett<br />

85(3):302–306.<br />

87. Holmén A, Broo A, Albinsson B, Nordén B. 1997. Assignment <strong>of</strong><br />

electronic transition moment directions <strong>of</strong> adenine from linear<br />

dichroism measurements. J Am Chem Soc 119(50):12240–12250.<br />

88. Holmén A, Nordén B, Albinsson B. 1997. Electronic transition<br />

moments <strong>of</strong> 2-aminopurine. J Am Chem Soc 119(13):3114–3121.<br />

89. Albinsson B, Kubista M, Sandros K, Nordén B. 1990. Electronic linear<br />

dichroism spectrum and transition moment directions <strong>of</strong> the<br />

hypermodified nucleic acid–base wye. J Phys Chem 94:4006–4011.<br />

90. Kubista M, Åkerman B, and Albinsson B. 1989. Characterization <strong>of</strong><br />

the electronic structure <strong>of</strong> 4',6-diamidino-2-phenylindole. J Am<br />

Chem Soc 111:7031–7035.<br />

91. Andersen KB, Waluk J, Thulstrup EW. 1999. The electronic structure<br />

<strong>of</strong> carcinogenic dibenzopyrenes: linear dichroism, fluorescence<br />

polarization spectroscopy and quantum mechanical calculations.<br />

Photochem Photobiol 69(2):158–166.<br />

92. Hall RD, Valeur B, Weber G. 1985. Polarization <strong>of</strong> the fluorescence<br />

<strong>of</strong> triphenylene: a planar molecule with three-fold symmetry. Chem<br />

Phys Lett 116(2,3):202–205.<br />

93. Lakowicz JR, Weber G. 1980. Nanosecond segmental mobilities <strong>of</strong><br />

tryptophan residues in proteins observed by lifetime-resolved fluorescence<br />

anisotropies. Biophys J 32:591–601.<br />

94. Lakowicz JR, Maliwal BP, Cherek H, Balter A. 1983. Rotational<br />

freedom <strong>of</strong> tryptophan residues in proteins and peptides.<br />

Biochemistry 22:1741–1752.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!