After recalling the basic relations relevant to both steady-state and time-resolved fluorescence polarization, it is shown how the values of steady-state polarized intensities recorded experimentally usually need to be corrected for systematic effects and errors, caused by instrumentation and sample properties. A list of selected reference values of steady-state fluorescence anisotropy and polarization is given. Attention is also paid to analysis of time-resolved fluorescence anisotropy data obtained by pulse fluorometry or phase and modulation fluorometry techniques. Recommendations for checking the accuracy of measurements are provided together with a list of selected time-resolved fluorescence anisotropy data as reported in the literature.
Project Year: 2004, Project Code: 2004-021-1-300
References
1 J. Michl, E. W. Thulstrup. Spectroscopy with Polarized Light, VCH, New York (1986).Search in Google Scholar
2 D. S. Kligger, J. W. Lewis, C. E. Randall. Polarized Light in Optics and Spectroscopy, Academic Press, New York (1990).10.1016/B978-0-08-057104-1.50011-9Search in Google Scholar
3a B. Valeur. Molecular Fluorescence. Principles and Applications, Wiley-VCH, Weinheim (2002).10.1002/3527600248Search in Google Scholar
3b B. Valeur, M. N. Berberan-Santos. Molecular Fluorescence. Principles and Applications, 2nd ed., Wiley-VCH, Weinheim (2012).10.1002/9783527650002Search in Google Scholar
4 J. R. Lakowicz. Principles of Fluorescence Spectroscopy, 3rd ed., Springer, New York (2006).10.1007/978-0-387-46312-4Search in Google Scholar
5 C. A. Parker. Photoluminescence of Solutions, Elsevier, London (1968).Search in Google Scholar
6a 10.1080/00032717108058637, R. F. Chen. Anal. Lett.4, 459 (1971).Search in Google Scholar
6b 10.6028/jres.076A.052, R. F. Chen. J. Res. Natl. Bur. Stand. A76, 593 (1972).Search in Google Scholar
7 K. Wojtuszewski, J. Knutson. In Protein Interactions: Biophysical Approaches for the Study of Complex Reversible Systems, P. Schuck (Ed.), pp. 397–416, Springer, New York (2007).Search in Google Scholar
8 10.1063/1.1135451, D. M. Jameson, G. Weber, R. D. Spencer, G. Mitchell. Rev. Sci. Instrum.49, 510 (1978).Search in Google Scholar
9 10.1016/0009-2614(95)00958-7, I. Gryczynski, H. Malak, J. R. Lakowicz. Chem. Phys. Lett.245, 30 (1995).Search in Google Scholar
10 D. M. Jameson, J. C. Croney, P. D. J. Moens. In Methods in Enzymology, Vol. 360, G. Marriott, I. Parker (Eds.), pp. 1–43, Elsevier (2003).10.1016/S0076-6879(03)60105-9Search in Google Scholar
11 R. E. Dale. In Time-Resolved Fluorescence Spectroscopy in Biochemistry and Biology, R. B. Cundall, R. E. Dale (Eds.), NATO ASI Series A: Life Sciences, Vol. 69, pp. 555–612, Plenum, New York (1983).Search in Google Scholar
12 10.1177/108705710000500501, J. C. Owicki. J. Biomol. Screening5, 297 (2000).Search in Google Scholar PubMed
13 10.1016/S0006-3495(77)85606-3, T. Lindmo, H. B. Steen. Biophys. J.18, 173 (1977).Search in Google Scholar
14 10.1016/S0921-0423(02)80074-0, C. A. Royer. Trends High Pressure Biosci. Biotechnol.1–2, 17 (2002).Search in Google Scholar
15 J. L. Markley, D. B. Northrup, C. A. Royer (Eds.). High Pressure Effects in Molecular Biophysics and Enzymology, Oxford University Press, Oxford (1996).10.1093/oso/9780195097221.001.0001Search in Google Scholar
16 M. E. Jolley. J. Anal. Toxicol.5, 236 (1986).10.1002/bies.950050517Search in Google Scholar
17 10.1016/S0003-2697(02)00011-8, S. Y. Tetin. Anal. Biochem.307, 84 (2002).Search in Google Scholar
18 10.1016/S0003-2697(02)00011-8, S. Y. Tetin, K. M. Swift, E. D. Matayoshi. Anal. Biochem.307, 84 (2002).Search in Google Scholar
19 10.1006/meth.1999.0927, S. Y. Tetin, T. L. Hazlett. Methods20, 341 (2005).Search in Google Scholar
20 10.1351/pac200779030293, S. E. Braslavsky. Pure Appl. Chem.79, 293 (2007).Search in Google Scholar
21 10.1063/1.1733019, T. Azumi, S. P. McGlynn. J. Chem. Phys.37, 2413 (1962).Search in Google Scholar
22 10.1016/S0006-3495(00)76315-6, Ch. Buehler, C. Y. Dong, P. T. C. So, T. French, E. Gratton. Biophys. J.79, 536 (2000).Search in Google Scholar
23 10.1111/j.1751-1097.1969.tb05701.x, F. W. J. Teale. Photochem. Photobiol.10, 363 (1969).Search in Google Scholar
24 10.1016/S0006-3495(85)83761-9, J. Eisinger, J. Flores. Biophys. J.48, 77 (1985).Search in Google Scholar
25 10.2174/138620703106298347, D. Jameson, J. C. Croney. Comb. Chem. High Throughput Screening6, 167 (2003).Search in Google Scholar
26 10.1088/0022-3735/9/12/032, H. P. Tschanz, T. H. Binkert. J. Phys. E: Sci. Instrum.9, 1131 (1976).Search in Google Scholar
27 10.1021/bi00829a051, S. R. Anderson, G. Weber. Biochemistry8, 371 (1969).Search in Google Scholar
28 10.1063/1.1136596, A. A. Paladini, G. Weber. Rev. Sci. Instrum.52, 419 (1981).Search in Google Scholar
29 10.1021/bi00512a034, A. A. Paladini, G. Weber. Biochemistry20, 2587 (1981).Search in Google Scholar
30 10.1006/abio.1999.4252, P. Targowski, L. Davenport. Anal. Biochem.274, 249 (1998).Search in Google Scholar
31 10.1063/1.1290036, J. G. Zhou, S. Koulas, P. L.-G. Chong. Rev. Sci. Instrum.71, 4249 (2000).Search in Google Scholar
32 10.1016/S0006-3495(79)85271-6, D. Axelrod. Biophys. J.26, 557 (1979).Search in Google Scholar
33 10.1021/bi010308i, Q. Ruan, K. Ruan, C. Balny, M. Glaser, W. W. Mantulin. Biochemistry40, 14706 (2001).Search in Google Scholar
34 10.1007/s10895-005-2632-1, M. vandeVen, M. Ameloot, B. Valeur, N. Boens. J. Fluoresc.15, 377 (2005).Search in Google Scholar
35 Commercially available from, e.g., Sigma-Aldrich, St. Louis, MO, USA.Search in Google Scholar
36 10.1016/S0006-3495(96)79860-0, O. Sire, B. Alpert, C. Royer. Biophys. J.70, 2903 (1996).Search in Google Scholar
37 R. B. Thompson, I. Gryczynski, J. Malicka. BioTechniques32, 34 (2002).10.2144/02321bm03Search in Google Scholar PubMed
38 10.1039/ft9908602103, L. B.-A. Johansson. J. Chem. Soc., Faraday Trans.86, 2103 (1990).Search in Google Scholar
39 10.1021/jp710625j, T. J. V. Prazeres, A. Fedorov, S. P. Barbosa, J. M. G. Martinho, M. N. Berberan-Santos. J. Phys. Chem. A112, 5034 (2008).Search in Google Scholar PubMed
40 10.1021/bi00581a025, G. Weber, F. J. Farris. Biochemistry18, 3075 (1979).Search in Google Scholar PubMed
41 10.1126/science.147.3659.729, R. F. Chen, R. L. Bowman. Science147, 729 (1965).Search in Google Scholar PubMed
42 10.1006/abio.1998.3029, J. R. Lakowicz, I. Gryczynski, Z. Gryczynski, J. D. Dattelbaum. Anal. Biochem.267, 397 (1999).Search in Google Scholar PubMed PubMed Central
43 J. M. Beechem, E. Gratton, M. Ameloot, J. R. Knutson, L. Brand. In Topics in Fluorescence Spectroscopy, Vol. 2, J. R. Lakowicz (Ed.), pp. 241–305, Plenum, New York (1991).Search in Google Scholar
44 10.1063/1.1798972, J. P. Szubiakowski, R. E. Dale, N. Boens, M. Ameloot. J. Chem. Phys.121, 7829 (2004).Search in Google Scholar PubMed
45 10.1063/1.447378, A. Szabo. J. Chem. Phys.81, 150 (1984).Search in Google Scholar
46 10.1016/S0006-3495(84)84049-7, W. van der Meer, H. Pottel, W. Herreman, M. Ameloot, H. Hendrickx, H. Schröder. Biophys. J.46, 515 (1984).Search in Google Scholar
47 10.1039/ft9938902815, A. Arcioni, R. Tarroni, C. Zannoni. J. Chem. Soc., Faraday Trans.89, 2815 (1993).Search in Google Scholar
48 10.1002/bip.1974.360130808, W. E. Blumberg, R. E. Dale, J. Eisinger, D. Zuckerman. Biopolymers13, 1589 (1974).Search in Google Scholar
49 L. Brand, M. L. Johnson (Eds.). Numerical Computer Methods, Methods in Enzymology, Vol. 210, Academic, San Diego (1992).Search in Google Scholar
50 10.1016/0301-4622(79)80009-5, Ph. Wahl. Biophys. Chem.10, 91 (1979).Search in Google Scholar
51 C. W. Gilbert. In Time-Resolved Fuorescence Spectroscopy in Biochemistry and Biology, B. Cundall, R. E. Dale (Eds.), NATO ASI Series A: Life Sciences, Vol. 69, pp. 605–606, Plenum, New York (1983).Search in Google Scholar
52 10.1016/0009-2614(83)87454-5, J. R. Knutson, J. M. Beechem, L. Brand. Chem. Phys. Lett.102, 501 (1983).Search in Google Scholar
53 10.1016/S0006-3495(83)84274-X, M. Ameloot, H. Hendrickx. Biophys. J.44, 27 (1983).Search in Google Scholar
54 10.1016/S0006-3495(84)83997-1, A. Cross, G. R. Fleming. Biophys. J.46, 45 (1984).Search in Google Scholar
55 10.1021/j100332a013, S. R. Flom, J. H. Fendler. J. Phys. Chem.92, 5908 (1988).Search in Google Scholar
56 10.1021/j100133a005, M. Crutzen, M. Ameloot, N. Boens, R. M. Negri, F. C. De Schryver. J. Phys. Chem.97, 8133 (1993).Search in Google Scholar
57 10.1021/ac062160k, N. Boens, W. Qin, N. Basari?, J. Hofkens, M. Ameloot, J. Pouget, J. P. Lefèvre, B. Valeur, E. Gratton, M. vandeVen, N. D. Silva, Y. Engelborghs, K. Willaert, A. Sillen, G. Rumbles, D. Phillips, A. J. W. G. Visser, A. van Hoek, J. R. Lakowicz, H. Malak, I. Gryczynski, A. G. Szabo, D. T. Krajcarski, N. Tamai, A. Miura. Anal. Chem.79, 2137 (2007).Search in Google Scholar
58 10.1016/S0006-3495(03)74880-2, E. Feinstein, G. Deikus, E. Rusinova, E. L. Rachofsky, J. B. A. Ross, W. R. Laws. Biophys. J.84, 599 (2003).Search in Google Scholar
59 10.1016/0022-2313(91)90022-N, M. N. Berberan-Santos. J. Lumin.50, 83 (1991).Search in Google Scholar
60 10.1021/ja000995l, M. N. Berberan-Santos, P. Choppinet, A. Fedorov, L. Jullien, B. Valeur. J. Am. Chem. Soc.122, 11876 (2000).Search in Google Scholar
61 10.1016/S0006-3495(87)83264-2, A. K. Livesey, J. C. Brochon. Biophys. J.52, 693 (1987).Search in Google Scholar
62 10.1016/S0006-3495(93)81258-X, C. R. Mateo, P. Tauc, J. C. Brochon. Biophys. J.65, 2248 (1993).Search in Google Scholar
63 10.1146/annurev.bb.13.060184.000541, E. Gratton, D. M. Jameson, R. D. Hall. Ann. Rev. Biophys. Bioeng.13, 105 (1984).Search in Google Scholar PubMed
64 10.1063/1.459288, G. B. Dutt, S. Doraiswamy, N. Periasamy, B. Venkataraman. J. Chem. Phys.93, 8498 (1990).Search in Google Scholar
65 10.1080/10739148508543585, J. Beechem, M. Ameloot, L. Brand. Anal. Instrum.14, 379 (1985).Search in Google Scholar
66 10.1063/1.442468, M. D. Barkley, A. A. Kowalczyk, L. Brand. J. Chem. Phys.75, 3581 (1981).Search in Google Scholar
67 10.1007/BF00865272, A. Balter, J. Szubiakowski. J. Fluoresc.3, 247 (1993).Search in Google Scholar
68 10.1016/0301-0104(96)00104-8, J. Szubiakowski, A. Balter, W. Novak, A. Kowalczyk, K. Wisniewski, M. Wierzbowska. Chem. Phys.208, 283 (1996).Search in Google Scholar
69 10.1002/qua.20752, N. Boens, M. Ameloot. Int. J. Quantum Chem.106, 300 (2006).Search in Google Scholar
70 10.1002/cphc.200600309, N. Boens, E. Novikov, M. Ameloot. ChemPhysChem7, 2559 (2006).Search in Google Scholar
71 10.1021/jp054797y, N. Boens, E. Novikov, J. P. Szubiakowski, M. Ameloot. J. Phys. Chem. A109, 11655 (2005).Search in Google Scholar
72 10.1016/j.cplett.2007.02.051, J. P. Szubiakowski, R. E. Dale, N. Boens, M. Ameloot. Chem. Phys. Lett.438, 113 (2007).Search in Google Scholar
73 10.1021/j100332a022, G. J. Blanchard, C. A. Cibal. J. Phys. Chem.92, 5950 (1988).Search in Google Scholar
74 10.1016/0301-0104(81)85044-6, G. S. Beddard, T. Doust, G. Porter. Chem. Phys.61, 17 (1981).Search in Google Scholar
75 10.1088/0957-0233/8/11/021, A. Volkmer, D. Hatrick, D. J. S. Birch. Meas. Sci. Technol.8, 1339 (1997).Search in Google Scholar
76 10.1016/S0006-3495(00)76711-7, A. Volkmer, V. Subramaniam, D. J. S. Birch, T. M. Jovin. Biophys. J.78, 1589 (2000).Search in Google Scholar
© 2013 Walter de Gruyter GmbH, Berlin/Boston