Biology Reference
In-Depth Information
58. Lelimousin M, Noirclerc-Savoye M, Lazareno-Saez C, Paetzold B, Le Vot S, Chazal R,
Macheboeuf P, Field MJ, Bourgeois D, Royant A (2009) Intrinsic dynamics in ECFP and
Cerulean control fluorescence quantum yield. Biochemistry 48:10038-10046
59. Villoing A, Ridhoir M, Cinquin B, Erard M, Alvarez L, Vallverdu G, Pernot P, Grailhe R, Fe
M, Pasquier H (2008) Complex fluorescence of the cyan fluorescent protein: comparisons
with the H148D variant and consequences for quantitative cell imaging. Biochemistry
47:12483-12492
60. Scruggs AW, Flores CL, Wachter R, Woodbury NW (2005) Development and characterization
of green fluorescent protein mutants with altered lifetimes. Biochemistry 44:13377-13384
61. Goedhart J, van Weeren L, Hink MA, Vischer NOE, Jalink K, Gadella TWJ Jr (2010) Bright
cyan fluorescent protein variants identified by fluorescence lifetime screening. Nat Methods
7:137-139
62. Rizzo MA, Springer GH, Granada B, Piston DW (2004) An improved cyan fluorescent
protein variant useful for FRET. Nat Biotechnol 22:445-449
63. Heim R, Tsien RY (1996) Engineering green fluorescent protein for improved brightness,
longer wavelengths and fluorescence resonance energy transfer. Curr Biol 6:178-182
64. Wachter RM, King BA, Heim R, Kallio K, Tsien RY, Boxer SG, Remington SJ (1997)
Crystal structure and photodynamic behavior of the blue emission variant Y66H/Y145F of
green fluorescent protein. Biochemistry 36:9759-9765
65. Malo GD, Pouwels LJ, Wang M, Weichsel A, Montfort WR, Rizzo MA, Piston DW,
Wachter RM (2007) X-ray structure of Cerulean GFP: a tryptophan-based chromophore
useful for fluorescence lifetime imaging. Biochemistry 46:9865-9873
66. Mena MA, Treynor TP, Mayo SL, Daugherty PS (2006) Blue fluorescent proteins with
enhanced brightness and photostability from a structurally targeted library. Nat Biotechnol
24:1569-1571
67. Kummer AD, Wiehler J, Schuttrigkeit TA, Berger BW, Steipe B, Michel-Beyerle ME (2002)
Picosecond time-resolved fluorescence from blue-emitting chromophore variants Y66F and
Y66H of the green fluorescent protein. Chem Bio Chem 3:659-663
68. Lossau HS, Kummer A, Heinecke R, P
ollinger-Dammer F, Kompa C, Beiser G, Johnsson T,
Silva CM, Yang MM, Youvan DC, Michel-Beyerle ME (1996) Time-resolved spectroscopy
of wild-type and mutant green fluorescent proteins reveals excited state deprotonation
consistent with fluorophore-protein interactions. Chem Phys 213:1-16
69. Megley CM, Dickson LA, Maddalo SL, Chandler GJ, Zimmer M (2009) Photophysics and
dihedral freedom of the chromophore in yellow, blue, and green fluorescent protein. J Phys
Chem B 113:302-308
70. Barondeau DP, Kassmann CJ, Tainer JA, Getzoff ED (2002) Structural chemistry of a green
fluorescent protein Zn biosensor. J Am Chem Soc 124:3522-3524
71. Ai HW, Shaner NC, Cheng Z, Tsien RY, Campbell R (2007) Exploration of new chromo-
phore structures leads to the identification of improved blue fluorescent proteins. Biochem-
istry 46:5904-5910
72. Tramier M, Gautier I, Piolot T, Ravalet S, Kemnitz K, Coppey J, Durieux C, Mignotte V,
Coppey-Moisan M (2002) Picosecond-hetero-FRET microscopy to probe protein-protein
interactions in live cells. Biophys J 83:3570-3577
73. Demachy I, Ridard J, Laguitton-Pasquier H, Durnerin E, Vallverdu G, Archirel P, L ´ vy B
(2005) Cyan fluorescent protein: molecular dynamics, simulations, and electronic absorption
spectrum. J Phys Chem B 109:24121-24133
74. Chattoraj M, King BA, Bublitz GA, Boxer SG (1996) Ultra-fast excited state dynamics in green
fluorescent protein: multiple states and proton transfer. Proc Natl Acad Sci USA 93:862-8367
75. Olson S, McKenzie RH (2010) A dark excited state of fluorescent chromophores, considered
as Brooker dyes. Chem Phys Lett 492:150-156
76. Pal PP, Bae JH, Azim MK, Hess P, Friedrich R, Huber R, Moroder L, Budisa N (2005)
Structural and spectral response of Aequorea victoria green fluorescent proteins to chromo-
phore fluorination. Biochemistry 44:3663-3672
Search WWH ::




Custom Search