Biology Reference
In-Depth Information
22. Lehrer SS, Ishii Y. Fluorescence properties of acrylodan-labeled tropomyosin and
tropomyosin-actin: evidence for myosin subfragment 1 induced changes in geometry
between tropomyosin and actin. Biochemistry 1988; 27 :5899-906.
23. Greenspan P, Mayer EP, Fowler SD. Nile red: a selective fluorescent stain for intracel-
lular lipid droplets. J Cell Biol 1985; 100 :965.
24. Dattelbaum JD, Logger LL, Benson DE, Sali KM, Thompson RB, Hellinga HW. Anal-
ysis of allosteric signal transduction mechanisms in an engineered fluorescent maltose
biosensor. Protein Sci 2005; 14 :284-91.
25. Chin JW, Cropp TA, Anderson JC, Mukherji M, Zhang Z, Schultz PG. An expanded
eukaryotic genetic code. Science 2003; 301 :964-7.
26. Hyun SL, Guo J, Lemke EA, Dimla RD, Schultz PG. Genetic incorporation of a small,
environmentally sensitive, fluorescent probe into proteins in Saccharomyces cerevisiae.
J Am Chem Soc 2009; 131 :12921-3.
27. Lakowicz JR. Principles of fluorescence spectroscopy. New York: Kluwer Academic; 1999.
28. Goncalves MS. Fluorescent labeling of biomolecules with organic probes. Chem Rev
2009; 109 :190-212.
29. Holmes-Farley SR, Whitesides GM. Fluorescence properties of dansyl groups covalently
bonded to the surface of oxidatively functionalized low-density polyethylene film. Lang-
muir 1986;
:266.
30. Harikumar KG, Pinon DI, Wessels WS, Prendergast FG, Miller LJ. Environment and
mobility of a series of fluorescent reporters at the amino terminus of structurally related
peptide agonists and antagonists bound to the cholecystokinin receptor. J Biol Chem
2002; 277 :18552-60.
31. Hiratsuka T. ATP-induced opposite changes in the local environments around Cys(697)
(SH2) and Cys(707) (SH1) of the myosin motor domain revealed by the prodan
fluorescence. J Biol Chem 1999; 274 :29156-63.
32. Shi J, Boyd AE, Radic Z, Taylor P. Reversibly bound and covalently attached ligands
induce conformational changes in the omega loop, Cys69-Cys96, of mouse acetylcho-
linesterase. J Biol Chem 2001; 276 :42196.
33. Cohen BE, McAnaney TB, Park ES, Jan YN, Boxer SG, Jan LY. Probing protein
electrostatics with a synthetic fluorescent amino acid. Science 2002; 296 :1700-3.
34. Nitz M, Mezo AR, Ali MH, Imperiali B. Enantioselective synthesis and application
of the highly fluorescent and environment-sensitive amino acid 6-(2-dim-
ethylaminonaphthoyl) alanine (DANA). Chem Commun 2002; 17 :1912-3.
35. Chen H, Chung NN, Lemieux C, Zelent B, Vanderkooi JM, Gryczynski I, et al.
[Aladan3]TIPP: a fluorescent delta-opioid antagonist with high delta-receptor binding
affinity and delta selectivity. Biopolymers 2005; 80 :325-31.
36. Loving G, Imperiali B. A versatile amino acid analogue of the solvatochromic
fluorophore 4-N, N-dimethylamino-1,8-naphthalimide: a powerful tool for the study
of dynamic protein interactions. J Am Chem Soc 2008; 130 :13630-8.
37. Eugenio Vazquez M, Rothman DM, Imperiali B. A new environment-sensitive
fluorescent amino acid for Fmoc-based solid phase peptide synthesis. Org Biomol Chem
2004; 2 :1965-6.
38. Venkatraman P, Nguyen TT, Sainlos M, Bilsel O, Chitta S, Imperiali B, et al.
Fluorogenic probes for monitoring peptide binding to class II MHC proteins in living
cells. Nat Chem Biol 2007;
2
:222-8.
39. Bailey DM, Hennig A, Uzunova VD, Nau WM. Supramolecular tandem enzyme assays
for multiparameter sensor arrays and enantiomeric excess determination of amino acids.
Chem Eur J 2008; 14 :6069-77.
40. Brea RJ, Eugenio V´zquez M, Mosquera M, Castedo L, Granja JR. Controlling multiple
fluorescent signal output in cyclic peptide-based supramolecular systems. J Am Chem Soc
2007; 129 :1653-7.
3
Search WWH ::




Custom Search