Chemistry Reference
In-Depth Information
colocalization of single
uorescent probes.
Proc. Natl Acad. Sci. USA,
22 Neuweiler, H., Schulz, A., B
ohmer, M.,
Enderlein, J. and Sauer, M. (2003)
Measurement of submicrosecond
intramolecular contact formation in
peptides at the single-molecule level.
J. Am. Chem. Soc.,
9466.
11 Betzig, E., Patterson, G.H., Sougrat, R.,
Lindwasser, O.W., Olenych, S., Bonifacino,
J.S., Davidson, M.W., Lippincott-Schwartz,
J. and Hess, H.F. (2006) Imaging
intracellular
97
, 9461
-
5330.
23 Wang, H., Luo, G., Karnchanaphanurach,
P., Louie, T.-M., Cova, S., Xun, L. and Xie,
X.S. (2003) Protein conformational
dynamics probed by single-molecule
electron transfer. Science,
125
, 5324
-
fluorescent proteins at
nanometer resolution. Science,
313
,
1645.
12 Ha, T., Laurence, T.A., Chemla, D.S. and
Weiss, S. (1999) Polarization spectroscopy
of single
1642
-
266.
24 Eggeling, C., Volkmer, A. and Seidel,
C.A.M. (2005) Molecular photobleaching
kinetics of rhodamine 6G by one- and two-
photon induced confocal uorescence
microscopy. Chem. Phys. Chem.,
302
, 262
-
fluorescent molecules. J. Phys.
Chem. B, 103, 6839 - 6850.
13 Forkey, J.N., Quinlan, M.E. and Goldman,
Y.E. (2000) Protein structural dynamics by
single-molecule
fluorescence polarization.
Prog. Biophys. Mol. Biol.,
6
,
35.
14 Kinosita, K., Adachi, K. and Itoh, H. (2004)
Rotation of F1-ATPase: how an ATP-driven
molecular machine may work. Ann. Rev.
Biophys. Biomol. Struct.,
74
,1
804.
25 Weiss, S. (1999) Fluorescence
spectroscopy of single biomolecules.
Science,
791
-
-
1683.
26 Kapanidis, A.N., Lee, N.K., Laurence, T.A.,
Doose, S., Margeat, E. and Weiss, S. (2004)
Fluorescence-aided molecule sorting:
analysis of structure and interactions by
alternating-laser excitation of single
molecules. Proc. Natl Acad. Sci. USA,
283
, 1676
-
268.
15 Rosenberg, S.A., Quinlan, M.E., Forkey,
J.N. and Goldman, Y.E. (2005) Rotational
motions of macro- molecules by single-
molecule
33
, 245
-
fluorescence microscopy. Acc.
593.
16 Forster, T. (1946) Energiewanderung und
Chem. Res.,
38
, 583
-
101
,
8941.
27 Kapanidis, A.N. and Weiss, S. (2002)
Fluorescent probes and bioconjugation
chemistries for single-molecule
8936
-
fluoreszenz. Die Naturwissenschaften,
6
,
175.
17 Forster, T. (1948) Zwischenmolekulare
energiewanderung und
166
-
uoreszenz. Ann.
fluorescence analysis of biomolecules.
J. Chem. Phys.,
75.
18 Stryer, L. (1978) Fluorescence energy
transfer as a spectroscopic ruler. Annu. Rev.
Biochem.,
Physik,
2
,55
10964.
28 Jager, M., Michalet, X. andWeiss, S. (2005)
Protein
117
, 10953
-
-
protein interactions as a tool for
site-speci
-
846.
19 Ha, T., Enderle, T., Ogletree, D.F., Chemla,
D.S., Selvin, P.R. and Weiss, S. (1996)
Probing the interaction between two single
molecules: Fluorescence resonance energy
transfer between a single donor and a
single acceptor. Proc. Natl Acad. Sci. USA,
93
47
, 819
c labeling of proteins. Protein
Sci., 14, 2059 - 2068.
29 Jager, M., Nir, E. and Weiss, S. (2006) Site-
speci c labeling of proteins for single-
molecule FRET by combining chemical
and enzymatic modi
-
cation. Protein Sci.,
646.
30 Axelrod, D. (2001) Total Internal Re
15
, 640
-
6268.
20 Marcus, R.A. and Sutin, N. (1985) Electron
transfers in chemistry and biology.
Biochem. Biophys. Acta,
, 6264
ection
Fluorescence microscopy in cell biology.
Traf
-
774.
31 Starr, T.E. and Thompson, N.L. (2001) Total
internal re
c,
2
, 764
-
322.
21 Moser, C.C., Keske, J.M., Warncke, K.,
Farid, R.S. and Dutton, P.L. (1992) Nature
of biological electron transfer. Nature,
811
, 265
-
uorescence
correlation spectroscopy: Combined
surface reaction and solution diffusion.
Biophys. J.,
ection with
355
,
796
-
802.
80
, 1575
-
1584.
Search WWH ::




Custom Search