-
1
-
-
34548576414
-
Extraction, purification and properties of aequorin, a bioluminescent protein from the luminous hydromedusan, Aequorea
-
O. Shimomura, F. H. Johnson, and Y. Saiga, "Extraction, purification and properties of aequorin, a bioluminescent protein from the luminous hydromedusan, Aequorea," J. Cell. Comp. Physiol. 59(3), 223-239 (1962).
-
(1962)
J. Cell. Comp. Physiol.
, vol.59
, Issue.3
, pp. 223-239
-
-
Shimomura, O.1
Johnson, F.H.2
Saiga, Y.3
-
2
-
-
0000360525
-
Structure of the chromophore of Aequorea green fluorescent protein
-
O. Shimomura, "Structure of the chromophore of Aequorea green fluorescent protein," FEBS Lett. 104(2), 220-222 (1979).
-
(1979)
FEBS Lett.
, vol.104
, Issue.2
, pp. 220-222
-
-
Shimomura, O.1
-
3
-
-
0026578325
-
Primary structure of the Aequorea victoria greenfluorescent protein
-
D. C. Prasher et al., "Primary structure of the Aequorea victoria greenfluorescent protein," Gene 111(2), 229-233 (1992).
-
(1992)
Gene
, vol.111
, Issue.2
, pp. 229-233
-
-
Prasher, D.C.1
-
4
-
-
23444431611
-
Green fluorescent protein as a marker for geneexpression
-
M. Chalfie et al., "Green fluorescent protein as a marker for geneexpression," Science 263(5148), 802-805 (1994).
-
(1994)
Science
, vol.263
, Issue.5148
, pp. 802-805
-
-
Chalfie, M.1
-
5
-
-
0028580734
-
Wavelength mutations and posttranslational autoxidation of green fluorescent protein
-
R. Heim, D. C. Prasher, and R. Y. Tsien, "Wavelength mutations and posttranslational autoxidation of green fluorescent protein," Proc. Natl. Acad. Sci. U. S. A. 91(26), 12501-12504 (1994).
-
(1994)
Proc. Natl. Acad. Sci. U. S. A.
, vol.91
, Issue.26
, pp. 12501-12504
-
-
Heim, R.1
Prasher, D.C.2
Tsien, R.Y.3
-
6
-
-
0028921834
-
Improved green fluorescence
-
R. Heim, A. B. Cubitt, and R. Y. Tsien, "Improved green fluorescence," Nature 373(6516), 663-664 (1995).
-
(1995)
Nature
, vol.373
, Issue.6516
, pp. 663-664
-
-
Heim, R.1
Cubitt, A.B.2
Tsien, R.Y.3
-
7
-
-
0030087710
-
Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer
-
R. Heim and R. Y. Tsien, "Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer," Curr. Biol. 6(2), 178-182 (1996).
-
(1996)
Curr. Biol.
, vol.6
, Issue.2
, pp. 178-182
-
-
Heim, R.1
Tsien, R.Y.2
-
8
-
-
0029909407
-
Optimized codon usage and chromophore mutations provide enhanced sensitivity with the green fluorescent protein
-
T. T. Yang, L. Cheng, and S. R. Kain, "Optimized codon usage and chromophore mutations provide enhanced sensitivity with the green fluorescent protein," Nucleic Acids Res. 24(22), 4592-4593 (1996).
-
(1996)
Nucleic Acids Res.
, vol.24
, Issue.22
, pp. 4592-4593
-
-
Yang, T.T.1
Cheng, L.2
Kain, S.R.3
-
9
-
-
42349096096
-
The first mutant of the Aequorea victoria green fluorescent protein that forms a red chromophore
-
A. S. Mishin et al., "The first mutant of the Aequorea victoria green fluorescent protein that forms a red chromophore," Biochemistry 47(16), 4666-4673 (2008).
-
(2008)
Biochemistry
, vol.47
, Issue.16
, pp. 4666-4673
-
-
Mishin, A.S.1
-
10
-
-
0032867477
-
Fluorescent proteins from nonbioluminescent Anthozoa species
-
M. V. Matz et al., "Fluorescent proteins from nonbioluminescent Anthozoa species," Nat. Biotechnol. 17(10), 969-973 (1999).
-
(1999)
Nat. Biotechnol.
, vol.17
, Issue.10
, pp. 969-973
-
-
Matz, M.V.1
-
11
-
-
0034710920
-
Biochemistry, mutagenesis, and oligomerization of DsRed, a red fluorescent protein from coral
-
G. S. Baird, D. A. Zacharias, and R. Y. Tsien, "Biochemistry, mutagenesis, and oligomerization of DsRed, a red fluorescent protein from coral," Proc. Natl. Acad. Sci. U. S. A. 97(22), 11984-11989 (2000).
-
(2000)
Proc. Natl. Acad. Sci. U. S. A.
, vol.97
, Issue.22
, pp. 11984-11989
-
-
Baird, G.S.1
Zacharias, D.A.2
Tsien, R.Y.3
-
12
-
-
0035807811
-
Identification of different emitting species in the red fluorescent protein DsRed by means of ensemble and single-molecule spectroscopy
-
M. Cotlet et al., "Identification of different emitting species in the red fluorescent protein DsRed by means of ensemble and single-molecule spectroscopy," Proc. Natl. Acad. Sci. U. S. A. 98(25), 1439-14403 (2001).
-
(2001)
Proc. Natl. Acad. Sci. U. S. A.
, vol.98
, Issue.25
, pp. 1439-14403
-
-
Cotlet, M.1
-
13
-
-
0034710921
-
The structure of the chromophore within DsRed, a red fluorescent protein from coral
-
L. A. Gross et al., "The structure of the chromophore within DsRed, a red fluorescent protein from coral," Proc. Natl. Acad. Sci. U. S. A. 97(22), 11990-11995 (2000).
-
(2000)
Proc. Natl. Acad. Sci. U. S. A.
, vol.97
, Issue.22
, pp. 11990-11995
-
-
Gross, L.A.1
-
14
-
-
0035895225
-
Refined crystal structure of DsRed, a red fluorescent protein from coral, at 2.0-A resolution
-
D. Yarbrough et al., "Refined crystal structure of DsRed, a red fluorescent protein from coral, at 2.0-A resolution," Proc. Natl. Acad. Sci. U. S. A. 98(2), 462-467 (2001).
-
(2001)
Proc. Natl. Acad. Sci. U. S. A.
, vol.98
, Issue.2
, pp. 462-467
-
-
Yarbrough, D.1
-
15
-
-
0037062424
-
A monomeric red fluorescent protein
-
R. E. Campbell et al., "A monomeric red fluorescent protein," Proc. Natl. Acad. Sci. U. S. A. 99(12), 7877-7882 (2002).
-
(2002)
Proc. Natl. Acad. Sci. U. S. A.
, vol.99
, Issue.12
, pp. 7877-7882
-
-
Campbell, R.E.1
-
16
-
-
11144267737
-
Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. Red fluorescent protein
-
N. C. Shaner et al., "Improved monomeric red, orange and yellow fluorescent proteins derived from Discosoma sp. red fluorescent protein," Nat. Biotechnol. 22(12), 1567-1572 (2004).
-
(2004)
Nat. Biotechnol.
, vol.22
, Issue.12
, pp. 1567-1572
-
-
Shaner, N.C.1
-
17
-
-
44449109239
-
Improving the photostability of bright monomeric orange and red fluorescent proteins
-
N. C. Shaner et al., "Improving the photostability of bright monomeric orange and red fluorescent proteins," Nat. Methods 5(6), 545-551 (2008).
-
(2008)
Nat. Methods
, vol.5
, Issue.6
, pp. 545-551
-
-
Shaner, N.C.1
-
18
-
-
33747479549
-
Novel chromophores and buried charges control color in mFruits
-
X. Shu et al., "Novel chromophores and buried charges control color in mFruits," Biochemistry 45(32), 9639-9647 (2006).
-
(2006)
Biochemistry
, vol.45
, Issue.32
, pp. 9639-9647
-
-
Shu, X.1
-
19
-
-
57649231182
-
A crystallographic study of bright far-red fluorescent protein mKate reveals pH-induced cis-trans isomerization of the chromophore
-
S. Pletnev et al., "A crystallographic study of bright far-red fluorescent protein mKate reveals pH-induced cis-trans isomerization of the chromophore," J. Biol. Chem. 283(43), 28980-28987 (2008).
-
(2008)
J. Biol. Chem.
, vol.283
, Issue.43
, pp. 28980-28987
-
-
Pletnev, S.1
-
20
-
-
0029847806
-
Crystal structure of the Aequorea victoria green fluorescent protein
-
M. Ormo et al., "Crystal structure of the Aequorea victoria green fluorescent protein," Science 273(5280), 1392-1395 (1996).
-
(1996)
Science
, vol.273
, Issue.5280
, pp. 1392-1395
-
-
Ormo, M.1
-
21
-
-
3042691006
-
Common pathway for the red chromophore formation in fluorescent proteins and chromoproteins
-
V. V. Verkhusha et al., "Common pathway for the red chromophore formation in fluorescent proteins and chromoproteins," Chem. Biol. 11(6), 845-854 (2004).
-
(2004)
Chem. Biol.
, vol.11
, Issue.6
, pp. 845-854
-
-
Verkhusha, V.V.1
-
22
-
-
70349515538
-
The fluorescent protein palette: Tools for cellular imaging
-
R. N. Day and M. W. Davidson, "The fluorescent protein palette: tools for cellular imaging," Chem. Soc. Rev. 38(10), 2887-2921 (2009).
-
(2009)
Chem. Soc. Rev.
, vol.38
, Issue.10
, pp. 2887-2921
-
-
Day, R.N.1
Davidson, M.W.2
-
23
-
-
77953631696
-
Chromophore formation in DsRed occurs by a branched pathway
-
R. L. Strack et al., "Chromophore formation in DsRed occurs by a branched pathway," J. Am. Chem. Soc. 132(24), 8496-8505 (2010).
-
(2010)
J. Am. Chem. Soc.
, vol.132
, Issue.24
, pp. 8496-8505
-
-
Strack, R.L.1
-
24
-
-
84865094423
-
Chromophore transformations in red fluorescent proteins
-
F. V. Subach and V. V. Verkhusha, "Chromophore transformations in red fluorescent proteins," Chem. Rev. 112(7), 4308-4327 (2012).
-
(2012)
Chem. Rev.
, vol.112
, Issue.7
, pp. 4308-4327
-
-
Subach, F.V.1
Verkhusha, V.V.2
-
25
-
-
67349176187
-
An ultramarine fluorescent protein with increased photostability and pH insensitivity
-
W. Tomosugi et al., "An ultramarine fluorescent protein with increased photostability and pH insensitivity," Nat. Methods 6(5), 351-353 (2009).
-
(2009)
Nat. Methods
, vol.6
, Issue.5
, pp. 351-353
-
-
Tomosugi, W.1
-
26
-
-
30944467113
-
A guide to choosing fluorescent proteins
-
N. C. Shaner, P. A. Steinbach, and R. Y. Tsien, "A guide to choosing fluorescent proteins," Nat. Methods 2(12), 905-909 (2005).
-
(2005)
Nat. Methods
, vol.2
, Issue.12
, pp. 905-909
-
-
Shaner, N.C.1
Steinbach, P.A.2
Tsien, R.Y.3
-
27
-
-
38349006477
-
Advances in fluorescent protein technology
-
N. C. Shaner, G. H. Patterson, and M. W. Davidson, "Advances in fluorescent protein technology," J. Cell Sci. 120(24), 4247-4260 (2007).
-
(2007)
J. Cell Sci.
, vol.120
, Issue.24
, pp. 4247-4260
-
-
Shaner, N.C.1
Patterson, G.H.2
Davidson, M.W.3
-
28
-
-
72049085243
-
Autofluorescent proteins with excitation in the optical window for intravital imaging in mammals
-
M. Z. Lin et al., "Autofluorescent proteins with excitation in the optical window for intravital imaging in mammals," Chem. Biol. 16(11), 1169-1179 (2009).
-
(2009)
Chem. Biol.
, vol.16
, Issue.11
, pp. 1169-1179
-
-
Lin, M.Z.1
-
29
-
-
59349110743
-
Photoactivatable mCherry for high-resolution twocolor fluorescence microscopy
-
F. V. Subach et al., "Photoactivatable mCherry for high-resolution twocolor fluorescence microscopy," Nat. Methods 6(2), 153-159 (2009).
-
(2009)
Nat. Methods
, vol.6
, Issue.2
, pp. 153-159
-
-
Subach, F.V.1
-
30
-
-
53249129686
-
Generation of monomeric reversibly switchable red fluorescent proteins for far-field fluorescence nanoscopy
-
A. C. Stiel et al., "Generation of monomeric reversibly switchable red fluorescent proteins for far-field fluorescence nanoscopy," Biophys. J. 95(6), 2989-2997 (2008).
-
(2008)
Biophys. J.
, vol.95
, Issue.6
, pp. 2989-2997
-
-
Stiel, A.C.1
-
31
-
-
77955452640
-
Red fluorescent protein with reversibly photoswitchable absorbance for photochromic FRET
-
F. V. Subach et al., "Red fluorescent protein with reversibly photoswitchable absorbance for photochromic FRET," Chem. Biol. 17(7), 745-755 (2010).
-
(2010)
Chem. Biol.
, vol.17
, Issue.7
, pp. 745-755
-
-
Subach, F.V.1
-
32
-
-
80052281149
-
A photoswitchable orange-to-far-red fluorescent protein, PSmOrange
-
O. M. Subach et al., "A photoswitchable orange-to-far-red fluorescent protein, PSmOrange," Nat. Methods 8, 771-777 (2011).
-
(2011)
Nat. Methods
, vol.8
, pp. 771-777
-
-
Subach, O.M.1
-
33
-
-
84902975772
-
Phototransformable fluorescent proteins: Future challenges
-
V. Adam et al., "Phototransformable fluorescent proteins: Future challenges," Curr. Opin. Chem. Biol. 20, 92-102 (2014).
-
(2014)
Curr. Opin. Chem. Biol.
, vol.20
, pp. 92-102
-
-
Adam, V.1
-
34
-
-
34547659144
-
Bright monomeric red fluorescent protein with an extended fluorescence lifetime
-
E. M. Merzlyak et al., "Bright monomeric red fluorescent protein with an extended fluorescence lifetime," Nat. Methods 4(7), 555-557 (2007).
-
(2007)
Nat. Methods
, vol.4
, Issue.7
, pp. 555-557
-
-
Merzlyak, E.M.1
-
35
-
-
84887212538
-
MRuby, a bright monomeric red fluorescent protein for labeling of subcellular structures
-
S. Kredel et al., "mRuby, a bright monomeric red fluorescent protein for labeling of subcellular structures," PLoS One 4(2), e4391 (2009).
-
(2009)
PLoS One
, vol.4
, Issue.2
, pp. e4391
-
-
Kredel, S.1
-
36
-
-
84867084476
-
Improving FRET dynamic range with bright green and red fluorescent proteins
-
A. J. Lam et al., "Improving FRET dynamic range with bright green and red fluorescent proteins," Nat. Methods 9(10), 1005-1012 (2012).
-
(2012)
Nat. Methods
, vol.9
, Issue.10
, pp. 1005-1012
-
-
Lam, A.J.1
-
37
-
-
84870812948
-
A monomeric red fluorescent protein with low cytotoxicity
-
II Shemiakina et al., "A monomeric red fluorescent protein with low cytotoxicity," Nat. Commun. 3, 1204 (2012).
-
(2012)
Nat. Commun.
, vol.3
, pp. 1204
-
-
Shemiakina, I.I.1
-
38
-
-
34548363677
-
Bright far-red fluorescent protein for whole-body imaging
-
D. Shcherbo et al., "Bright far-red fluorescent protein for whole-body imaging," Nat. Methods 4(9), 741-746 (2007).
-
(2007)
Nat. Methods
, vol.4
, Issue.9
, pp. 741-746
-
-
Shcherbo, D.1
-
39
-
-
62149150302
-
Far-red fluorescent tags for protein imaging in living tissues
-
D. Shcherbo et al., "Far-red fluorescent tags for protein imaging in living tissues," Biochem. J. 418(3), 567-574 (2009).
-
(2009)
Biochem. J.
, vol.418
, Issue.3
, pp. 567-574
-
-
Shcherbo, D.1
-
40
-
-
10044227172
-
Evolution of new nonantibody proteins via iterative somatic hypermutation
-
L. Wang et al., "Evolution of new nonantibody proteins via iterative somatic hypermutation," Proc. Natl. Acad. Sci. U. S. A. 101(48), 16745-16749 (2004).
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, Issue.48
, pp. 16745-16749
-
-
Wang, L.1
-
41
-
-
77955211891
-
Far-red fluorescent protein excitable with red lasers for flow cytometry and superresolution STED nanoscopy
-
K. S. Morozova et al., "Far-red fluorescent protein excitable with red lasers for flow cytometry and superresolution STED nanoscopy," Biophys. J. 99(2), L13-15 (2010).
-
(2010)
Biophys. J.
, vol.99
, Issue.2
, pp. L13-15
-
-
Morozova, K.S.1
-
42
-
-
84878704118
-
Extended Stokes shift in fluorescent proteins: Chromophore-protein interactions in a near-infrared TagRFP675 variant
-
K. D. Piatkevich et al., "Extended Stokes shift in fluorescent proteins: chromophore-protein interactions in a near-infrared TagRFP675 variant," Sci. Rep. 3, 1847 (2013).
-
(2013)
Sci. Rep.
, vol.3
, pp. 1847
-
-
Piatkevich, K.D.1
-
43
-
-
84899897163
-
Non-invasive intravital imaging of cellular differentiation with a bright red-excitable fluorescent protein
-
J. Chu et al., "Non-invasive intravital imaging of cellular differentiation with a bright red-excitable fluorescent protein," Nat. Methods 11(5), 572-578 (2014).
-
(2014)
Nat. Methods
, vol.11
, Issue.5
, pp. 572-578
-
-
Chu, J.1
-
44
-
-
33646572554
-
A fluorescent variant of a protein from the stony coral Montipora facilitates dual-color single-laser fluorescence cross-correlation spectroscopy
-
T. Kogure et al., "A fluorescent variant of a protein from the stony coral Montipora facilitates dual-color single-laser fluorescence cross-correlation spectroscopy," Nat. Biotechnol. 24(5), 577-581 (2006).
-
(2006)
Nat. Biotechnol.
, vol.24
, Issue.5
, pp. 577-581
-
-
Kogure, T.1
-
45
-
-
84879275172
-
MBeRFP, an improved large stokes shift red fluorescent protein
-
J. Yang et al., "mBeRFP, an improved large stokes shift red fluorescent protein," PLoS One 8(6), e64849 (2013).
-
(2013)
PLoS One
, vol.8
, Issue.6
, pp. e64849
-
-
Yang, J.1
-
46
-
-
77950400530
-
Monomeric red fluorescent proteins with a large Stokes shift
-
K. D. Piatkevich et al., "Monomeric red fluorescent proteins with a large Stokes shift," Proc. Natl. Acad. Sci. U. S. A. 107(12), 5369-5374 (2010).
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, Issue.12
, pp. 5369-5374
-
-
Piatkevich, K.D.1
-
47
-
-
84860852635
-
An orange fluorescent protein with a large Stokes shift for single-excitation multicolor FCCS and FRET imaging
-
D. M. Shcherbakova et al., "An orange fluorescent protein with a large Stokes shift for single-excitation multicolor FCCS and FRET imaging," J. Am. Chem. Soc. 134(18), 7913-7923 (2012).
-
(2012)
J. Am. Chem. Soc.
, vol.134
, Issue.18
, pp. 7913-7923
-
-
Shcherbakova, D.M.1
-
48
-
-
0037015053
-
A far-red fluorescent protein with fast maturation and reduced oligomerization tendency from Entacmaea quadricolor (Anthozoa, Actinaria)
-
J.Wiedenmann et al., "A far-red fluorescent protein with fast maturation and reduced oligomerization tendency from Entacmaea quadricolor (Anthozoa, Actinaria)," Proc. Natl. Acad. Sci. U. S. A. 99(18), 11646-11651 (2002).
-
(2002)
Proc. Natl. Acad. Sci. U. S. A.
, vol.99
, Issue.18
, pp. 11646-11651
-
-
Wiedenmann, J.1
-
49
-
-
84859585576
-
Assessing the tendency of fluorescent proteins to oligomerize under physiologic conditions
-
L. M. Costantini et al., "Assessing the tendency of fluorescent proteins to oligomerize under physiologic conditions," Traffic 13(5), 643-649 (2012).
-
(2012)
Traffic
, vol.13
, Issue.5
, pp. 643-649
-
-
Costantini, L.M.1
-
50
-
-
44949131031
-
GFP-like proteins stably accumulate in lysosomes
-
H. Katayama et al., "GFP-like proteins stably accumulate in lysosomes," Cell Struct. Funct. 33(1), 1-12 (2008).
-
(2008)
Cell Struct. Funct.
, vol.33
, Issue.1
, pp. 1-12
-
-
Katayama, H.1
-
51
-
-
84857858536
-
Autophagosomes initiate distally and mature during transport toward the cell soma in primary neurons
-
S. Maday, K. E.Wallace, and E. L. Holzbaur, "Autophagosomes initiate distally and mature during transport toward the cell soma in primary neurons," J. Cell Biol. 196(4), 407-417 (2012).
-
(2012)
J. Cell Biol.
, vol.196
, Issue.4
, pp. 407-417
-
-
Maday, S.1
Wallace, K.E.2
Holzbaur, E.L.3
-
52
-
-
78650543850
-
Generation of longer emission wavelength red fluorescent proteins using computationally designed libraries
-
R. A. Chica et al., "Generation of longer emission wavelength red fluorescent proteins using computationally designed libraries," Proc. Natl. Acad. Sci. U. S. A. 107(47), 20257-20262 (2010).
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, Issue.47
, pp. 20257-20262
-
-
Chica, R.A.1
-
53
-
-
77955360295
-
Engineering ESPT pathways based on structural analysis of LSSmKate red fluorescent proteins with large Stokes shift
-
K. D. Piatkevich et al., "Engineering ESPT pathways based on structural analysis of LSSmKate red fluorescent proteins with large Stokes shift," J. Am. Chem. Soc. 132(31), 10762-10770 (2010).
-
(2010)
J. Am. Chem. Soc.
, vol.132
, Issue.31
, pp. 10762-10770
-
-
Piatkevich, K.D.1
-
54
-
-
0036902813
-
Creating new fluorescent probes for cell biology
-
J. Zhang et al., "Creating new fluorescent probes for cell biology," Nat. Rev. Mol. Cell Biol. 3(12), 906-918 (2002).
-
(2002)
Nat. Rev. Mol. Cell Biol.
, vol.3
, Issue.12
, pp. 906-918
-
-
Zhang, J.1
-
55
-
-
79957843777
-
Modern fluorescent proteins and imaging technologies to study gene expression, nuclear localization, and dynamics
-
B. Wu et al., "Modern fluorescent proteins and imaging technologies to study gene expression, nuclear localization, and dynamics," Curr. Opin. Cell Biol. 23(3), 310-317 (2011).
-
(2011)
Curr. Opin. Cell Biol.
, vol.23
, Issue.3
, pp. 310-317
-
-
Wu, B.1
-
56
-
-
0032500053
-
Visualizing secretion and synaptic transmission with pH-sensitive green fluorescent proteins
-
G. Miesenbock, D. A. De Angelis, and J. E. Rothman, "Visualizing secretion and synaptic transmission with pH-sensitive green fluorescent proteins," Nature 394(6689), 192-195 (1998).
-
(1998)
Nature
, vol.394
, Issue.6689
, pp. 192-195
-
-
Miesenbock, G.1
De Angelis, D.A.2
Rothman, J.E.3
-
57
-
-
84862872612
-
PHTomato, a red, genetically encoded indicator that enables multiplex interrogation of synaptic activity
-
Y. Li and R. W. Tsien, "pHTomato, a red, genetically encoded indicator that enables multiplex interrogation of synaptic activity," Nat. Neurosci. 15(7), 1047-1053 (2012).
-
(2012)
Nat. Neurosci.
, vol.15
, Issue.7
, pp. 1047-1053
-
-
Li, Y.1
Tsien, R.W.2
-
58
-
-
79959870658
-
Imaging intracellular pH in live cells with a genetically encoded red fluorescent protein sensor
-
M. Tantama, Y. P. Hung, and G. Yellen, "Imaging intracellular pH in live cells with a genetically encoded red fluorescent protein sensor," J. Am. Chem. Soc. 133(26), 10034-10037 (2011).
-
(2011)
J. Am. Chem. Soc.
, vol.133
, Issue.26
, pp. 10034-10037
-
-
Tantama, M.1
Hung, Y.P.2
Yellen, G.3
-
59
-
-
84918531584
-
PHuji, a pH-sensitive red fluorescent protein for imaging of exo-and endocytosis
-
Y. Shen et al., "pHuji, a pH-sensitive red fluorescent protein for imaging of exo-and endocytosis," J. Cell Biol. 207(3), 419-432 (2014).
-
(2014)
J. Cell Biol.
, vol.207
, Issue.3
, pp. 419-432
-
-
Shen, Y.1
-
60
-
-
80053371503
-
An expanded palette of genetically encoded Ca(2)(+) indicators
-
Y. Zhao et al., "An expanded palette of genetically encoded Ca(2)(+) indicators," Science 333(6051), 1888-1891 (2011).
-
(2011)
Science
, vol.333
, Issue.6051
, pp. 1888-1891
-
-
Zhao, Y.1
-
61
-
-
59349118696
-
A genetically encoded fluorescent reporter of ATP:ADP ratio
-
J. Berg, Y. P. Hung, and G. Yellen, "A genetically encoded fluorescent reporter of ATP:ADP ratio," Nat. Methods 6(2), 161-166 (2009).
-
(2009)
Nat. Methods
, vol.6
, Issue.2
, pp. 161-166
-
-
Berg, J.1
Hung, Y.P.2
Yellen, G.3
-
62
-
-
29344432103
-
Re-engineering redox-sensitive green fluorescent protein for improved response rate
-
M. B. Cannon and S. J. Remington, "Re-engineering redox-sensitive green fluorescent protein for improved response rate," Protein Sci. 15(1), 45-57 (2006).
-
(2006)
Protein Sci.
, vol.15
, Issue.1
, pp. 45-57
-
-
Cannon, M.B.1
Remington, S.J.2
-
63
-
-
55849098431
-
Engineering and characterization of an enhanced fluorescent protein voltage sensor
-
D. Dimitrov et al., "Engineering and characterization of an enhanced fluorescent protein voltage sensor," PLoS One 2(5), e440 (2007).
-
(2007)
PLoS One
, vol.2
, Issue.5
, pp. e440
-
-
Dimitrov, D.1
-
64
-
-
77955301626
-
A novel fluorescent sensor protein for visualization of redox states in the cytoplasm and in peroxisomes
-
T. Yano et al., "A novel fluorescent sensor protein for visualization of redox states in the cytoplasm and in peroxisomes," Mol. Cell Biol. 30(15), 3758-3766 (2010).
-
(2010)
Mol. Cell Biol.
, vol.30
, Issue.15
, pp. 3758-3766
-
-
Yano, T.1
-
65
-
-
79955894911
-
Genetically encodable fluorescent biosensors for tracking signaling dynamics in living cells
-
R. H. Newman, M. D. Fosbrink, and J. Zhang, "Genetically encodable fluorescent biosensors for tracking signaling dynamics in living cells," Chem. Rev. 111(5), 3614-3666 (2011).
-
(2011)
Chem. Rev.
, vol.111
, Issue.5
, pp. 3614-3666
-
-
Newman, R.H.1
Fosbrink, M.D.2
Zhang, J.3
-
66
-
-
0034647238
-
Antiparallel leucine zipperdirected protein reassembly: Application to the green fluorescent protein
-
I. Ghosh, A. D. Hamilton, and L. Regan, "Antiparallel leucine zipperdirected protein reassembly: application to the green fluorescent protein," J. Am. Chem. Soc. 122(23), 5658-5659 (2000).
-
(2000)
J. Am. Chem. Soc.
, vol.122
, Issue.23
, pp. 5658-5659
-
-
Ghosh, I.1
Hamilton, A.D.2
Regan, L.3
-
67
-
-
24144454858
-
Detecting protein-protein interactions with GFP-fragment reassembly
-
C. G. Wilson, T. J. Magliery, and L. Regan, "Detecting protein-protein interactions with GFP-fragment reassembly," Nat. Methods 1(3), 255-262 (2004).
-
(2004)
Nat. Methods
, vol.1
, Issue.3
, pp. 255-262
-
-
Wilson, C.G.1
Magliery, T.J.2
Regan, L.3
-
68
-
-
33746435428
-
An improved mRFP1 adds red to bimolecular fluorescence complementation
-
G. Jach et al., "An improved mRFP1 adds red to bimolecular fluorescence complementation," Nat. Methods 3(8), 597-600 (2006).
-
(2006)
Nat. Methods
, vol.3
, Issue.8
, pp. 597-600
-
-
Jach, G.1
-
69
-
-
38049115791
-
Split mCherry as a new red bimolecular fluorescence complementation system for visualizing protein-protein interactions in living cells
-
J. Y. Fan et al., "Split mCherry as a new red bimolecular fluorescence complementation system for visualizing protein-protein interactions in living cells," Biochem. Biophys. Res. Commun. 367(1), 47-53 (2008).
-
(2008)
Biochem. Biophys. Res. Commun.
, vol.367
, Issue.1
, pp. 47-53
-
-
Fan, J.Y.1
-
70
-
-
80053101300
-
Splitting and self-assembling of far-red fluorescent protein with an engineered beta strand peptide: Application for alphasynuclein imaging in mammalian cells
-
J. O. Keem et al., "Splitting and self-assembling of far-red fluorescent protein with an engineered beta strand peptide: application for alphasynuclein imaging in mammalian cells," Biomaterials 32(34), 9051-9058 (2011).
-
(2011)
Biomaterials
, vol.32
, Issue.34
, pp. 9051-9058
-
-
Keem, J.O.1
-
71
-
-
68049137311
-
A novel far-red bimolecular fluorescence complementation system that allows for efficient visualization of protein interactions under physiological conditions
-
J. Chu et al., "A novel far-red bimolecular fluorescence complementation system that allows for efficient visualization of protein interactions under physiological conditions," Biosens. Bioelectron. 25(1), 234-239 (2009).
-
(2009)
Biosens. Bioelectron.
, vol.25
, Issue.1
, pp. 234-239
-
-
Chu, J.1
-
72
-
-
84905561701
-
In vivo imaging of protein-protein and RNA-protein interactions using novel far-red fluorescence complementation systems
-
Y. Han et al., "In vivo imaging of protein-protein and RNA-protein interactions using novel far-red fluorescence complementation systems," Nucleic Acids Res. 42(13), e103 (2014).
-
(2014)
Nucleic Acids Res.
, vol.42
, Issue.13
, pp. e103
-
-
Han, Y.1
-
73
-
-
84883170184
-
A near-infrared BiFC reporter for in vivo imaging of protein-protein interactions
-
G. S. Filonov and V. V. Verkhusha, "A near-infrared BiFC reporter for in vivo imaging of protein-protein interactions," Chem. Biol. 20(8), 1078-1086 (2013).
-
(2013)
Chem. Biol.
, vol.20
, Issue.8
, pp. 1078-1086
-
-
Filonov, G.S.1
Verkhusha, V.V.2
-
74
-
-
84885446932
-
A new protein-protein interaction sensor based on tripartite split-GFP association
-
S. Cabantous et al., "A new protein-protein interaction sensor based on tripartite split-GFP association," Sci. Rep. 3, 2854 (2013).
-
(2013)
Sci. Rep.
, vol.3
, pp. 2854
-
-
Cabantous, S.1
-
75
-
-
84903703514
-
Engineering genetically encoded FRET sensors
-
L. Lindenburg and M. Merkx, "Engineering genetically encoded FRET sensors," Sensors 14(7), 11691-11713 (2014).
-
(2014)
Sensors
, vol.14
, Issue.7
, pp. 11691-11713
-
-
Lindenburg, L.1
Merkx, M.2
-
76
-
-
42949146948
-
Fluorescent protein FRET pairs for ratiometric imaging of dual biosensors
-
H.W. Ai et al., "Fluorescent protein FRET pairs for ratiometric imaging of dual biosensors," Nat. Methods 5(5), 401-403 (2008).
-
(2008)
Nat. Methods
, vol.5
, Issue.5
, pp. 401-403
-
-
Ai, H.W.1
-
77
-
-
65449153321
-
Genetically encoded FRET-based biosensors for multiparameter fluorescence imaging
-
H. J. Carlson and R. E. Campbell, "Genetically encoded FRET-based biosensors for multiparameter fluorescence imaging," Curr. Opin. Biotechnol. 20(1), 19-27 (2009).
-
(2009)
Curr. Opin. Biotechnol.
, vol.20
, Issue.1
, pp. 19-27
-
-
Carlson, H.J.1
Campbell, R.E.2
-
78
-
-
41549153281
-
Sensitive detection of p65 homodimers using redshifted and fluorescent protein-based FRET couples
-
J. Goedhart et al., "Sensitive detection of p65 homodimers using redshifted and fluorescent protein-based FRET couples," PLoS One 2(10), e1011 (2007).
-
(2007)
PLoS One
, vol.2
, Issue.10
, pp. e1011
-
-
Goedhart, J.1
-
79
-
-
42449154333
-
Simultaneous recording of multiple cellular events by FRET
-
A. Piljic and C. Schultz, "Simultaneous recording of multiple cellular events by FRET," ACS Chem. Biol. 3(3), 156-160 (2008).
-
(2008)
ACS Chem. Biol.
, vol.3
, Issue.3
, pp. 156-160
-
-
Piljic, A.1
Schultz, C.2
-
80
-
-
84884620942
-
Robust red FRET sensors using self-associating fluorescent domains
-
L. H. Lindenburg et al., "Robust red FRET sensors using self-associating fluorescent domains," ACS Chem. Biol. 8(10), 2133-2139 (2013).
-
(2013)
ACS Chem. Biol.
, vol.8
, Issue.10
, pp. 2133-2139
-
-
Lindenburg, L.H.1
-
81
-
-
84908032065
-
Quantifying stickiness: Thermodynamic characterization of intramolecular domain interactions to guide the design of Forster resonance energy transfer sensors
-
L. H. Lindenburg et al., "Quantifying stickiness: thermodynamic characterization of intramolecular domain interactions to guide the design of Forster resonance energy transfer sensors," Biochemistry 53(40), 6370-6381 (2014).
-
(2014)
Biochemistry
, vol.53
, Issue.40
, pp. 6370-6381
-
-
Lindenburg, L.H.1
-
82
-
-
68049093089
-
Fluorescent-protein-based biosensors: Modulation of energy transfer as a design principle
-
R. E. Campbell, "Fluorescent-protein-based biosensors: modulation of energy transfer as a design principle," Anal. Chem. 81(15), 5972-5979 (2009).
-
(2009)
Anal. Chem.
, vol.81
, Issue.15
, pp. 5972-5979
-
-
Campbell, R.E.1
-
83
-
-
84871556263
-
Dimerization-dependent green and yellow fluorescent proteins
-
S. C. Alford et al., "Dimerization-dependent green and yellow fluorescent proteins," ACS Synth. Biol. 1(12), 569-575 (2012).
-
(2012)
ACS Synth. Biol.
, vol.1
, Issue.12
, pp. 569-575
-
-
Alford, S.C.1
-
84
-
-
84858964964
-
A fluorogenic red fluorescent protein heterodimer
-
S. C. Alford et al., "A fluorogenic red fluorescent protein heterodimer," Chem. Biol. 19(3), 353-360 (2012).
-
(2012)
Chem. Biol.
, vol.19
, Issue.3
, pp. 353-360
-
-
Alford, S.C.1
-
85
-
-
0034052719
-
Mechanism and cellular applications of a green fluorescent protein-based halide sensor
-
S. Jayaraman et al., "Mechanism and cellular applications of a green fluorescent protein-based halide sensor," J. Biol. Chem. 275(9), 6047-6050 (2000).
-
(2000)
J. Biol. Chem.
, vol.275
, Issue.9
, pp. 6047-6050
-
-
Jayaraman, S.1
-
86
-
-
0035933577
-
Green fluorescent protein-based halide indicators with improved chloride and iodide affinities
-
L. J. Galietta, P. M. Haggie, and A. S. Verkman, "Green fluorescent protein-based halide indicators with improved chloride and iodide affinities," FEBS Lett. 499(3), 220-224 (2001).
-
(2001)
FEBS Lett.
, vol.499
, Issue.3
, pp. 220-224
-
-
Galietta, L.J.1
Haggie, P.M.2
Verkman, A.S.3
-
87
-
-
0842344106
-
Investigating mitochondrial redox potential with redox-sensitive green fluorescent protein indicators
-
G. T. Hanson et al., "Investigating mitochondrial redox potential with redox-sensitive green fluorescent protein indicators," J. Biol. Chem. 279(13), 13044-13053 (2004).
-
(2004)
J. Biol. Chem.
, vol.279
, Issue.13
, pp. 13044-13053
-
-
Hanson, G.T.1
-
88
-
-
2542455473
-
Imaging dynamic redox changes in mammalian cells with green fluorescent protein indicators
-
C. T. Dooley et al., "Imaging dynamic redox changes in mammalian cells with green fluorescent protein indicators," J. Biol. Chem. 279(21), 22284-22293 (2004).
-
(2004)
J. Biol. Chem.
, vol.279
, Issue.21
, pp. 22284-22293
-
-
Dooley, C.T.1
-
89
-
-
80053653300
-
Design and application of a class of sensors to monitor Ca2+ dynamics in high Ca2+ concentration cellular compartments
-
S. Tang et al., "Design and application of a class of sensors to monitor Ca2+ dynamics in high Ca2+ concentration cellular compartments," Proc. Natl. Acad. Sci. U. S. A. 108(39), 16265-16270 (2011).
-
(2011)
Proc. Natl. Acad. Sci. U. S. A.
, vol.108
, Issue.39
, pp. 16265-16270
-
-
Tang, S.1
-
90
-
-
68949122860
-
Red fluorescent protein pH biosensor to detect concentrative nucleoside transport
-
D. E. Johnson et al., "Red fluorescent protein pH biosensor to detect concentrative nucleoside transport," J. Biol. Chem. 284(31), 20499-20511 (2009).
-
(2009)
J. Biol. Chem.
, vol.284
, Issue.31
, pp. 20499-20511
-
-
Johnson, D.E.1
-
91
-
-
77955100340
-
Circularly permuted monomeric red fluorescent proteins with new termini in the beta-sheet
-
H. J. Carlson, D. W. Cotton, and R. E. Campbell, "Circularly permuted monomeric red fluorescent proteins with new termini in the beta-sheet," Protein Sci. 19(8), 1490-1499 (2010).
-
(2010)
Protein Sci.
, vol.19
, Issue.8
, pp. 1490-1499
-
-
Carlson, H.J.1
Cotton, D.W.2
Campbell, R.E.3
-
92
-
-
79957607095
-
Circular permutation of red fluorescent proteins
-
B. Shui et al., "Circular permutation of red fluorescent proteins," PLoS One 6(5), e20505 (2011).
-
(2011)
PLoS One
, vol.6
, Issue.5
-
-
Shui, B.1
-
93
-
-
84873404758
-
An optimized fluorescent probe for visualizing glutamate neurotransmission
-
J. S. Marvin et al., "An optimized fluorescent probe for visualizing glutamate neurotransmission," Nat. Methods 10(2), 162-170 (2013).
-
(2013)
Nat. Methods
, vol.10
, Issue.2
, pp. 162-170
-
-
Marvin, J.S.1
-
94
-
-
84888873103
-
Imaging energy status in live cells with a fluorescent biosensor of the intracellular ATP-to-ADP ratio
-
M. Tantama et al., "Imaging energy status in live cells with a fluorescent biosensor of the intracellular ATP-to-ADP ratio," Nat. Commun. 4, 2550 (2013).
-
(2013)
Nat. Commun.
, vol.4
, pp. 2550
-
-
Tantama, M.1
-
95
-
-
84901659469
-
High-fidelity optical reporting of neuronal electrical activity with an ultrafast fluorescent voltage sensor
-
F. St-Pierre et al., "High-fidelity optical reporting of neuronal electrical activity with an ultrafast fluorescent voltage sensor," Nat. Neurosci. 17(6), 884-889 (2014).
-
(2014)
Nat. Neurosci.
, vol.17
, Issue.6
, pp. 884-889
-
-
St-Pierre, F.1
-
96
-
-
80053936867
-
A genetically encoded, high-signal-to-noise maltose sensor
-
J. S. Marvin et al., "A genetically encoded, high-signal-to-noise maltose sensor," Proteins 79(11), 3025-3036 (2011).
-
(2011)
Proteins
, vol.79
, Issue.11
, pp. 3025-3036
-
-
Marvin, J.S.1
-
97
-
-
84880795969
-
Improved tools for the Brainbow toolbox
-
D. Cai et al., "Improved tools for the Brainbow toolbox," Nat. Methods 10(6), 540-547 (2013).
-
(2013)
Nat. Methods
, vol.10
, Issue.6
, pp. 540-547
-
-
Cai, D.1
-
98
-
-
78650093725
-
Optogenetic monitoring of membrane potentials
-
H. Mutoh et al., "Optogenetic monitoring of membrane potentials," Exp. Physiol. 96(1), 13-18 (2011).
-
(2011)
Exp. Physiol.
, vol.96
, Issue.1
, pp. 13-18
-
-
Mutoh, H.1
-
99
-
-
84887123973
-
Genetically encoded calcium indicator illuminates calcium dynamics in primary cilia
-
S. Su et al., "Genetically encoded calcium indicator illuminates calcium dynamics in primary cilia," Nat. Methods 10(11), 1105-1107 (2013).
-
(2013)
Nat. Methods
, vol.10
, Issue.11
, pp. 1105-1107
-
-
Su, S.1
-
100
-
-
0035129282
-
A high signal-to-noise Ca2+ probe composed of a single green fluorescent protein
-
J. Nakai, M. Ohkura, and K. Imoto, "A high signal-to-noise Ca2+ probe composed of a single green fluorescent protein," Nat. Biotechnol. 19(2), 137-141 (2001).
-
(2001)
Nat. Biotechnol.
, vol.19
, Issue.2
, pp. 137-141
-
-
Nakai, J.1
Ohkura, M.2
Imoto, K.3
-
101
-
-
0035853040
-
Circularly permuted green fluorescent proteins engineered to sense Ca2+
-
T. Nagai et al., "Circularly permuted green fluorescent proteins engineered to sense Ca2+," Proc. Natl. Acad. Sci. U. S. A. 98(6), 3197-3202 (2001).
-
(2001)
Proc. Natl. Acad. Sci. U. S. A.
, vol.98
, Issue.6
, pp. 3197-3202
-
-
Nagai, T.1
-
102
-
-
84874152926
-
Improved orange and red Ca(2)+/-indicators and photophysical considerations for optogenetic applications
-
J. Wu et al., "Improved orange and red Ca(2)+/-indicators and photophysical considerations for optogenetic applications," ACS Chem. Neurosci. 4(6), 963-972 (2013).
-
(2013)
ACS Chem. Neurosci.
, vol.4
, Issue.6
, pp. 963-972
-
-
Wu, J.1
-
103
-
-
84872108490
-
Highlightable Ca2+ indicators for live cell imaging
-
H. Hoi et al., "Highlightable Ca2+ indicators for live cell imaging," J. Am. Chem. Soc. 135(1), 46-49 (2013).
-
(2013)
J. Am. Chem. Soc.
, vol.135
, Issue.1
, pp. 46-49
-
-
Hoi, H.1
-
104
-
-
84923352094
-
A long Stokes shift red fluorescent Ca(2+) indicator protein for two-photon and ratiometric imaging
-
J. Wu et al., "A long Stokes shift red fluorescent Ca(2+) indicator protein for two-photon and ratiometric imaging," Nat. Commun. 5, 5262 (2014).
-
(2014)
Nat. Commun.
, vol.5
, pp. 5262
-
-
Wu, J.1
-
105
-
-
84908370211
-
Red fluorescent genetically encoded Ca2+ indicators for use in mitochondria and endoplasmic reticulum
-
J. Wu et al., "Red fluorescent genetically encoded Ca2+ indicators for use in mitochondria and endoplasmic reticulum," Biochem. J. 464(1), 13-22 (2014).
-
(2014)
Biochem. J.
, vol.464
, Issue.1
, pp. 13-22
-
-
Wu, J.1
-
106
-
-
84874185263
-
Genetically encoded calcium indicators for multicolor neural activity imaging and combination with optogenetics
-
J. Akerboom et al., "Genetically encoded calcium indicators for multicolor neural activity imaging and combination with optogenetics," Front. Mol. Neurosci. 6, 2 (2013).
-
(2013)
Front. Mol. Neurosci.
, vol.6
, pp. 2
-
-
Akerboom, J.1
-
107
-
-
84863676879
-
An improved genetically encoded red fluorescent Ca2+ indicator for detecting optically evoked action potentials
-
M. Ohkura et al., "An improved genetically encoded red fluorescent Ca2+ indicator for detecting optically evoked action potentials," PLoS One 7(7), e39933 (2012).
-
(2012)
PLoS One
, vol.7
, Issue.7
, pp. e39933
-
-
Ohkura, M.1
-
108
-
-
84922344255
-
Rational design of a high-affinity, fast, red calcium indicator R-CaMP2
-
M. Inoue et al., "Rational design of a high-affinity, fast, red calcium indicator R-CaMP2," Nat. Methods 12(1), 64-70 (2015).
-
(2015)
Nat. Methods
, vol.12
, Issue.1
, pp. 64-70
-
-
Inoue, M.1
-
109
-
-
84955414118
-
Functional imaging in the zebrafish retinotectal system using RGECO
-
A. S. Walker, J. Burrone, and M. P. Meyer, "Functional imaging in the zebrafish retinotectal system using RGECO," Front. Neural Circuits 7, 34 (2013).
-
(2013)
Front. Neural Circuits
, vol.7
, pp. 34
-
-
Walker, A.S.1
Burrone, J.2
Meyer, M.P.3
-
110
-
-
72049110195
-
Second and third generation voltage-sensitive fluorescent proteins for monitoring membrane potential
-
A. Perron et al., "Second and third generation voltage-sensitive fluorescent proteins for monitoring membrane potential," Front. Mol. Neurosci. 2, 5 (2009).
-
(2009)
Front. Mol. Neurosci.
, vol.2
, pp. 5
-
-
Perron, A.1
-
111
-
-
0030834492
-
A genetically encoded optical probe of membrane voltage
-
M. S. Siegel and E. Y. Isacoff, "A genetically encoded optical probe of membrane voltage," Neuron 19(4), 735-741 (1997).
-
(1997)
Neuron
, vol.19
, Issue.4
, pp. 735-741
-
-
Siegel, M.S.1
Isacoff, E.Y.2
-
112
-
-
33847351663
-
Three fluorescent protein voltage sensors exhibit low plasma membrane expression in mammalian cells
-
B. J. Baker et al., "Three fluorescent protein voltage sensors exhibit low plasma membrane expression in mammalian cells," J. Neurosci. Methods 161(1), 32-38 (2007).
-
(2007)
J. Neurosci. Methods
, vol.161
, Issue.1
, pp. 32-38
-
-
Baker, B.J.1
-
113
-
-
0036221893
-
A genetically targetable fluorescent probe of channel gating with rapid kinetics
-
K. Ataka and V. A. Pieribone, "A genetically targetable fluorescent probe of channel gating with rapid kinetics," Biophys. J. 82(1), 509-516 (2002).
-
(2002)
Biophys. J.
, vol.82
, Issue.1
, pp. 509-516
-
-
Ataka, K.1
Pieribone, V.A.2
-
114
-
-
0034912282
-
Design and characterization of a DNA-encoded, voltage-sensitive fluorescent protein
-
R. Sakai et al., "Design and characterization of a DNA-encoded, voltage-sensitive fluorescent protein," Eur. J. Neurosci. 13(12), 2314-2318 (2001).
-
(2001)
Eur. J. Neurosci.
, vol.13
, Issue.12
, pp. 2314-2318
-
-
Sakai, R.1
-
115
-
-
49649106720
-
Engineering of a genetically encodable fluorescent voltage sensor exploiting fast Ci-VSP voltage-sensing movements
-
A. Lundby et al., "Engineering of a genetically encodable fluorescent voltage sensor exploiting fast Ci-VSP voltage-sensing movements," PLoS One 3(6), e2514 (2008).
-
(2008)
PLoS One
, vol.3
, Issue.6
, pp. e2514
-
-
Lundby, A.1
-
116
-
-
0036929862
-
Tuning FlaSh: Redesign of the dynamics, voltage range, and color of the genetically encoded optical sensor of membrane potential
-
G. Guerrero et al., "Tuning FlaSh: redesign of the dynamics, voltage range, and color of the genetically encoded optical sensor of membrane potential," Biophys. J. 83(6), 3607-3618 (2002).
-
(2002)
Biophys. J.
, vol.83
, Issue.6
, pp. 3607-3618
-
-
Guerrero, G.1
-
117
-
-
79958140367
-
Random insertion of split-cans of the fluorescent protein venus into Shaker channels yields voltage sensitive probes with improved membrane localization in mammalian cells
-
L. Jin et al., "Random insertion of split-cans of the fluorescent protein venus into Shaker channels yields voltage sensitive probes with improved membrane localization in mammalian cells," J. Neurosci. Methods 199(1), 1-9 (2011).
-
(2011)
J. Neurosci. Methods
, vol.199
, Issue.1
, pp. 1-9
-
-
Jin, L.1
-
118
-
-
79960497713
-
Electrical spiking in Escherichia coli probed with a fluorescent voltage-indicating protein
-
J. M. Kralj et al., "Electrical spiking in Escherichia coli probed with a fluorescent voltage-indicating protein," Science 333(6040), 345-348 (2011).
-
(2011)
Science
, vol.333
, Issue.6040
, pp. 345-348
-
-
Kralj, J.M.1
-
119
-
-
33847137384
-
Optical recording of action potentials and other discrete physiological events: A perspective from signal detection theory
-
L. Sjulson and G. Miesenbock, "Optical recording of action potentials and other discrete physiological events: a perspective from signal detection theory," Physiology (Bethesda) 22, 47-55 (2007).
-
(2007)
Physiology (Bethesda)
, vol.22
, pp. 47-55
-
-
Sjulson, L.1
Miesenbock, G.2
-
120
-
-
84866000005
-
Single action potentials and subthreshold electrical events imaged in neurons with a fluorescent protein voltage probe
-
L. Jin et al., "Single action potentials and subthreshold electrical events imaged in neurons with a fluorescent protein voltage probe," Neuron 75(5), 779-785 (2012).
-
(2012)
Neuron
, vol.75
, Issue.5
, pp. 779-785
-
-
Jin, L.1
-
121
-
-
84894226769
-
Fluorescent protein voltage probes derived from ArcLight that respond to membrane voltage changes with fast kinetics
-
Z. Han et al., "Fluorescent protein voltage probes derived from ArcLight that respond to membrane voltage changes with fast kinetics," PLoS One 8(11), e81295 (2013).
-
(2013)
PLoS One
, vol.8
, Issue.11
, pp. e81295
-
-
Han, Z.1
-
122
-
-
77950459356
-
Exploration of fluorescent protein voltage probes based on circularly permuted fluorescent proteins
-
S. G. Gautam et al., "Exploration of fluorescent protein voltage probes based on circularly permuted fluorescent proteins," Front. Neuroeng. 2, 14 (2009).
-
(2009)
Front. Neuroeng.
, vol.2
, pp. 14
-
-
Gautam, S.G.1
-
123
-
-
73149120475
-
Red-shifted voltage-sensitive fluorescent proteins
-
A. Perron et al., "Red-shifted voltage-sensitive fluorescent proteins," Chem. Biol. 16(12), 1268-1277 (2009).
-
(2009)
Chem. Biol.
, vol.16
, Issue.12
, pp. 1268-1277
-
-
Perron, A.1
-
124
-
-
84856483701
-
Synapto-pHluorins: Genetically encoded reporters of synaptic transmission
-
G. Miesenbock, "Synapto-pHluorins: genetically encoded reporters of synaptic transmission," Cold Spring Harb. Protoc. 2012(2), 213-217 (2012).
-
(2012)
Cold Spring Harb. Protoc.
, vol.2012
, Issue.2
, pp. 213-217
-
-
Miesenbock, G.1
-
125
-
-
0033803597
-
The use of pHluorins for optical measurements of presynaptic activity
-
S. Sankaranarayanan et al., "The use of pHluorins for optical measurements of presynaptic activity," Biophys. J. 79(4), 2199-2208 (2000).
-
(2000)
Biophys. J.
, vol.79
, Issue.4
, pp. 2199-2208
-
-
Sankaranarayanan, S.1
-
126
-
-
59649099236
-
Two pathways of synaptic vesicle retrieval revealed by single-vesicle imaging
-
Y. Zhu, J. Xu, and S. F. Heinemann, "Two pathways of synaptic vesicle retrieval revealed by single-vesicle imaging," Neuron 61(3), 397-411 (2009).
-
(2009)
Neuron
, vol.61
, Issue.3
, pp. 397-411
-
-
Zhu, Y.1
Xu, J.2
Heinemann, S.F.3
-
127
-
-
38049180885
-
Single-vesicle imaging reveals that synaptic vesicle exocytosis and endocytosis are coupled by a single stochastic mode
-
J. Balaji and T. A. Ryan, "Single-vesicle imaging reveals that synaptic vesicle exocytosis and endocytosis are coupled by a single stochastic mode," Proc. Natl. Acad. Sci. U. S. A. 104(51), 20576-20581 (2007).
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, Issue.51
, pp. 20576-20581
-
-
Balaji, J.1
Ryan, T.A.2
-
128
-
-
84857688755
-
Concurrent imaging of synaptic vesicle recycling and calcium dynamics
-
H. Li et al., "Concurrent imaging of synaptic vesicle recycling and calcium dynamics," Front. Mol. Neurosci. 4, 34 (2011).
-
(2011)
Front. Mol. Neurosci.
, vol.4
, pp. 34
-
-
Li, H.1
-
129
-
-
41949134810
-
Optical measurement of synaptic glutamate spillover and reuptake by linker optimized glutamate-sensitive fluorescent reporters
-
S. A. Hires, Y. Zhu, and R. Y. Tsien, "Optical measurement of synaptic glutamate spillover and reuptake by linker optimized glutamate-sensitive fluorescent reporters," Proc. Natl. Acad. Sci. U. S. A. 105(11), 4411-4416 (2008).
-
(2008)
Proc. Natl. Acad. Sci. U. S. A.
, vol.105
, Issue.11
, pp. 4411-4416
-
-
Hires, S.A.1
Zhu, Y.2
Tsien, R.Y.3
-
130
-
-
84885906578
-
Strengths and weaknesses of recently engineered red fluorescent proteins evaluated in live cells using fluorescence correlation spectroscopy
-
A. P. Siegel et al., "Strengths and weaknesses of recently engineered red fluorescent proteins evaluated in live cells using fluorescence correlation spectroscopy," Int. J. Mol. Sci. 14(10), 20340-20358 (2013).
-
(2013)
Int. J. Mol. Sci.
, vol.14
, Issue.10
, pp. 20340-20358
-
-
Siegel, A.P.1
-
131
-
-
80052428624
-
Analysis of red-fluorescent proteins provides insight into dark-state conversion and photodegradation
-
K. M. Dean et al., "Analysis of red-fluorescent proteins provides insight into dark-state conversion and photodegradation," Biophys. J. 101(4), 961-969 (2011).
-
(2011)
Biophys. J.
, vol.101
, Issue.4
, pp. 961-969
-
-
Dean, K.M.1
-
132
-
-
84885398693
-
A neuron-based screening platform for optimizing genetically-encoded calcium indicators
-
T. J. Wardill et al., "A neuron-based screening platform for optimizing genetically-encoded calcium indicators," PLoS One 8(10), e77728 (2013).
-
(2013)
PLoS One
, vol.8
, Issue.10
-
-
Wardill, T.J.1
|