116
References
1. Vigneshvar S, Sudhakumari CC, Senthilkumaran
B, Prakash H (2016) Recent advances in biosensor technology for potential applications—an
overview. Front Bioeng Biotechnol 4:11.
doi:10.3389/fbioe.2016.00011
2. Zhang D, Liu Q (2016) Biosensors and bioelectronics on smartphone for portable biochemical detection. Biosens Bioelectron
75:273–284. doi:10.1016/j.bios.2015.08.037
3. Hochreiter B, Garcia AP, Schmid JA (2015)
Fluorescent proteins as genetically encoded
FRET biosensors in life sciences. Sensors
(Basel, Switzerland) 15(10):26281–26314.
doi:10.3390/s151026281
4. Tainaka K, Sakaguchi R, Hayashi H, Nakano S,
Liew FF, Morii T (2010) Design strategies of
fluorescent biosensors based on biological
macromolecular receptors. Sensors (Basel)
10(2):1355–1376. doi:10.3390/s100201355
5. Thestrup T, Litzlbauer J, Bartholomaus I,
Mues M, Russo L, Dana H, Kovalchuk Y,
Liang Y, Kalamakis G, Laukat Y, Becker S,
Witte G, Geiger A, Allen T, Rome LC, Chen
T-W, Kim DS, Garaschuk O, Griesinger C,
Griesbeck O (2014) Optimized ratiometric
calcium sensors for functional in vivo imaging
of neurons and T lymphocytes. Nat Methods
11(2):175–182. doi:10.1038/nmeth.2773
6. Hamers D, Voorst Vader L, Borst JW,
Goedhart J (2013) Development of FRET
biosensors for mammalian and plant systems.
Protoplasma 251(2):333–347. doi:10.1007/
s00709-013-0590-z
7. Xiong TC, Ronzier E, Sanchez F, CorratgeFaillie C, Mazars C, Thibaud JB (2014)
Imaging long distance propagating calcium
signals in intact plant leaves with the BRETbased GFP-aequorin reporter. Front Plant Sci
5:43. doi:10.3389/fpls.2014.00043
8. Vallée-Bélisle A, Plaxco KW (2010) Structureswitching biosensors: inspired by nature. Curr
Opin
Struct
Biol
20(4):518–526.
doi:10.1016/j.sbi.2010.05.001
9. Keppler A, Gendreizig S, Gronemeyer T, Pick
H, Vogel H, Johnsson K (2003) A general
method for the covalent labeling of fusion proteins with small molecules in vivo. Nat Biotechnol
21(1):86–89. doi:10.1038/nbt765
10. Keppler A, Kindermann M, Gendreizig S, Pick
H, Vogel H, Johnsson K (2004) Labeling of
fusion proteins of O6-alkylguanine-DNA alkyltransferase with small molecules in vivo and
in
vitro.
Methods
32(4):437–444.
doi:10.1016/j.ymeth.2003.10.007
11. Gautier A, Juillerat A, Heinis C, Corrêa IR Jr,
Kindermann M, Beaufils F, Johnsson K (2008)
An engineered protein tag for multiprotein
labeling in living cells. Chem Biol 15(2):128–
136. doi:10.1016/j.chembiol.2008.01.007
12. Los GV, Encell LP, McDougall MG, Hartzell
DD, Karassina N, Zimprich C, Wood MG,
Learish R, Ohana RF, Urh M, Simpson D,
Mendez J, Zimmerman K, Otto P, Vidugiris G,
Zhu J, Darzins A, Klaubert DH, Bulleit RF,
Wood KV (2008) HaloTag: a novel protein
labeling technology for cell imaging and protein analysis. ACS Chem Biol 3(6):373–382.
doi:10.1021/cb800025k
13. Hinner MJ, Johnsson K (2010) How to obtain
labeled proteins and what to do with them.
Curr Opin in Biotechnol 21(6):766–776.
doi:10.1016/j.copbio.2010.09.011
14. Chen X, Wu Y-W (2016) Selective chemical
labeling of proteins. Org Biomol Chem.
doi:10.1039/C6OB00126B
15. Xue L, Karpenko IA, Hiblot J, Johnsson K
(2015) Imaging and manipulating proteins in
live cells through covalent labeling. Nat
Chem Biol 11(12):917–923. doi:10.1038/
nchembio.1959
16. Giepmans BNG, Adams SR, Ellisman MH,
Tsien RY (2006) The fluorescent toolbox for
assessing protein location and function.
Science 312(5771):217–224. doi:10.1126/
science.1124618
17. Yan Q, Bruchez MP (2015) Advances in chemical labeling of proteins in living cells. Cell
Tissue Res 360(1):179–194. doi:10.1007/
s00441-015-2145-4
18. Thorne N, Inglese J, Auld DS (2010)
Illuminating insights into firefly luciferase and
other bioluminescent reporters used in chemical biology. Chem Biol 17(6):646–657.
doi:10.1016/j.chembiol.2010.05.012
19. Hall MP, Unch J, Binkowski BF, Valley MP,
Butler BL, Wood MG, Otto P, Zimmerman K,
Vidugiris G, Machleidt T, Robers MB, Benink
HA, Eggers CT, Slater MR, Meisenheimer PL,
Klaubert DH, Fan F, Encell LP, Wood KV
(2012) Engineered luciferase reporter from a
deep sea shrimp utilizing a novel imidazopyrazinone substrate. ACS Chem Biol 7(11):1848–
1857. doi:10.1021/cb3002478
20. Tinberg CE, Khare SD, Dou J, Doyle L,
Nelson JW, Schena A, Jankowski W, Kalodimos
CG, Johnsson K, Stoddard BL, Baker D
(2013) Computational design of ligand-binding proteins with high affinity and selectivity.
Nature 501(7466):212–216. doi:10.1038/
nature12443
21. Krishnamurthy VM, Semetey V, Bracher PJ,
Shen N, Whitesides GM (2007) Dependence
Helen Farrants et al.
References
1. Vigneshvar S, Sudhakumari CC, Senthilkumaran
B, Prakash H (2016) Recent advances in biosensor technology for potential applications—an
overview. Front Bioeng Biotechnol 4:11.
doi:10.3389/fbioe.2016.00011
2. Zhang D, Liu Q (2016) Biosensors and bioelectronics on smartphone for portable biochemical detection. Biosens Bioelectron
75:273–284. doi:10.1016/j.bios.2015.08.037
3. Hochreiter B, Garcia AP, Schmid JA (2015)
Fluorescent proteins as genetically encoded
FRET biosensors in life sciences. Sensors
(Basel, Switzerland) 15(10):26281–26314.
doi:10.3390/s151026281
4. Tainaka K, Sakaguchi R, Hayashi H, Nakano S,
Liew FF, Morii T (2010) Design strategies of
fluorescent biosensors based on biological
macromolecular receptors. Sensors (Basel)
10(2):1355–1376. doi:10.3390/s100201355
5. Thestrup T, Litzlbauer J, Bartholomaus I,
Mues M, Russo L, Dana H, Kovalchuk Y,
Liang Y, Kalamakis G, Laukat Y, Becker S,
Witte G, Geiger A, Allen T, Rome LC, Chen
T-W, Kim DS, Garaschuk O, Griesinger C,
Griesbeck O (2014) Optimized ratiometric
calcium sensors for functional in vivo imaging
of neurons and T lymphocytes. Nat Methods
11(2):175–182. doi:10.1038/nmeth.2773
6. Hamers D, Voorst Vader L, Borst JW,
Goedhart J (2013) Development of FRET
biosensors for mammalian and plant systems.
Protoplasma 251(2):333–347. doi:10.1007/
s00709-013-0590-z
7. Xiong TC, Ronzier E, Sanchez F, CorratgeFaillie C, Mazars C, Thibaud JB (2014)
Imaging long distance propagating calcium
signals in intact plant leaves with the BRETbased GFP-aequorin reporter. Front Plant Sci
5:43. doi:10.3389/fpls.2014.00043
8. Vallée-Bélisle A, Plaxco KW (2010) Structureswitching biosensors: inspired by nature. Curr
Opin
Struct
Biol
20(4):518–526.
doi:10.1016/j.sbi.2010.05.001
9. Keppler A, Gendreizig S, Gronemeyer T, Pick
H, Vogel H, Johnsson K (2003) A general
method for the covalent labeling of fusion proteins with small molecules in vivo. Nat Biotechnol
21(1):86–89. doi:10.1038/nbt765
10. Keppler A, Kindermann M, Gendreizig S, Pick
H, Vogel H, Johnsson K (2004) Labeling of
fusion proteins of O6-alkylguanine-DNA alkyltransferase with small molecules in vivo and
in
vitro.
Methods
32(4):437–444.
doi:10.1016/j.ymeth.2003.10.007
11. Gautier A, Juillerat A, Heinis C, Corrêa IR Jr,
Kindermann M, Beaufils F, Johnsson K (2008)
An engineered protein tag for multiprotein
labeling in living cells. Chem Biol 15(2):128–
136. doi:10.1016/j.chembiol.2008.01.007
12. Los GV, Encell LP, McDougall MG, Hartzell
DD, Karassina N, Zimprich C, Wood MG,
Learish R, Ohana RF, Urh M, Simpson D,
Mendez J, Zimmerman K, Otto P, Vidugiris G,
Zhu J, Darzins A, Klaubert DH, Bulleit RF,
Wood KV (2008) HaloTag: a novel protein
labeling technology for cell imaging and protein analysis. ACS Chem Biol 3(6):373–382.
doi:10.1021/cb800025k
13. Hinner MJ, Johnsson K (2010) How to obtain
labeled proteins and what to do with them.
Curr Opin in Biotechnol 21(6):766–776.
doi:10.1016/j.copbio.2010.09.011
14. Chen X, Wu Y-W (2016) Selective chemical
labeling of proteins. Org Biomol Chem.
doi:10.1039/C6OB00126B
15. Xue L, Karpenko IA, Hiblot J, Johnsson K
(2015) Imaging and manipulating proteins in
live cells through covalent labeling. Nat
Chem Biol 11(12):917–923. doi:10.1038/
nchembio.1959
16. Giepmans BNG, Adams SR, Ellisman MH,
Tsien RY (2006) The fluorescent toolbox for
assessing protein location and function.
Science 312(5771):217–224. doi:10.1126/
science.1124618
17. Yan Q, Bruchez MP (2015) Advances in chemical labeling of proteins in living cells. Cell
Tissue Res 360(1):179–194. doi:10.1007/
s00441-015-2145-4
18. Thorne N, Inglese J, Auld DS (2010)
Illuminating insights into firefly luciferase and
other bioluminescent reporters used in chemical biology. Chem Biol 17(6):646–657.
doi:10.1016/j.chembiol.2010.05.012
19. Hall MP, Unch J, Binkowski BF, Valley MP,
Butler BL, Wood MG, Otto P, Zimmerman K,
Vidugiris G, Machleidt T, Robers MB, Benink
HA, Eggers CT, Slater MR, Meisenheimer PL,
Klaubert DH, Fan F, Encell LP, Wood KV
(2012) Engineered luciferase reporter from a
deep sea shrimp utilizing a novel imidazopyrazinone substrate. ACS Chem Biol 7(11):1848–
1857. doi:10.1021/cb3002478
20. Tinberg CE, Khare SD, Dou J, Doyle L,
Nelson JW, Schena A, Jankowski W, Kalodimos
CG, Johnsson K, Stoddard BL, Baker D
(2013) Computational design of ligand-binding proteins with high affinity and selectivity.
Nature 501(7466):212–216. doi:10.1038/
nature12443
21. Krishnamurthy VM, Semetey V, Bracher PJ,
Shen N, Whitesides GM (2007) Dependence
Helen Farrants et al.
