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Items: 1 to 20 of 86

1.

Using bleach-chase to measure protein half-lives in living cells.

Geva-Zatorsky N, Issaeva I, Mayo A, Cohen A, Dekel E, Danon T, Cohen L, Liron Y, Alon U, Eden E.

Nat Protoc. 2012 Mar 29;7(4):801-11. doi: 10.1038/nprot.2012.028.

PMID:
22461069
2.

Proteome half-life dynamics in living human cells.

Eden E, Geva-Zatorsky N, Issaeva I, Cohen A, Dekel E, Danon T, Cohen L, Mayo A, Alon U.

Science. 2011 Feb 11;331(6018):764-8. doi: 10.1126/science.1199784. Epub 2011 Jan 13.

3.

Generation of a fluorescently labeled endogenous protein library in living human cells.

Sigal A, Danon T, Cohen A, Milo R, Geva-Zatorsky N, Lustig G, Liron Y, Alon U, Perzov N.

Nat Protoc. 2007;2(6):1515-27.

PMID:
17571059
4.

Long-term time-lapse imaging of developing hippocampal neurons in culture.

Kaech S, Huang CF, Banker G.

Cold Spring Harb Protoc. 2012 Mar 1;2012(3):335-9. doi: 10.1101/pdb.prot068239.

5.

SPLIFF: A Single-Cell Method to Map Protein-Protein Interactions in Time and Space.

Dünkler A, Rösler R, Kestler HA, Moreno-Andrés D, Johnsson N.

Methods Mol Biol. 2015;1346:151-68. doi: 10.1007/978-1-4939-2987-0_11.

PMID:
26542721
6.

Use of fluorescence microscopy to analyze genetic circuit dynamics.

Süel G.

Methods Enzymol. 2011;497:275-93. doi: 10.1016/B978-0-12-385075-1.00013-5.

PMID:
21601092
7.

Fluorescence lifetime imaging (FLIM) of green fluorescent fusion proteins in living cells.

Periasamy A, Elangovan M, Elliott E, Brautigan DL.

Methods Mol Biol. 2002;183:89-100. No abstract available.

PMID:
12136775
8.

Quantifying the influence of yellow fluorescent protein photoconversion on acceptor photobleaching-based fluorescence resonance energy transfer measurements.

Seitz A, Terjung S, Zimmermann T, Pepperkok R.

J Biomed Opt. 2012 Jan;17(1):011010. doi: 10.1117/1.JBO.17.1.011010.

PMID:
22352644
9.

Analysis of fast dynamic processes in living cells: high-resolution and high-speed dual-color imaging combined with automated image analysis.

Rustom A, Gerlich D, Rudolf R, Heinemann C, Eils R, Gerdes HH.

Biotechniques. 2000 Apr;28(4):722-8, 730.

PMID:
10769751
10.

Single molecule approaches to transcription factor kinetics in living cells.

Li GW, Elf J.

FEBS Lett. 2009 Dec 17;583(24):3979-83. doi: 10.1016/j.febslet.2009.11.035. Review.

12.

Experimental and computational validation of models of fluorescent and luminescent reporter genes in bacteria.

de Jong H, Ranquet C, Ropers D, Pinel C, Geiselmann J.

BMC Syst Biol. 2010 Apr 29;4:55. doi: 10.1186/1752-0509-4-55.

13.

A day in the half-life of a protein.

Doerr A.

Nat Methods. 2011 Mar;8(3):201.

PMID:
21473019
15.

Measuring single-cell gene expression dynamics in bacteria using fluorescence time-lapse microscopy.

Young JW, Locke JC, Altinok A, Rosenfeld N, Bacarian T, Swain PS, Mjolsness E, Elowitz MB.

Nat Protoc. 2011 Dec 15;7(1):80-8. doi: 10.1038/nprot.2011.432.

16.

Imaging of vaccinia virus entry into HeLa cells.

Huang CY, Chang W.

Methods Mol Biol. 2012;890:123-33. doi: 10.1007/978-1-61779-876-4_7.

PMID:
22688764
17.

Green fluorescent proteins with short half-lives as reporters in Dictyostelium discoideum.

Deichsel H, Friedel S, Detterbeck A, Coyne C, Hamker U, MacWilliams HK.

Dev Genes Evol. 1999 Jan;209(1):63-8.

PMID:
9914420
18.

Genetically Encoded Fluorescent Indicators to Visualize Protein Phosphorylation in Living Cells.

Sato M, Umezawa Y.

Methods Mol Biol. 2016;1360:149-56. doi: 10.1007/978-1-4939-3073-9_11.

PMID:
26501908
19.

Dynamic proteomics in individual human cells uncovers widespread cell-cycle dependence of nuclear proteins.

Sigal A, Milo R, Cohen A, Geva-Zatorsky N, Klein Y, Alaluf I, Swerdlin N, Perzov N, Danon T, Liron Y, Raveh T, Carpenter AE, Lahav G, Alon U.

Nat Methods. 2006 Jul;3(7):525-31.

PMID:
16791210
20.

Fluorescence lifetime imaging microscopy and fluorescence resonance energy transfer from cyan to yellow fluorescent protein validates a novel method to cluster proteins on solid surfaces.

Madeira C, Estrela N, Ferreira JA, Andrade SM, Costa SM, Melo EP.

J Biomed Opt. 2009 Jul-Aug;14(4):044035. doi: 10.1117/1.3210770.

PMID:
19725746

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