Subcellular localization-dependent changes in EGFP fluorescence lifetime measured by time-resolved flow cytometry.
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Patrick Jenkins | Wenyan Li | Ruofan Cao | Jessica P Houston | J. Houston | Patrick Jenkins | Ali Vaziri Gohar | Kevin D Houston | A. Gohar | Ruofan Cao | Wenyan Li | Kevin D. Houston
[1] N. Mizushima. Methods for monitoring autophagy. , 2004, The international journal of biochemistry & cell biology.
[2] Mike Heilemann,et al. Fluorescent proteins for single‐molecule fluorescence applications , 2008, Journal of biophotonics.
[3] Mark A Naivar,et al. Capture of Fluorescence Decay Times by Flow Cytometry , 2012, Current protocols in cytometry.
[4] A. Tolkovsky,et al. The Dynamics of Autophagy Visualised in Live Cells: from Autophagosome Formation to Fusion with Endo/lysosomes , 2005, Autophagy.
[5] Mark A Naivar,et al. Digital analysis and sorting of fluorescence lifetime by flow cytometry , 2010, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[6] Borivoj Vojnovic,et al. Monitoring conformational changes of proteins in cells by fluorescence lifetime imaging microscopy. , 2003, The Biochemical journal.
[7] Jessica P. Houston,et al. Cytometric sorting based on the fluorescence lifetime of spectrally overlapping signals. , 2013, Optics express.
[8] J. Steinkamp,et al. Fluorescence lifetime‐based discrimination and quantification of cellular DNA and RNA with phase‐sensitive flow cytometry , 2003, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[9] F. Wouters,et al. Fluorescence lifetime heterogeneity resolution in the frequency domain by lifetime moments analysis. , 2005, Biophysical journal.
[10] P. Verveer,et al. Graphical representation and multicomponent analysis of single‐frequency fluorescence lifetime imaging microscopy data , 2004, Journal of microscopy.
[11] H. Yoo,et al. High throughput cell cycle analysis using microfluidic image cytometry (μFIC) , 2013, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[12] P. French,et al. Imaging fluorescence lifetime heterogeneity applied to GFP‐tagged MHC protein at an immunological synapse * , 2005, Journal of microscopy.
[13] J. Andersen,et al. Ordered Organelle Degradation during Starvation-induced Autophagy*S , 2008, Molecular & Cellular Proteomics.
[14] T. Ueno,et al. Human Light Chain 3/MAP1LC3B Is Cleaved at Its Carboxyl-terminal Met121 to Expose Gly120 for Lipidation and Targeting to Autophagosomal Membranes* , 2004, Journal of Biological Chemistry.
[15] Wolfgang Link,et al. Protein localization in disease and therapy , 2011, Journal of Cell Science.
[16] Qinghua Feng,et al. An automated high-throughput counting method for screening circulating tumor cells in peripheral blood. , 2013, Analytical chemistry.
[17] J A Steinkamp,et al. Resolution of fluorescence signals from cells labeled with fluorochromes having different lifetimes by phase-sensitive flow cytometry. , 1993, Cytometry.
[18] J A Steinkamp,et al. Phase-sensitive detection methods for resolving fluorescence emission signals and directly quantifying lifetime. , 1994, Methods in cell biology.
[19] R. Murphy. Communicating subcellular distributions , 2010, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[20] J. Lakowicz,et al. Phase-resolved fluorescence lifetime measurements for flow cytometry. , 1993, Cytometry.
[21] Rainer Pepperkok,et al. Simultaneous detection of multiple green fluorescent proteins in live cells by fluorescence lifetime imaging microscopy , 1999, Current Biology.
[22] Z. Elazar,et al. Flow cytometric analysis of autophagy in living mammalian cells. , 2009, Methods in enzymology.
[23] Ludger Hengst,et al. The Cdk inhibitor p27 in human cancer: prognostic potential and relevance to anticancer therapy , 2008, Nature Reviews Cancer.
[24] M. Colombo,et al. A novel assay to study autophagy: regulation of autophagosome vacuole size by amino acid deprivation. , 2001, Journal of cell science.
[25] Robin Mathew,et al. Autophagy in tumorigenesis and energy metabolism: friend by day, foe by night. , 2011, Current opinion in genetics & development.
[26] Shugo Oshita,et al. Fluorescence lifetime images of green fluorescent protein in HeLa cells during TNF-α induced apoptosis , 2009, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[27] Steven W Graves,et al. Open, reconfigurable cytometric acquisition system: ORCAS , 2007, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[28] Tymish Y. Ohulchanskyy,et al. Fluorescence lifetime of fluorescent proteins as an intracellular environment probe sensing the cell cycle progression. , 2012, ACS chemical biology.
[29] Jason R Swedlow,et al. Innovation in biological microscopy: Current status and future directions , 2012, BioEssays : news and reviews in molecular, cellular and developmental biology.
[30] I. Vorobjev,et al. Imaging Flow Cytometry , 2012, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[31] J. Siegel,et al. Imaging the environment of green fluorescent protein. , 2002, Biophysical journal.
[32] Nobuhiro Ohta,et al. Stress-induced environmental changes in a single cell as revealed by fluorescence lifetime imaging , 2008, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[33] Kirstin Elgass,et al. Novel Application of Fluorescence Lifetime and Fluorescence Microscopy Enables Quantitative Access to Subcellular Dynamics in Plant Cells , 2009, PloS one.
[34] F. Cecconi,et al. The role of autophagy in mammalian development: cell makeover rather than cell death. , 2008, Developmental cell.
[35] T. Ueno,et al. Consideration about negative controls for LC3 and expression vectors for four colored fluorescent protein-LC3 negative controls , 2008, Autophagy.
[36] Gary S Elliott,et al. Moving pictures: imaging flow cytometry for drug development. , 2009, Combinatorial chemistry & high throughput screening.
[37] Eric R Tkaczyk,et al. Multiphoton flow cytometry strategies and applications , 2011, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[38] M. Jäättelä,et al. Apoptosis and autophagy: Targeting autophagy signalling in cancer cells –‘trick or treats’? , 2009, The FEBS journal.
[39] John A. Steinkamp,et al. Fluorescence intensity and lifetime measurement of free and particle-bound fluorophore in a sample stream by phase-sensitive flow cytometry , 1999 .
[40] Nobuhiro Ohta,et al. Application of fluorescence lifetime imaging of enhanced green fluorescent protein to intracellular pH measurements , 2008, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[41] N. Mizushima,et al. Methods in Mammalian Autophagy Research , 2010, Cell.
[42] M. Matsui,et al. LC3, an Autophagosome Marker, Can be Incorporated into Protein Aggregates Independent of Autophagy: Caution in the Interpretation of LC3 Localization , 2007, Autophagy.
[43] R. Eils,et al. Concurrent detection of autolysosome formation and lysosomal degradation by flow cytometry in a high-content screen for inducers of autophagy , 2011, BMC Biology.
[44] J. Slingerland,et al. PKB/Akt phosphorylates p27, impairs nuclear import of p27 and opposes p27-mediated G1 arrest , 2002, Nature Medicine.
[45] Jessica P. Houston,et al. Flow cytometric separation of spectrally overlapping fluorophores using multifrequency fluorescence lifetime analysis , 2011, BiOS.
[46] T. Noda,et al. Dissection of the Autophagosome Maturation Process by a Novel Reporter Protein, Tandem Fluorescent-Tagged LC3 , 2007, Autophagy.
[47] Takeshi Noda,et al. LC3, a mammalian homologue of yeast Apg8p, is localized in autophagosome membranes after processing , 2000, The EMBO journal.