FLIM-FRET Imaging of Caspase-3 Activity in Live Cells Using Pair of Red Fluorescent Proteins
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Alexander P. Savitsky | Maria G. Khrenova | Alexander V. Nemukhin | Victoria V. Zherdeva | A. Nemukhin | A. Savitsky | A. Rusanov | V. Zherdeva | T. Gorodnicheva | M. Khrenova | Alexander L. Rusanov | Tatiana V. Gorodnicheva
[1] Zbigniew Dauter,et al. A Crystallographic Study of Bright Far-Red Fluorescent Protein mKate Reveals pH-induced cis-trans Isomerization of the Chromophore* , 2008, Journal of Biological Chemistry.
[2] S. Lukyanov,et al. Natural Animal Coloration Can Be Determined by a Nonfluorescent Green Fluorescent Protein Homolog* , 2000, The Journal of Biological Chemistry.
[3] J. Lakowicz. Principles of fluorescence spectroscopy , 1983 .
[4] K. Lukyanov,et al. Femtosecond study of light-induced fluorescence increase of the dark chromoprotein asFP595 , 2006 .
[5] H. Shimada,et al. Whole-body optical imaging of green fluorescent protein-expressing tumors and metastases. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[6] Ewan J McGhee,et al. High speed unsupervised fluorescence lifetime imaging confocal multiwell plate reader for high content analysis , 2008, Journal of biophotonics.
[7] Borivoj Vojnovic,et al. A dark yellow fluorescent protein (YFP)-based Resonance Energy-Accepting Chromoprotein (REACh) for Förster resonance energy transfer with GFP. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[8] Mark A A Neil,et al. A fluorescence lifetime imaging scanning confocal endomicroscope , 2009, Journal of biophotonics.
[9] D. Trono,et al. Efficient transduction of primary human B lymphocytes and nondividing myeloma B cells with HIV-1-derived lentiviral vectors. , 2003, Blood.
[10] Michael Emerman,et al. Retroviral infection of non-dividing cells: old and new perspectives. , 2006, Virology.
[11] Ammasi Periasamy,et al. Characterization of two‐photon excitation fluorescence lifetime imaging microscopy for protein localization , 2004, Microscopy research and technique.
[12] Z. Weng,et al. Integrating statistical pair potentials into protein complex prediction , 2007, Proteins.
[13] R. Tsien,et al. The Fluorescent Toolbox for Assessing Protein Location and Function , 2006, Science.
[14] Alexander D. MacKerell,et al. All-atom empirical potential for molecular modeling and dynamics studies of proteins. , 1998, The journal of physical chemistry. B.
[15] Roger Y Tsien,et al. Imagining imaging's future. , 2003, Nature reviews. Molecular cell biology.
[16] J. Rossjohn,et al. Variations on the GFP Chromophore , 2005, Journal of Biological Chemistry.
[17] M. Ikura,et al. The use of FRET imaging microscopy to detect protein-protein interactions and protein conformational changes in vivo. , 2001, Current opinion in structural biology.
[18] Markus G Grütter,et al. Extended substrate recognition in caspase-3 revealed by high resolution X-ray structure analysis. , 2006, Journal of molecular biology.
[19] A Miyawaki,et al. Red fluorescent protein from Discosoma as a fusion tag and a partner for fluorescence resonance energy transfer. , 2001, Biochemistry.
[20] J. Ripoll,et al. Visualization of antitumor treatment by means of fluorescence molecular tomography with an annexin V-Cy5.5 conjugate. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[21] S. Lukyanov,et al. Chromophore Environment Provides Clue to “Kindling Fluorescent Protein” Riddle* , 2003, The Journal of Biological Chemistry.
[22] N. Riordan,et al. Improved microplate fluorometer counting of viable tumor and normal cells. , 1994, Anticancer research.
[23] Jacques Neefjes,et al. Fluorescent probes for proteolysis: Tools for drug discovery , 2004, Nature Reviews Drug Discovery.
[24] Simon R. Arridge,et al. In vivo fluorescence lifetime tomography of a FRET probe expressed in mouse , 2011, Biomedical optics express.
[25] Vasilis Ntziachristos,et al. Shedding light onto live molecular targets , 2003, Nature Medicine.
[26] A. Savitsky,et al. Fluorescence resonance energy transfer between fluorescent proteins as powerful toolkits for in vivo studies , 2011 .
[27] Robert M. Hoffman,et al. The multiple uses of fluorescent proteins to visualize cancer in vivo , 2005, Nature Reviews Cancer.
[28] S. Remington. Structural basis for understanding spectral variations in green fluorescent protein. , 2000, Methods in enzymology.
[29] Stefan W. Hell,et al. A Rapidly Maturing Far-Red Derivative of DsRed-Express2 for Whole-Cell Labeling , 2009, Biochemistry.
[30] Kurt I. Anderson,et al. Recent advances using green and red fluorescent protein variants , 2007, Applied Microbiology and Biotechnology.
[31] M. Zimmer,et al. Green fluorescent protein (GFP): applications, structure, and related photophysical behavior. , 2002, Chemical reviews.
[32] Kevin Truong,et al. Protein biosensors based on the principle of fluorescence resonance energy transfer for monitoring cellular dynamics , 2006, Biotechnology Letters.
[33] S. Lukyanov,et al. GFP‐like chromoproteins as a source of far‐red fluorescent proteins , 2001, FEBS letters.
[34] L. M. Vinokurov,et al. FRET-sensor for imaging with lifetime resolution , 2010, Laser Applications in Life Sciences.
[35] G. Harms,et al. Improved Fluorescent Proteins for Single-Molecule Research in Molecular Tracking and Co-Localization , 2005, Journal of Fluorescence.
[36] D. Shcherbo,et al. UvA-DARE ( Digital Academic Repository ) Practical and reliable FRET / FLIM pair of fluorescent proteins , 2009 .
[37] Ilya V Turchin,et al. Lifetime imaging of FRET between red fluorescent proteins , 2010, Journal of biophotonics.
[38] Fred S. Wouters,et al. Imaging FRET between spectrally similar GFP molecules in single cells , 2001, Nature Biotechnology.
[39] R. Tsien,et al. A monomeric red fluorescent protein , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[40] Bifeng Liu,et al. Optical molecular imaging for systems biology: from molecule to organism , 2006, Analytical and bioanalytical chemistry.
[41] K Schulten,et al. VMD: visual molecular dynamics. , 1996, Journal of molecular graphics.
[42] Laxmikant V. Kalé,et al. Scalable molecular dynamics with NAMD , 2005, J. Comput. Chem..
[43] M. Chalfie. GREEN FLUORESCENT PROTEIN , 1995, Photochemistry and photobiology.
[44] Meng Yang,et al. Whole-body subcellular multicolor imaging of tumor-host interaction and drug response in real time. , 2007, Cancer research.