Margarida Barroso
Margarida Barroso
Molecular and Cellular Physiology, Albany Medical College, Albany, NY
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Cited by
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Characterization of one-and two-photon excitation fluorescence resonance energy transfer microscopy
M Elangovan, H Wallrabe, Y Chen, RN Day, M Barroso, A Periasamy
Methods 29 (1), 58-73, 2003
Basolateral to apical transcytosis in polarized cells is indirect and involves BFA and trimeric G protein sensitive passage through the apical endosome
M Barroso, ES Sztul
The Journal of cell biology 124 (1), 83-100, 1994
Essential role for STIM1/Orai1-mediated calcium influx in PDGF-induced smooth muscle migration
JM Bisaillon, RK Motiani, JC Gonzalez-Cobos, M Potier, KE Halligan, ...
American Journal of Physiology-Cell Physiology 298 (5), C993-C1005, 2010
Quantum dots in cell biology
MM Barroso
Journal of Histochemistry & Cytochemistry 59 (3), 237-251, 2011
Transcytosis-associated protein (TAP)/p115 is a general fusion factor required for binding of vesicles to acceptor membranes.
M Barroso, DS Nelson, E Sztul
Proceedings of the National Academy of Sciences 92 (2), 527-531, 1995
Orai1-Mediated ICRAC Is Essential for Neointima Formation After Vascular Injury
W Zhang, KE Halligan, X Zhang, JM Bisaillon, JC Gonzalez-Cobos, ...
Circulation research 109 (5), 534-542, 2011
Store-Independent Orai1/3 Channels Activated by Intracrine LeukotrieneC4 Role in Neointimal Hyperplasia
JC González-Cobos, X Zhang, W Zhang, B Ruhle, RK Motiani, R Schindl, ...
Circulation research 112 (7), 1013-1025, 2013
Confocal FRET microscopy to measure clustering of ligand-receptor complexes in endocytic membranes
H Wallrabe, M Elangovan, A Burchard, A Periasamy, M Barroso
Biophysical journal 85 (1), 559-571, 2003
A Novel Ca2+-binding Protein, p22, Is Required for Constitutive Membrane Traffic (∗)
MR Barroso, KK Bernd, ND DeWitt, A Chang, K Mills, ES Sztul
Journal of Biological Chemistry 271 (17), 10183-10187, 1996
Experimentally induced changes in the endocytic traffic of P-glycoprotein alter drug resistance of cancer cells
H Kim, M Barroso, R Samanta, L Greenberger, E Sztul
American Journal of Physiology-Cell Physiology 273 (2), C687-C702, 1997
Endosome–mitochondria interactions are modulated by iron release from transferrin
A Das, S Nag, AB Mason, MM Barroso
J Cell Biol 214 (7), 831-45., 2016
Non-invasive in vivo imaging of near infrared-labeled transferrin in breast cancer cells and tumors using fluorescence lifetime FRET
K Abe, L Zhao, A Periasamy, X Intes, M Barroso
PloS one 8 (11), e80269, 2013
The induction of yes-associated protein expression after arterial injury is crucial for smooth muscle phenotypic modulation and neointima formation
X Wang, G Hu, X Gao, Y Wang, W Zhang, EY Harmon, X Zhi, Z Xu, ...
Arteriosclerosis, thrombosis, and vascular biology 32 (11), 2662-2669, 2012
Quantitative tomographic imaging of intermolecular FRET in small animals
V Venugopal, J Chen, M Barroso, X Intes
Biomedical optics express 3 (12), 3161-3175, 2012
Quantitation of protein–protein interactions: confocal FRET microscopy
A Periasamy, H Wallrabe, Y Chen, M Barroso
Methods in cell biology 89, 569-598, 2008
Interactions among p22, glyceraldehyde-3-phosphate dehydrogenase and microtubules
J Andrade, ST Pearce, H Zhao, M Barroso
Biochemical Journal 384 (2), 327-336, 2004
FLIM-FRET for cancer applications
S Rajoria, L Zhao, X Intes, M Barroso
Current Molecular Imaging (Discontinued) 3 (2), 144-161, 2014
Issues in confocal microscopy for quantitative FRET analysis
H Wallrabe, YE Chen, A Periasamy, M Barroso
Microscopy research and technique 69 (3), 196-206, 2006
The EF-hand Ca2+-binding Protein p22 Associates with Microtubules in an N-Myristoylation–dependent Manner
S Timm, B Titus, K Bernd, M Barroso
Molecular Biology of the Cell 10 (10), 3473-3488, 1999
Mechanisms of STIM1 Activation of Store-Independent Leukotriene C4-Regulated Ca2+ Channels
X Zhang, JC González-Cobos, R Schindl, M Muik, B Ruhle, RK Motiani, ...
Molecular and cellular biology 33 (18), 3715-3723, 2013
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