Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/43632

TítuloInducible fluorescent speckle microscopy
Autor(es)Pereira, António J.
Aguiar, Paulo
Belsley, M.
Maiato, Hélder
Palavras-chaveAnimals
Cell Line, Transformed
Drosophila
Humans
Imaging, Three-Dimensional
Metaphase
Microscopy, Fluorescence
Microtubules
Spindle Apparatus
Data18-Jan-2016
EditoraRockefeller University Press
RevistaJournal of Cell Biology
CitaçãoPereira, A. J., Aguiar, P., Belsley, M., & Maiato, H. (2016). Inducible fluorescent speckle microscopy. Journal of Cell Biology, 212(2), 245-255. doi: 10.1083/jcb.201506128
Resumo(s)The understanding of cytoskeleton dynamics has benefited from the capacity to generate fluorescent fiducial marks on cytoskeleton components. Here we show that light-induced imprinting of three-dimensional (3D) fluorescent speckles significantly improves speckle signal and contrast relative to classic (random) fluorescent speckle microscopy. We predict theoretically that speckle imprinting using photobleaching is optimal when the laser energy and fluorophore responsivity are related by the golden ratio. This relation, which we confirm experimentally, translates into a 40% remaining signal after speckle imprinting and provides a rule of thumb in selecting the laser power required to optimally prepare the sample for imaging. This inducible speckle imaging (ISI) technique allows 3D speckle microscopy to be performed in readily available libraries of cell lines or primary tissues expressing fluorescent proteins and does not preclude conventional imaging before speckle imaging. As a proof of concept, we use ISI to measure metaphase spindle microtubule poleward flux in primary cells and explore a scaling relation connecting microtubule flux to metaphase duration.
TipoArtigo
URIhttps://hdl.handle.net/1822/43632
DOI10.1083/jcb.201506128
ISSN0021-9525
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CDF - FAMO - Artigos/Papers (with refereeing)

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J Cell Biol-2016-Pereira-245-55.pdf1,81 MBAdobe PDFVer/Abrir

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