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Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()

Cryo-soft X-ray tomography (cryo-SXT) is a powerful imaging technique that can extract ultrastructural information from whole, unstained mammalian cells as close to the living state as possible. Subcellular organelles including the nucleus, the Golgi apparatus and mitochondria have been identified b...

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Autores principales: Duke, Elizabeth M.H., Razi, Minoo, Weston, Anne, Guttmann, Peter, Werner, Stephan, Henzler, Katja, Schneider, Gerd, Tooze, Sharon A., Collinson, Lucy M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4045213/
https://www.ncbi.nlm.nih.gov/pubmed/24238600
http://dx.doi.org/10.1016/j.ultramic.2013.10.006
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author Duke, Elizabeth M.H.
Razi, Minoo
Weston, Anne
Guttmann, Peter
Werner, Stephan
Henzler, Katja
Schneider, Gerd
Tooze, Sharon A.
Collinson, Lucy M.
author_facet Duke, Elizabeth M.H.
Razi, Minoo
Weston, Anne
Guttmann, Peter
Werner, Stephan
Henzler, Katja
Schneider, Gerd
Tooze, Sharon A.
Collinson, Lucy M.
author_sort Duke, Elizabeth M.H.
collection PubMed
description Cryo-soft X-ray tomography (cryo-SXT) is a powerful imaging technique that can extract ultrastructural information from whole, unstained mammalian cells as close to the living state as possible. Subcellular organelles including the nucleus, the Golgi apparatus and mitochondria have been identified by morphology alone, due to the similarity in contrast to transmission electron micrographs. In this study, we used cryo-SXT to image endosomes and autophagosomes, organelles that are particularly susceptible to chemical fixation artefacts during sample preparation for electron microscopy. We used two approaches to identify these compartments. For early and recycling endosomes, which are accessible to externally-loaded markers, we used an anti-transferrin receptor antibody conjugated to 10 nm gold particles. For autophagosomes, which are not accessible to externally-applied markers, we developed a correlative cryo-fluorescence and cryo-SXT workflow (cryo-CLXM) to localise GFP-LC3 and RFP-Atg9. We used a stand-alone cryo-fluorescence stage in the home laboratory to localise the cloned fluorophores, followed by cryo-soft X-ray tomography at the synchrotron to analyse cellular ultrastructure. We mapped the 3D ultrastructure of the endocytic and autophagic structures, and discovered clusters of omegasomes arising from ‘hotspots’ on the ER. Thus, immunogold markers and cryo-CLXM can be used to analyse cellular processes that are inaccessible using other imaging modalities.
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spelling pubmed-40452132014-08-01 Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)() Duke, Elizabeth M.H. Razi, Minoo Weston, Anne Guttmann, Peter Werner, Stephan Henzler, Katja Schneider, Gerd Tooze, Sharon A. Collinson, Lucy M. Ultramicroscopy Article Cryo-soft X-ray tomography (cryo-SXT) is a powerful imaging technique that can extract ultrastructural information from whole, unstained mammalian cells as close to the living state as possible. Subcellular organelles including the nucleus, the Golgi apparatus and mitochondria have been identified by morphology alone, due to the similarity in contrast to transmission electron micrographs. In this study, we used cryo-SXT to image endosomes and autophagosomes, organelles that are particularly susceptible to chemical fixation artefacts during sample preparation for electron microscopy. We used two approaches to identify these compartments. For early and recycling endosomes, which are accessible to externally-loaded markers, we used an anti-transferrin receptor antibody conjugated to 10 nm gold particles. For autophagosomes, which are not accessible to externally-applied markers, we developed a correlative cryo-fluorescence and cryo-SXT workflow (cryo-CLXM) to localise GFP-LC3 and RFP-Atg9. We used a stand-alone cryo-fluorescence stage in the home laboratory to localise the cloned fluorophores, followed by cryo-soft X-ray tomography at the synchrotron to analyse cellular ultrastructure. We mapped the 3D ultrastructure of the endocytic and autophagic structures, and discovered clusters of omegasomes arising from ‘hotspots’ on the ER. Thus, immunogold markers and cryo-CLXM can be used to analyse cellular processes that are inaccessible using other imaging modalities. Elsevier 2014-08 /pmc/articles/PMC4045213/ /pubmed/24238600 http://dx.doi.org/10.1016/j.ultramic.2013.10.006 Text en © 2013 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Duke, Elizabeth M.H.
Razi, Minoo
Weston, Anne
Guttmann, Peter
Werner, Stephan
Henzler, Katja
Schneider, Gerd
Tooze, Sharon A.
Collinson, Lucy M.
Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title_full Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title_fullStr Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title_full_unstemmed Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title_short Imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft X-ray microscopy (cryo-CLXM)()
title_sort imaging endosomes and autophagosomes in whole mammalian cells using correlative cryo-fluorescence and cryo-soft x-ray microscopy (cryo-clxm)()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4045213/
https://www.ncbi.nlm.nih.gov/pubmed/24238600
http://dx.doi.org/10.1016/j.ultramic.2013.10.006
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