An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo
The authors have previously reported split-GFP-based contact site sensors (SPLICS) to document endoplasmic reticulum/mitochondria contact sites. Here they extend this work and develop a range of improved SPLICS sensors to detect single and multiple organelle contact sites at different distances.
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2020-11-01
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Series: | Nature Communications |
Online Access: | https://doi.org/10.1038/s41467-020-19892-6 |
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doaj-605e86eacf834bb7bdf8a03fe68ceb5e2021-05-11T09:16:35ZengNature Publishing GroupNature Communications2041-17232020-11-0111111510.1038/s41467-020-19892-6An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivoFrancesca Vallese0Cristina Catoni1Domenico Cieri2Lucia Barazzuol3Omar Ramirez4Valentina Calore5Massimo Bonora6Flavia Giamogante7Paolo Pinton8Marisa Brini9Tito Calì10Department of Biomedical Sciences, University of PadovaDepartment of Biology, University of PadovaDepartment of Biomedical Sciences, University of PadovaDepartment of Biomedical Sciences, University of PadovaDepartment of Neurobiology, Interdisciplinary Center for Neurosciences, Heidelberg UniversityDepartment of Biomedical Sciences, University of PadovaDepartment of Morphology, Surgery and Experimental Medicine, Section of General Pathology, University of FerraraDepartment of Biomedical Sciences, University of PadovaDepartment of Morphology, Surgery and Experimental Medicine, Section of General Pathology, University of FerraraDepartment of Biology, University of PadovaDepartment of Biomedical Sciences, University of PadovaThe authors have previously reported split-GFP-based contact site sensors (SPLICS) to document endoplasmic reticulum/mitochondria contact sites. Here they extend this work and develop a range of improved SPLICS sensors to detect single and multiple organelle contact sites at different distances.https://doi.org/10.1038/s41467-020-19892-6 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Francesca Vallese Cristina Catoni Domenico Cieri Lucia Barazzuol Omar Ramirez Valentina Calore Massimo Bonora Flavia Giamogante Paolo Pinton Marisa Brini Tito Calì |
spellingShingle |
Francesca Vallese Cristina Catoni Domenico Cieri Lucia Barazzuol Omar Ramirez Valentina Calore Massimo Bonora Flavia Giamogante Paolo Pinton Marisa Brini Tito Calì An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo Nature Communications |
author_facet |
Francesca Vallese Cristina Catoni Domenico Cieri Lucia Barazzuol Omar Ramirez Valentina Calore Massimo Bonora Flavia Giamogante Paolo Pinton Marisa Brini Tito Calì |
author_sort |
Francesca Vallese |
title |
An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo |
title_short |
An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo |
title_full |
An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo |
title_fullStr |
An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo |
title_full_unstemmed |
An expanded palette of improved SPLICS reporters detects multiple organelle contacts in vitro and in vivo |
title_sort |
expanded palette of improved splics reporters detects multiple organelle contacts in vitro and in vivo |
publisher |
Nature Publishing Group |
series |
Nature Communications |
issn |
2041-1723 |
publishDate |
2020-11-01 |
description |
The authors have previously reported split-GFP-based contact site sensors (SPLICS) to document endoplasmic reticulum/mitochondria contact sites. Here they extend this work and develop a range of improved SPLICS sensors to detect single and multiple organelle contact sites at different distances. |
url |
https://doi.org/10.1038/s41467-020-19892-6 |
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