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Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells

The endoplasmic reticulum (ER) is a highly dynamic network of membranes. Here, we combine live-cell microscopy with in situ cryo–electron tomography to directly visualize ER dynamics in several secretory cell types including pancreatic β-cells and neurons under near-native conditions. Using these im...

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Autores principales: Carter, Stephen D., Hampton, Cheri M., Langlois, Robert, Melero, Roberto, Farino, Zachary J., Calderon, Michael J., Li, Wen, Wallace, Callen T., Tran, Ngoc Han, Grassucci, Robert A., Siegmund, Stephanie E., Pemberton, Joshua, Morgenstern, Travis J., Eisenman, Leanna, Aguilar, Jenny I., Greenberg, Nili L., Levy, Elana S., Yi, Edward, Mitchell, William G., Rice, William J., Wigge, Christoph, Pilli, Jyotsna, George, Emily W., Aslanoglou, Despoina, Courel, Maïté, Freyberg, Robin J., Javitch, Jonathan A., Wills, Zachary P., Area-Gomez, Estela, Shiva, Sruti, Bartolini, Francesca, Volchuk, Allen, Murray, Sandra A., Aridor, Meir, Fish, Kenneth N., Walter, Peter, Balla, Tamas, Fass, Deborah, Wolf, Sharon G., Watkins, Simon C., Carazo, José María, Jensen, Grant J., Frank, Joachim, Freyberg, Zachary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112762/
https://www.ncbi.nlm.nih.gov/pubmed/32270040
http://dx.doi.org/10.1126/sciadv.aay9572
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author Carter, Stephen D.
Hampton, Cheri M.
Langlois, Robert
Melero, Roberto
Farino, Zachary J.
Calderon, Michael J.
Li, Wen
Wallace, Callen T.
Tran, Ngoc Han
Grassucci, Robert A.
Siegmund, Stephanie E.
Pemberton, Joshua
Morgenstern, Travis J.
Eisenman, Leanna
Aguilar, Jenny I.
Greenberg, Nili L.
Levy, Elana S.
Yi, Edward
Mitchell, William G.
Rice, William J.
Wigge, Christoph
Pilli, Jyotsna
George, Emily W.
Aslanoglou, Despoina
Courel, Maïté
Freyberg, Robin J.
Javitch, Jonathan A.
Wills, Zachary P.
Area-Gomez, Estela
Shiva, Sruti
Bartolini, Francesca
Volchuk, Allen
Murray, Sandra A.
Aridor, Meir
Fish, Kenneth N.
Walter, Peter
Balla, Tamas
Fass, Deborah
Wolf, Sharon G.
Watkins, Simon C.
Carazo, José María
Jensen, Grant J.
Frank, Joachim
Freyberg, Zachary
author_facet Carter, Stephen D.
Hampton, Cheri M.
Langlois, Robert
Melero, Roberto
Farino, Zachary J.
Calderon, Michael J.
Li, Wen
Wallace, Callen T.
Tran, Ngoc Han
Grassucci, Robert A.
Siegmund, Stephanie E.
Pemberton, Joshua
Morgenstern, Travis J.
Eisenman, Leanna
Aguilar, Jenny I.
Greenberg, Nili L.
Levy, Elana S.
Yi, Edward
Mitchell, William G.
Rice, William J.
Wigge, Christoph
Pilli, Jyotsna
George, Emily W.
Aslanoglou, Despoina
Courel, Maïté
Freyberg, Robin J.
Javitch, Jonathan A.
Wills, Zachary P.
Area-Gomez, Estela
Shiva, Sruti
Bartolini, Francesca
Volchuk, Allen
Murray, Sandra A.
Aridor, Meir
Fish, Kenneth N.
Walter, Peter
Balla, Tamas
Fass, Deborah
Wolf, Sharon G.
Watkins, Simon C.
Carazo, José María
Jensen, Grant J.
Frank, Joachim
Freyberg, Zachary
author_sort Carter, Stephen D.
collection PubMed
description The endoplasmic reticulum (ER) is a highly dynamic network of membranes. Here, we combine live-cell microscopy with in situ cryo–electron tomography to directly visualize ER dynamics in several secretory cell types including pancreatic β-cells and neurons under near-native conditions. Using these imaging approaches, we identify a novel, mobile form of ER, ribosome-associated vesicles (RAVs), found primarily in the cell periphery, which is conserved across different cell types and species. We show that RAVs exist as distinct, highly dynamic structures separate from the intact ER reticular architecture that interact with mitochondria via direct intermembrane contacts. These findings describe a new ER subcompartment within cells.
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spelling pubmed-71127622020-04-08 Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells Carter, Stephen D. Hampton, Cheri M. Langlois, Robert Melero, Roberto Farino, Zachary J. Calderon, Michael J. Li, Wen Wallace, Callen T. Tran, Ngoc Han Grassucci, Robert A. Siegmund, Stephanie E. Pemberton, Joshua Morgenstern, Travis J. Eisenman, Leanna Aguilar, Jenny I. Greenberg, Nili L. Levy, Elana S. Yi, Edward Mitchell, William G. Rice, William J. Wigge, Christoph Pilli, Jyotsna George, Emily W. Aslanoglou, Despoina Courel, Maïté Freyberg, Robin J. Javitch, Jonathan A. Wills, Zachary P. Area-Gomez, Estela Shiva, Sruti Bartolini, Francesca Volchuk, Allen Murray, Sandra A. Aridor, Meir Fish, Kenneth N. Walter, Peter Balla, Tamas Fass, Deborah Wolf, Sharon G. Watkins, Simon C. Carazo, José María Jensen, Grant J. Frank, Joachim Freyberg, Zachary Sci Adv Research Articles The endoplasmic reticulum (ER) is a highly dynamic network of membranes. Here, we combine live-cell microscopy with in situ cryo–electron tomography to directly visualize ER dynamics in several secretory cell types including pancreatic β-cells and neurons under near-native conditions. Using these imaging approaches, we identify a novel, mobile form of ER, ribosome-associated vesicles (RAVs), found primarily in the cell periphery, which is conserved across different cell types and species. We show that RAVs exist as distinct, highly dynamic structures separate from the intact ER reticular architecture that interact with mitochondria via direct intermembrane contacts. These findings describe a new ER subcompartment within cells. American Association for the Advancement of Science 2020-04-01 /pmc/articles/PMC7112762/ /pubmed/32270040 http://dx.doi.org/10.1126/sciadv.aay9572 Text en Copyright © 2020 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY). http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Carter, Stephen D.
Hampton, Cheri M.
Langlois, Robert
Melero, Roberto
Farino, Zachary J.
Calderon, Michael J.
Li, Wen
Wallace, Callen T.
Tran, Ngoc Han
Grassucci, Robert A.
Siegmund, Stephanie E.
Pemberton, Joshua
Morgenstern, Travis J.
Eisenman, Leanna
Aguilar, Jenny I.
Greenberg, Nili L.
Levy, Elana S.
Yi, Edward
Mitchell, William G.
Rice, William J.
Wigge, Christoph
Pilli, Jyotsna
George, Emily W.
Aslanoglou, Despoina
Courel, Maïté
Freyberg, Robin J.
Javitch, Jonathan A.
Wills, Zachary P.
Area-Gomez, Estela
Shiva, Sruti
Bartolini, Francesca
Volchuk, Allen
Murray, Sandra A.
Aridor, Meir
Fish, Kenneth N.
Walter, Peter
Balla, Tamas
Fass, Deborah
Wolf, Sharon G.
Watkins, Simon C.
Carazo, José María
Jensen, Grant J.
Frank, Joachim
Freyberg, Zachary
Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title_full Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title_fullStr Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title_full_unstemmed Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title_short Ribosome-associated vesicles: A dynamic subcompartment of the endoplasmic reticulum in secretory cells
title_sort ribosome-associated vesicles: a dynamic subcompartment of the endoplasmic reticulum in secretory cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112762/
https://www.ncbi.nlm.nih.gov/pubmed/32270040
http://dx.doi.org/10.1126/sciadv.aay9572
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