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FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane

The aggregation of high affinity IgE receptors (Fcɛ receptor I [FcɛRI]) on mast cells is potent stimulus for the release of inflammatory and allergic mediators from cytoplasmic granules. However, the molecular mechanism of degranulation has not yet been established. It is still unclear how FcɛRI-med...

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Autores principales: Nishida, Keigo, Yamasaki, Satoru, Ito, Yukitaka, Kabu, Koki, Hattori, Kotaro, Tezuka, Tohru, Nishizumi, Hirofumi, Kitamura, Daisuke, Goitsuka, Ryo, Geha, Raif S., Yamamoto, Tadashi, Yagi, Takeshi, Hirano, Toshio
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2171390/
https://www.ncbi.nlm.nih.gov/pubmed/15998803
http://dx.doi.org/10.1083/jcb.200501111
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author Nishida, Keigo
Yamasaki, Satoru
Ito, Yukitaka
Kabu, Koki
Hattori, Kotaro
Tezuka, Tohru
Nishizumi, Hirofumi
Kitamura, Daisuke
Goitsuka, Ryo
Geha, Raif S.
Yamamoto, Tadashi
Yagi, Takeshi
Hirano, Toshio
author_facet Nishida, Keigo
Yamasaki, Satoru
Ito, Yukitaka
Kabu, Koki
Hattori, Kotaro
Tezuka, Tohru
Nishizumi, Hirofumi
Kitamura, Daisuke
Goitsuka, Ryo
Geha, Raif S.
Yamamoto, Tadashi
Yagi, Takeshi
Hirano, Toshio
author_sort Nishida, Keigo
collection PubMed
description The aggregation of high affinity IgE receptors (Fcɛ receptor I [FcɛRI]) on mast cells is potent stimulus for the release of inflammatory and allergic mediators from cytoplasmic granules. However, the molecular mechanism of degranulation has not yet been established. It is still unclear how FcɛRI-mediated signal transduction ultimately regulates the reorganization of the cytoskeleton and how these events lead to degranulation. Here, we show that FcɛRI stimulation triggers the formation of microtubules in a manner independent of calcium. Drugs affecting microtubule dynamics effectively suppressed the FcɛRI-mediated translocation of granules to the plasma membrane and degranulation. Furthermore, the translocation of granules to the plasma membrane occurred in a calcium-independent manner, but the release of mediators and granule–plasma membrane fusion were completely dependent on calcium. Thus, the degranulation process can be dissected into two events: the calcium-independent microtubule-dependent translocation of granules to the plasma membrane and calcium-dependent membrane fusion and exocytosis. Finally, we show that the Fyn/Gab2/RhoA (but not Lyn/SLP-76) signaling pathway plays a critical role in the calcium-independent microtubule-dependent pathway.
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spelling pubmed-21713902008-03-05 FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane Nishida, Keigo Yamasaki, Satoru Ito, Yukitaka Kabu, Koki Hattori, Kotaro Tezuka, Tohru Nishizumi, Hirofumi Kitamura, Daisuke Goitsuka, Ryo Geha, Raif S. Yamamoto, Tadashi Yagi, Takeshi Hirano, Toshio J Cell Biol Research Articles The aggregation of high affinity IgE receptors (Fcɛ receptor I [FcɛRI]) on mast cells is potent stimulus for the release of inflammatory and allergic mediators from cytoplasmic granules. However, the molecular mechanism of degranulation has not yet been established. It is still unclear how FcɛRI-mediated signal transduction ultimately regulates the reorganization of the cytoskeleton and how these events lead to degranulation. Here, we show that FcɛRI stimulation triggers the formation of microtubules in a manner independent of calcium. Drugs affecting microtubule dynamics effectively suppressed the FcɛRI-mediated translocation of granules to the plasma membrane and degranulation. Furthermore, the translocation of granules to the plasma membrane occurred in a calcium-independent manner, but the release of mediators and granule–plasma membrane fusion were completely dependent on calcium. Thus, the degranulation process can be dissected into two events: the calcium-independent microtubule-dependent translocation of granules to the plasma membrane and calcium-dependent membrane fusion and exocytosis. Finally, we show that the Fyn/Gab2/RhoA (but not Lyn/SLP-76) signaling pathway plays a critical role in the calcium-independent microtubule-dependent pathway. The Rockefeller University Press 2005-07-04 /pmc/articles/PMC2171390/ /pubmed/15998803 http://dx.doi.org/10.1083/jcb.200501111 Text en Copyright © 2005, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Research Articles
Nishida, Keigo
Yamasaki, Satoru
Ito, Yukitaka
Kabu, Koki
Hattori, Kotaro
Tezuka, Tohru
Nishizumi, Hirofumi
Kitamura, Daisuke
Goitsuka, Ryo
Geha, Raif S.
Yamamoto, Tadashi
Yagi, Takeshi
Hirano, Toshio
FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title_full FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title_fullStr FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title_full_unstemmed FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title_short FcɛRI-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
title_sort fcɛri-mediated mast cell degranulation requires calcium-independent microtubule-dependent translocation of granules to the plasma membrane
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2171390/
https://www.ncbi.nlm.nih.gov/pubmed/15998803
http://dx.doi.org/10.1083/jcb.200501111
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