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Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function

MEG2, a protein tyrosine phosphatase with a unique NH(2)-terminal lipid-binding domain, binds to and is modulated by the polyphosphoinositides PI((4,5))P(2) and PI((3,4,5))P(3). Recent data implicate MEG2 in vesicle fusion events in leukocytes. Through the genesis of Meg2-deficient mice, we demonstr...

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Autores principales: Wang, Yingchun, Vachon, Eric, Zhang, Jinyi, Cherepanov, Vera, Kruger, Joshua, Li, Jun, Saito, Kan, Shannon, Patrick, Bottini, Nunzio, Huynh, Huong, Ni, Heyu, Yang, Hong, McKerlie, Colin, Quaggin, Sue, Zhao, Zhizhuang Joe, Marsden, Philip A., Mustelin, Tomas, Siminovitch, Katherine A., Downey, Gregory P.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213338/
https://www.ncbi.nlm.nih.gov/pubmed/16330817
http://dx.doi.org/10.1084/jem.20051108
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author Wang, Yingchun
Vachon, Eric
Zhang, Jinyi
Cherepanov, Vera
Kruger, Joshua
Li, Jun
Saito, Kan
Shannon, Patrick
Bottini, Nunzio
Huynh, Huong
Ni, Heyu
Yang, Hong
McKerlie, Colin
Quaggin, Sue
Zhao, Zhizhuang Joe
Marsden, Philip A.
Mustelin, Tomas
Siminovitch, Katherine A.
Downey, Gregory P.
author_facet Wang, Yingchun
Vachon, Eric
Zhang, Jinyi
Cherepanov, Vera
Kruger, Joshua
Li, Jun
Saito, Kan
Shannon, Patrick
Bottini, Nunzio
Huynh, Huong
Ni, Heyu
Yang, Hong
McKerlie, Colin
Quaggin, Sue
Zhao, Zhizhuang Joe
Marsden, Philip A.
Mustelin, Tomas
Siminovitch, Katherine A.
Downey, Gregory P.
author_sort Wang, Yingchun
collection PubMed
description MEG2, a protein tyrosine phosphatase with a unique NH(2)-terminal lipid-binding domain, binds to and is modulated by the polyphosphoinositides PI((4,5))P(2) and PI((3,4,5))P(3). Recent data implicate MEG2 in vesicle fusion events in leukocytes. Through the genesis of Meg2-deficient mice, we demonstrate that Meg2(−/−)embryos manifest hemorrhages, neural tube defects including exencephaly and meningomyeloceles, cerebral infarctions, abnormal bone development, and >90% late embryonic lethality. T lymphocytes and platelets isolated from recombination activating gene 2(−/−) mice transplanted with Meg2(−/−) embryonic liver–derived hematopoietic progenitor cells showed profound defects in activation that, in T lymphocytes, was attributable to impaired interleukin 2 secretion. Ultrastructural analysis of these lymphocytes revealed near complete absence of mature secretory vesicles. Taken together, these observations suggest that MEG2-mediated modulation of secretory vesicle genesis and function plays an essential role in neural tube, vascular, and bone development as well as activation of mature platelets and lymphocytes.
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spelling pubmed-22133382008-03-11 Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function Wang, Yingchun Vachon, Eric Zhang, Jinyi Cherepanov, Vera Kruger, Joshua Li, Jun Saito, Kan Shannon, Patrick Bottini, Nunzio Huynh, Huong Ni, Heyu Yang, Hong McKerlie, Colin Quaggin, Sue Zhao, Zhizhuang Joe Marsden, Philip A. Mustelin, Tomas Siminovitch, Katherine A. Downey, Gregory P. J Exp Med Article MEG2, a protein tyrosine phosphatase with a unique NH(2)-terminal lipid-binding domain, binds to and is modulated by the polyphosphoinositides PI((4,5))P(2) and PI((3,4,5))P(3). Recent data implicate MEG2 in vesicle fusion events in leukocytes. Through the genesis of Meg2-deficient mice, we demonstrate that Meg2(−/−)embryos manifest hemorrhages, neural tube defects including exencephaly and meningomyeloceles, cerebral infarctions, abnormal bone development, and >90% late embryonic lethality. T lymphocytes and platelets isolated from recombination activating gene 2(−/−) mice transplanted with Meg2(−/−) embryonic liver–derived hematopoietic progenitor cells showed profound defects in activation that, in T lymphocytes, was attributable to impaired interleukin 2 secretion. Ultrastructural analysis of these lymphocytes revealed near complete absence of mature secretory vesicles. Taken together, these observations suggest that MEG2-mediated modulation of secretory vesicle genesis and function plays an essential role in neural tube, vascular, and bone development as well as activation of mature platelets and lymphocytes. The Rockefeller University Press 2005-12-05 /pmc/articles/PMC2213338/ /pubmed/16330817 http://dx.doi.org/10.1084/jem.20051108 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 Article
Wang, Yingchun
Vachon, Eric
Zhang, Jinyi
Cherepanov, Vera
Kruger, Joshua
Li, Jun
Saito, Kan
Shannon, Patrick
Bottini, Nunzio
Huynh, Huong
Ni, Heyu
Yang, Hong
McKerlie, Colin
Quaggin, Sue
Zhao, Zhizhuang Joe
Marsden, Philip A.
Mustelin, Tomas
Siminovitch, Katherine A.
Downey, Gregory P.
Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title_full Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title_fullStr Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title_full_unstemmed Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title_short Tyrosine phosphatase MEG2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
title_sort tyrosine phosphatase meg2 modulates murine development and platelet and lymphocyte activation through secretory vesicle function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2213338/
https://www.ncbi.nlm.nih.gov/pubmed/16330817
http://dx.doi.org/10.1084/jem.20051108
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