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DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation

DOCK8 and MyD88 have been implicated in serologic memory. Here we report antibody responses were impaired and CD27(+) memory B cells were severely reduced in DOCK8-deficient patients. Toll-like receptor 9 (TLR9)- but not CD40-driven B cell proliferation and immunoglobulin production were severely re...

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Autores principales: Jabara, Haifa H., McDonald, Douglas R., Janssen, Erin, Massaad, Michel J., Ramesh, Narayanaswamy, Borzutzky, Arturo, Rauter, Ingrid, Benson, Halli, Schneider, Lynda, Baxi, Sachin, Recher, Mike, Notarangelo, Luigi, Wakim, Rima, Dbaibo, Ghassan, Dasouki, Majed, Al-Herz, Waleed, Barlan, Isil, Baris, Safa, Kutukculer, Necil, Ochs, Hans, Plebani, Alessandro, Kanariou, Maria, Lefranc, Gerard, Reisli, Ismail, Fitzgerald, Kate, Golenbock, Douglas, Manis, John, Keles, Sevgi, Ceja, Reuben, Chatila, Talal, Geha, Raif S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3362684/
https://www.ncbi.nlm.nih.gov/pubmed/22581261
http://dx.doi.org/10.1038/ni.2305
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author Jabara, Haifa H.
McDonald, Douglas R.
Janssen, Erin
Massaad, Michel J.
Ramesh, Narayanaswamy
Borzutzky, Arturo
Rauter, Ingrid
Benson, Halli
Schneider, Lynda
Baxi, Sachin
Recher, Mike
Notarangelo, Luigi
Wakim, Rima
Dbaibo, Ghassan
Dasouki, Majed
Al-Herz, Waleed
Barlan, Isil
Baris, Safa
Kutukculer, Necil
Ochs, Hans
Plebani, Alessandro
Kanariou, Maria
Lefranc, Gerard
Reisli, Ismail
Fitzgerald, Kate
Golenbock, Douglas
Manis, John
Keles, Sevgi
Ceja, Reuben
Chatila, Talal
Geha, Raif S.
author_facet Jabara, Haifa H.
McDonald, Douglas R.
Janssen, Erin
Massaad, Michel J.
Ramesh, Narayanaswamy
Borzutzky, Arturo
Rauter, Ingrid
Benson, Halli
Schneider, Lynda
Baxi, Sachin
Recher, Mike
Notarangelo, Luigi
Wakim, Rima
Dbaibo, Ghassan
Dasouki, Majed
Al-Herz, Waleed
Barlan, Isil
Baris, Safa
Kutukculer, Necil
Ochs, Hans
Plebani, Alessandro
Kanariou, Maria
Lefranc, Gerard
Reisli, Ismail
Fitzgerald, Kate
Golenbock, Douglas
Manis, John
Keles, Sevgi
Ceja, Reuben
Chatila, Talal
Geha, Raif S.
author_sort Jabara, Haifa H.
collection PubMed
description DOCK8 and MyD88 have been implicated in serologic memory. Here we report antibody responses were impaired and CD27(+) memory B cells were severely reduced in DOCK8-deficient patients. Toll-like receptor 9 (TLR9)- but not CD40-driven B cell proliferation and immunoglobulin production were severely reduced in DOCK8-deficient B cells. In contrast, TLR9-driven expression of AICDA, CD23 and CD86, and activation of NF-κB, p38 and Rac1 were intact. DOCK8 associated constitutively with MyD88 and the tyrosine kinase Pyk2 in normal B cells. Following TLR9 ligation, DOCK8 became tyrosine phosphorylated by Pyk2, bound the Src family kinase Lyn and linked TLR9 to a Src-Syk-STAT3 cascade essential for TLR9-driven B cell proliferation and differentiation. Thus, DOCK8 functions as an adaptor in a TLR9-MyD88 signaling pathway in B cells.
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spelling pubmed-33626842012-12-01 DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation Jabara, Haifa H. McDonald, Douglas R. Janssen, Erin Massaad, Michel J. Ramesh, Narayanaswamy Borzutzky, Arturo Rauter, Ingrid Benson, Halli Schneider, Lynda Baxi, Sachin Recher, Mike Notarangelo, Luigi Wakim, Rima Dbaibo, Ghassan Dasouki, Majed Al-Herz, Waleed Barlan, Isil Baris, Safa Kutukculer, Necil Ochs, Hans Plebani, Alessandro Kanariou, Maria Lefranc, Gerard Reisli, Ismail Fitzgerald, Kate Golenbock, Douglas Manis, John Keles, Sevgi Ceja, Reuben Chatila, Talal Geha, Raif S. Nat Immunol Article DOCK8 and MyD88 have been implicated in serologic memory. Here we report antibody responses were impaired and CD27(+) memory B cells were severely reduced in DOCK8-deficient patients. Toll-like receptor 9 (TLR9)- but not CD40-driven B cell proliferation and immunoglobulin production were severely reduced in DOCK8-deficient B cells. In contrast, TLR9-driven expression of AICDA, CD23 and CD86, and activation of NF-κB, p38 and Rac1 were intact. DOCK8 associated constitutively with MyD88 and the tyrosine kinase Pyk2 in normal B cells. Following TLR9 ligation, DOCK8 became tyrosine phosphorylated by Pyk2, bound the Src family kinase Lyn and linked TLR9 to a Src-Syk-STAT3 cascade essential for TLR9-driven B cell proliferation and differentiation. Thus, DOCK8 functions as an adaptor in a TLR9-MyD88 signaling pathway in B cells. 2012-05-13 /pmc/articles/PMC3362684/ /pubmed/22581261 http://dx.doi.org/10.1038/ni.2305 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Jabara, Haifa H.
McDonald, Douglas R.
Janssen, Erin
Massaad, Michel J.
Ramesh, Narayanaswamy
Borzutzky, Arturo
Rauter, Ingrid
Benson, Halli
Schneider, Lynda
Baxi, Sachin
Recher, Mike
Notarangelo, Luigi
Wakim, Rima
Dbaibo, Ghassan
Dasouki, Majed
Al-Herz, Waleed
Barlan, Isil
Baris, Safa
Kutukculer, Necil
Ochs, Hans
Plebani, Alessandro
Kanariou, Maria
Lefranc, Gerard
Reisli, Ismail
Fitzgerald, Kate
Golenbock, Douglas
Manis, John
Keles, Sevgi
Ceja, Reuben
Chatila, Talal
Geha, Raif S.
DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title_full DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title_fullStr DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title_full_unstemmed DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title_short DOCK8 functions as an adaptor that links Toll-like receptor–MyD88 signaling to B cell activation
title_sort dock8 functions as an adaptor that links toll-like receptor–myd88 signaling to b cell activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3362684/
https://www.ncbi.nlm.nih.gov/pubmed/22581261
http://dx.doi.org/10.1038/ni.2305
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