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T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse

The role of non-muscle myosin IIA (heavy chain encoded by the non-muscle myosin heavy chain 9 gene, Myh9) in immunological synapse formation is controversial. We have addressed the role of myosin IIA heavy chain protein (MYH9) in mouse T cells responding to MHC-peptide complexes and ICAM-1 in suppor...

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Autores principales: Kumari, Sudha, Vardhana, Santosha, Cammer, Michael, Curado, Silvia, Santos, Luis, Sheetz, Michael P., Dustin, Michael L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3421155/
https://www.ncbi.nlm.nih.gov/pubmed/22912631
http://dx.doi.org/10.3389/fimmu.2012.00230
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author Kumari, Sudha
Vardhana, Santosha
Cammer, Michael
Curado, Silvia
Santos, Luis
Sheetz, Michael P.
Dustin, Michael L.
author_facet Kumari, Sudha
Vardhana, Santosha
Cammer, Michael
Curado, Silvia
Santos, Luis
Sheetz, Michael P.
Dustin, Michael L.
author_sort Kumari, Sudha
collection PubMed
description The role of non-muscle myosin IIA (heavy chain encoded by the non-muscle myosin heavy chain 9 gene, Myh9) in immunological synapse formation is controversial. We have addressed the role of myosin IIA heavy chain protein (MYH9) in mouse T cells responding to MHC-peptide complexes and ICAM-1 in supported planar bilayers – a model for immunological synapse maturation. We found that reduction of MYH9 expression levels using Myh9 siRNA in proliferating mouse CD4(+) AND T cell receptor (TCR) transgenic T cells resulted in increased spreading area, failure to assemble the central and peripheral supramolecular activation clusters (cSMAC and pSMAC), and increased motility. Surprisingly, TCR microcluster speed was reduced marginally, however TCR microclusters dissipated prior to forming a cSMAC. TCR microclusters formed in the Myh9 siRNA-treated T cells showed reduced phosphorylation of the Src family kinase (SFK) activation loop and displayed reduced cytoplasmic calcium ion (Ca(2+)) elevation. In addition, Myh9 siRNA-treated cells displayed reduced phosphorylation of the Cas-L substrate domain – a force-dependent SFK substrate – which was observed in control siRNA-treated cells in foci throughout the immunological synapse except the cSMAC. Cas-L exhibited TCR ligation-dependent induction of phosphorylation. These results provide further evidence that T cell activation is modulated by intrinsic force-generating systems and can be viewed as a mechanically responsive process influenced by MYH9.
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spelling pubmed-34211552012-08-21 T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse Kumari, Sudha Vardhana, Santosha Cammer, Michael Curado, Silvia Santos, Luis Sheetz, Michael P. Dustin, Michael L. Front Immunol Immunology The role of non-muscle myosin IIA (heavy chain encoded by the non-muscle myosin heavy chain 9 gene, Myh9) in immunological synapse formation is controversial. We have addressed the role of myosin IIA heavy chain protein (MYH9) in mouse T cells responding to MHC-peptide complexes and ICAM-1 in supported planar bilayers – a model for immunological synapse maturation. We found that reduction of MYH9 expression levels using Myh9 siRNA in proliferating mouse CD4(+) AND T cell receptor (TCR) transgenic T cells resulted in increased spreading area, failure to assemble the central and peripheral supramolecular activation clusters (cSMAC and pSMAC), and increased motility. Surprisingly, TCR microcluster speed was reduced marginally, however TCR microclusters dissipated prior to forming a cSMAC. TCR microclusters formed in the Myh9 siRNA-treated T cells showed reduced phosphorylation of the Src family kinase (SFK) activation loop and displayed reduced cytoplasmic calcium ion (Ca(2+)) elevation. In addition, Myh9 siRNA-treated cells displayed reduced phosphorylation of the Cas-L substrate domain – a force-dependent SFK substrate – which was observed in control siRNA-treated cells in foci throughout the immunological synapse except the cSMAC. Cas-L exhibited TCR ligation-dependent induction of phosphorylation. These results provide further evidence that T cell activation is modulated by intrinsic force-generating systems and can be viewed as a mechanically responsive process influenced by MYH9. Frontiers Research Foundation 2012-08-17 /pmc/articles/PMC3421155/ /pubmed/22912631 http://dx.doi.org/10.3389/fimmu.2012.00230 Text en Copyright © 2012 Kumari, Vardhana, Cammer, Curado, Santos, Sheetz and Dustin. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and subject to any copyright notices concerning any third-party graphics etc.
spellingShingle Immunology
Kumari, Sudha
Vardhana, Santosha
Cammer, Michael
Curado, Silvia
Santos, Luis
Sheetz, Michael P.
Dustin, Michael L.
T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title_full T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title_fullStr T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title_full_unstemmed T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title_short T Lymphocyte Myosin IIA is Required for Maturation of the Immunological Synapse
title_sort t lymphocyte myosin iia is required for maturation of the immunological synapse
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3421155/
https://www.ncbi.nlm.nih.gov/pubmed/22912631
http://dx.doi.org/10.3389/fimmu.2012.00230
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