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Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy

Natural Killer (NK) cells are innate immune cells that secrete lytic granules to directly kill virus-infected or transformed cells across an immune synapse. However, a major gap in understanding this process is in establishing how lytic granules pass through the mesh of cortical actin known to under...

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Autores principales: Brown, Alice C. N., Oddos, Stephane, Dobbie, Ian M., Alakoskela, Juha-Matti, Parton, Richard M., Eissmann, Philipp, Neil, Mark A. A., Dunsby, Christopher, French, Paul M. W., Davis, Ilan, Davis, Daniel M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3172219/
https://www.ncbi.nlm.nih.gov/pubmed/21931537
http://dx.doi.org/10.1371/journal.pbio.1001152
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author Brown, Alice C. N.
Oddos, Stephane
Dobbie, Ian M.
Alakoskela, Juha-Matti
Parton, Richard M.
Eissmann, Philipp
Neil, Mark A. A.
Dunsby, Christopher
French, Paul M. W.
Davis, Ilan
Davis, Daniel M.
author_facet Brown, Alice C. N.
Oddos, Stephane
Dobbie, Ian M.
Alakoskela, Juha-Matti
Parton, Richard M.
Eissmann, Philipp
Neil, Mark A. A.
Dunsby, Christopher
French, Paul M. W.
Davis, Ilan
Davis, Daniel M.
author_sort Brown, Alice C. N.
collection PubMed
description Natural Killer (NK) cells are innate immune cells that secrete lytic granules to directly kill virus-infected or transformed cells across an immune synapse. However, a major gap in understanding this process is in establishing how lytic granules pass through the mesh of cortical actin known to underlie the NK cell membrane. Research has been hampered by the resolution of conventional light microscopy, which is too low to resolve cortical actin during lytic granule secretion. Here we use two high-resolution imaging techniques to probe the synaptic organisation of NK cell receptors and filamentous (F)-actin. A combination of optical tweezers and live cell confocal microscopy reveals that microclusters of NKG2D assemble into a ring-shaped structure at the centre of intercellular synapses, where Vav1 and Grb2 also accumulate. Within this ring-shaped organisation of NK cell proteins, lytic granules accumulate for secretion. Using 3D-structured illumination microscopy (3D-SIM) to gain super-resolution of ∼100 nm, cortical actin was detected in a central region of the NK cell synapse irrespective of whether activating or inhibitory signals dominate. Strikingly, the periodicity of the cortical actin mesh increased in specific domains at the synapse when the NK cell was activated. Two-colour super-resolution imaging revealed that lytic granules docked precisely in these domains which were also proximal to where the microtubule-organising centre (MTOC) polarised. Together, these data demonstrate that remodelling of the cortical actin mesh occurs at the central region of the cytolytic NK cell immune synapse. This is likely to occur for other types of cell secretion and also emphasises the importance of emerging super-resolution imaging technology for revealing new biology.
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spelling pubmed-31722192011-09-19 Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy Brown, Alice C. N. Oddos, Stephane Dobbie, Ian M. Alakoskela, Juha-Matti Parton, Richard M. Eissmann, Philipp Neil, Mark A. A. Dunsby, Christopher French, Paul M. W. Davis, Ilan Davis, Daniel M. PLoS Biol Research Article Natural Killer (NK) cells are innate immune cells that secrete lytic granules to directly kill virus-infected or transformed cells across an immune synapse. However, a major gap in understanding this process is in establishing how lytic granules pass through the mesh of cortical actin known to underlie the NK cell membrane. Research has been hampered by the resolution of conventional light microscopy, which is too low to resolve cortical actin during lytic granule secretion. Here we use two high-resolution imaging techniques to probe the synaptic organisation of NK cell receptors and filamentous (F)-actin. A combination of optical tweezers and live cell confocal microscopy reveals that microclusters of NKG2D assemble into a ring-shaped structure at the centre of intercellular synapses, where Vav1 and Grb2 also accumulate. Within this ring-shaped organisation of NK cell proteins, lytic granules accumulate for secretion. Using 3D-structured illumination microscopy (3D-SIM) to gain super-resolution of ∼100 nm, cortical actin was detected in a central region of the NK cell synapse irrespective of whether activating or inhibitory signals dominate. Strikingly, the periodicity of the cortical actin mesh increased in specific domains at the synapse when the NK cell was activated. Two-colour super-resolution imaging revealed that lytic granules docked precisely in these domains which were also proximal to where the microtubule-organising centre (MTOC) polarised. Together, these data demonstrate that remodelling of the cortical actin mesh occurs at the central region of the cytolytic NK cell immune synapse. This is likely to occur for other types of cell secretion and also emphasises the importance of emerging super-resolution imaging technology for revealing new biology. Public Library of Science 2011-09-13 /pmc/articles/PMC3172219/ /pubmed/21931537 http://dx.doi.org/10.1371/journal.pbio.1001152 Text en Brown et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Brown, Alice C. N.
Oddos, Stephane
Dobbie, Ian M.
Alakoskela, Juha-Matti
Parton, Richard M.
Eissmann, Philipp
Neil, Mark A. A.
Dunsby, Christopher
French, Paul M. W.
Davis, Ilan
Davis, Daniel M.
Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title_full Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title_fullStr Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title_full_unstemmed Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title_short Remodelling of Cortical Actin Where Lytic Granules Dock at Natural Killer Cell Immune Synapses Revealed by Super-Resolution Microscopy
title_sort remodelling of cortical actin where lytic granules dock at natural killer cell immune synapses revealed by super-resolution microscopy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3172219/
https://www.ncbi.nlm.nih.gov/pubmed/21931537
http://dx.doi.org/10.1371/journal.pbio.1001152
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