Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells.
Lymph node and spleen cells of mice doubly immunized by epicutaneous and intravenous hapten application produce a suppressive component that inhibits the action of the effector T cells that mediate contact sensitivity reactions. We recently re-investigated this phenomenon in an immunological system....
Main Authors: | , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2015-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC4414541?pdf=render |
id |
doaj-413be67eb41d485990f4bd2e1522a321 |
---|---|
record_format |
Article |
spelling |
doaj-413be67eb41d485990f4bd2e1522a3212020-11-25T02:15:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012299110.1371/journal.pone.0122991Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells.Krzysztof BryniarskiWlodzimierz PtakEmilia MartinKatarzyna NazimekMarian SzczepanikMarek SanakPhilip W AskenaseLymph node and spleen cells of mice doubly immunized by epicutaneous and intravenous hapten application produce a suppressive component that inhibits the action of the effector T cells that mediate contact sensitivity reactions. We recently re-investigated this phenomenon in an immunological system. CD8+ T lymphocyte-derived exosomes transferred suppressive miR-150 to the effector T cells antigen-specifically due to exosome surface coat of antibody light chains made by B1a lymphocytes. Extracellular RNA (exRNA) is protected from plasma RNases by carriage in exosomes or by chaperones. Exosome transfer of functional RNA to target cells is well described, whereas the mechanism of transfer of exRNA free of exosomes remains unclear. In the current study we describe extracellular miR-150, extracted from exosomes, yet still able to mediate antigen-specific suppression. We have determined that this was due to miR-150 association with antibody-coated exosomes produced by B1a cell companions of the effector T cells, which resulted in antigen-specific suppression of their function. Thus functional cell targeting by free exRNA can proceed by transfecting companion cell exosomes that then transfer RNA cargo to the acceptor cells. This contrasts with the classical view on release of RNA-containing exosomes from the multivesicular bodies for subsequent intercellular targeting. This new alternate pathway for transfer of exRNA between cells has distinct biological and immunological significance, and since most human blood exRNA is not in exosomes may be relevant to evaluation and treatment of diseases.http://europepmc.org/articles/PMC4414541?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Krzysztof Bryniarski Wlodzimierz Ptak Emilia Martin Katarzyna Nazimek Marian Szczepanik Marek Sanak Philip W Askenase |
spellingShingle |
Krzysztof Bryniarski Wlodzimierz Ptak Emilia Martin Katarzyna Nazimek Marian Szczepanik Marek Sanak Philip W Askenase Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. PLoS ONE |
author_facet |
Krzysztof Bryniarski Wlodzimierz Ptak Emilia Martin Katarzyna Nazimek Marian Szczepanik Marek Sanak Philip W Askenase |
author_sort |
Krzysztof Bryniarski |
title |
Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. |
title_short |
Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. |
title_full |
Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. |
title_fullStr |
Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. |
title_full_unstemmed |
Free Extracellular miRNA Functionally Targets Cells by Transfecting Exosomes from Their Companion Cells. |
title_sort |
free extracellular mirna functionally targets cells by transfecting exosomes from their companion cells. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2015-01-01 |
description |
Lymph node and spleen cells of mice doubly immunized by epicutaneous and intravenous hapten application produce a suppressive component that inhibits the action of the effector T cells that mediate contact sensitivity reactions. We recently re-investigated this phenomenon in an immunological system. CD8+ T lymphocyte-derived exosomes transferred suppressive miR-150 to the effector T cells antigen-specifically due to exosome surface coat of antibody light chains made by B1a lymphocytes. Extracellular RNA (exRNA) is protected from plasma RNases by carriage in exosomes or by chaperones. Exosome transfer of functional RNA to target cells is well described, whereas the mechanism of transfer of exRNA free of exosomes remains unclear. In the current study we describe extracellular miR-150, extracted from exosomes, yet still able to mediate antigen-specific suppression. We have determined that this was due to miR-150 association with antibody-coated exosomes produced by B1a cell companions of the effector T cells, which resulted in antigen-specific suppression of their function. Thus functional cell targeting by free exRNA can proceed by transfecting companion cell exosomes that then transfer RNA cargo to the acceptor cells. This contrasts with the classical view on release of RNA-containing exosomes from the multivesicular bodies for subsequent intercellular targeting. This new alternate pathway for transfer of exRNA between cells has distinct biological and immunological significance, and since most human blood exRNA is not in exosomes may be relevant to evaluation and treatment of diseases. |
url |
http://europepmc.org/articles/PMC4414541?pdf=render |
work_keys_str_mv |
AT krzysztofbryniarski freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT wlodzimierzptak freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT emiliamartin freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT katarzynanazimek freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT marianszczepanik freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT mareksanak freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells AT philipwaskenase freeextracellularmirnafunctionallytargetscellsbytransfectingexosomesfromtheircompanioncells |
_version_ |
1724896442964770816 |