Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.

Thymic epithelial cells (TECs) are thought to play an essential role in T cell development and have been detected mainly in mice using lectin binding and antibodies to keratins. Our aim in the present study was to create a precise map of rat TECs using antibodies to putative markers and novel monocl...

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Main Authors: Yasushi Sawanobori, Hiashi Ueta, Christine D Dijkstra, Chae Gyu Park, Motoyasu Satou, Yusuke Kitazawa, Kenjiro Matsuno
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4204869?pdf=render
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spelling doaj-9fdd5c44d5d24a488bb81244e702d2f52020-11-25T01:24:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e10999510.1371/journal.pone.0109995Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.Yasushi SawanoboriHiashi UetaChristine D DijkstraChae Gyu ParkMotoyasu SatouYusuke KitazawaKenjiro MatsunoThymic epithelial cells (TECs) are thought to play an essential role in T cell development and have been detected mainly in mice using lectin binding and antibodies to keratins. Our aim in the present study was to create a precise map of rat TECs using antibodies to putative markers and novel monoclonal antibodies (i.e., ED 18/19/21 and anti-CD205 antibodies) and compare it with a map from mouse counterparts and that of rat thymic dendritic cells.Rat TECs were subdivided on the basis of phenotype into three subsets; ED18+ED19+/-keratin 5 (K5)+K8+CD205+ class II MHC (MHCII)+ cortical TECs (cTECs), ED18+ED21-K5-K8+Ulex europaeus lectin 1 (UEA-1)+CD205- medullary TECs (mTEC1s), and ED18+ED21+K5+K8dullUEA-1-CD205- medullary TECs (mTEC2s). Thymic nurse cells were defined in cytosmears as an ED18+ED19+/-K5+K8+ subset of cTECs. mTEC1s preferentially expressed MHCII, claudin-3, claudin-4, and autoimmune regulator (AIRE). Use of ED18 and ED21 antibodies revealed three subsets of TECs in mice as well. We also detected two distinct TEC-free areas in the subcapsular cortex and in the medulla. Rat dendritic cells in the cortex were MHCII+CD103+ but negative for TEC markers, including CD205. Those in the medulla were MHCII+CD103+ and CD205+ cells were found only in the TEC-free area.Both rats and mice have three TEC subsets with similar phenotypes that can be identified using known markers and new monoclonal antibodies. These findings will facilitate further analysis of TEC subsets and DCs and help to define their roles in thymic selection and in pathological states such as autoimmune disorders.http://europepmc.org/articles/PMC4204869?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yasushi Sawanobori
Hiashi Ueta
Christine D Dijkstra
Chae Gyu Park
Motoyasu Satou
Yusuke Kitazawa
Kenjiro Matsuno
spellingShingle Yasushi Sawanobori
Hiashi Ueta
Christine D Dijkstra
Chae Gyu Park
Motoyasu Satou
Yusuke Kitazawa
Kenjiro Matsuno
Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
PLoS ONE
author_facet Yasushi Sawanobori
Hiashi Ueta
Christine D Dijkstra
Chae Gyu Park
Motoyasu Satou
Yusuke Kitazawa
Kenjiro Matsuno
author_sort Yasushi Sawanobori
title Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
title_short Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
title_full Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
title_fullStr Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
title_full_unstemmed Three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
title_sort three distinct subsets of thymic epithelial cells in rats and mice defined by novel antibodies.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Thymic epithelial cells (TECs) are thought to play an essential role in T cell development and have been detected mainly in mice using lectin binding and antibodies to keratins. Our aim in the present study was to create a precise map of rat TECs using antibodies to putative markers and novel monoclonal antibodies (i.e., ED 18/19/21 and anti-CD205 antibodies) and compare it with a map from mouse counterparts and that of rat thymic dendritic cells.Rat TECs were subdivided on the basis of phenotype into three subsets; ED18+ED19+/-keratin 5 (K5)+K8+CD205+ class II MHC (MHCII)+ cortical TECs (cTECs), ED18+ED21-K5-K8+Ulex europaeus lectin 1 (UEA-1)+CD205- medullary TECs (mTEC1s), and ED18+ED21+K5+K8dullUEA-1-CD205- medullary TECs (mTEC2s). Thymic nurse cells were defined in cytosmears as an ED18+ED19+/-K5+K8+ subset of cTECs. mTEC1s preferentially expressed MHCII, claudin-3, claudin-4, and autoimmune regulator (AIRE). Use of ED18 and ED21 antibodies revealed three subsets of TECs in mice as well. We also detected two distinct TEC-free areas in the subcapsular cortex and in the medulla. Rat dendritic cells in the cortex were MHCII+CD103+ but negative for TEC markers, including CD205. Those in the medulla were MHCII+CD103+ and CD205+ cells were found only in the TEC-free area.Both rats and mice have three TEC subsets with similar phenotypes that can be identified using known markers and new monoclonal antibodies. These findings will facilitate further analysis of TEC subsets and DCs and help to define their roles in thymic selection and in pathological states such as autoimmune disorders.
url http://europepmc.org/articles/PMC4204869?pdf=render
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