Promiscuous gene expression and the developmental dynamics of medullary thymic epithelial cells

被引:111
作者
Gaebler, Jana [1 ]
Arnold, Janna [1 ]
Kyewski, Bruno [1 ]
机构
[1] German Canc Res Ctr, Div Dev Immunol, Tumor Immunol Program, Heidelberg, Germany
关键词
central tolerance; promiscuous gene expression; thymic epithelial cells;
D O I
10.1002/eji.200737131
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Thymic epithelial cells (TEC) form the structural and functional microenvironment necessary for the establishment and quality control of the T cell repertoire. In addition, they provide an ectopic source of numerous tissue-restricted antigens (TRA), a feature called promiscuous gene expression (pGE). How the regulation of pGE is related to the cell biology of TEC subset(s), e.g. their turnover and developmental interrelationship is still poorly understood. The observation that pGE is foremost a property of phenotypically and functionally mature medullary TEC (mTEC) implies that the full implementation of pGE is contingent on mTEC differentiation. Here, we show that the emergence of TEC subsets and pGE is tightly correlated during ontogeny and we provide evidence that mature CD80(Pos) mTEC develop from an immature CD80(neg) subset. This differentiation step proceeds. continuously in the postnatal thymus. While mature mTEC turnover in 2 to 3 weeks, immature mTEC encompass a smaller cycling and a larger non-cycling pool. The latter might serve as a reservoir of committed precursors, which sustain this renewal process. Our data document that mTEC represent a highly dynamic cell population, and they imply that the availability and display of TRA in the thymus undergoes a perpetual temporal and spatial reorganization.
引用
收藏
页码:3363 / 3372
页数:10
相关论文
共 39 条
[1]   Establishment and functioning of intrathymic microenvironments [J].
Anderson, G ;
Jenkinson, WE ;
Jones, T ;
Parnell, SM ;
Kinsella, FAM ;
White, AJ ;
Pongrac'z, JE ;
Rossi, SW ;
Jenkinson, EJ .
IMMUNOLOGICAL REVIEWS, 2006, 209 :10-27
[2]   Formation of a functional thymus initiated by a postnatal epithelial progenitor cell [J].
Bleul, Conrad C. ;
Corbeaux, Tatiana ;
Reuter, Alexander ;
Fisch, Paul ;
Moenting, Juergen Schulte ;
Boehm, Thomas .
NATURE, 2006, 441 (7096) :992-996
[3]   Thymic medullary epithelial cell differentiation thymocyte emigration, and the control of autoimmunity require lymphoepithelial cross talk via LTβR [J].
Boehm, T ;
Scheu, S ;
Pfeffer, K ;
Bleul, CC .
JOURNAL OF EXPERIMENTAL MEDICINE, 2003, 198 (05) :757-769
[4]   Onset of promiscuous gene expression in murine fetal thymus organ culture [J].
Cardoso, Renato Sousa ;
Magalhaes, Danielle A. R. ;
Baiao, Ana Maria T. ;
Junta, Cristina Moraes ;
Macedo, Claudia ;
Marques, Marcia M. C. ;
Sakamoto-Hojo, Elza Tiemi ;
Donadi, Eduardo A. ;
Passos, Geraldo A. S. .
IMMUNOLOGY, 2006, 119 (03) :369-375
[5]   Characterization of a novel EGFP reporter mouse to monitor Cre recombination as demonstrated by a Tie2 Cre mouse line [J].
Constien, R ;
Forde, A ;
Liliensiek, B ;
Gröne, HJ ;
Nawroth, P ;
Hämmerling, G ;
Arnold, B .
GENESIS, 2001, 30 (01) :36-44
[6]   Linking signalling pathways, thymic stroma integrity and autoimmunity [J].
Derbinski, J ;
Kyewski, B .
TRENDS IN IMMUNOLOGY, 2005, 26 (10) :503-506
[7]   Promiscuous gene expression in thymic epithelial cells is regulated at multiple levels [J].
Derbinski, J ;
Gäbler, J ;
Brors, B ;
Tierling, S ;
Jonnakuty, S ;
Hergenhahn, M ;
Peltonen, L ;
Walter, J ;
Kyewski, B .
JOURNAL OF EXPERIMENTAL MEDICINE, 2005, 202 (01) :33-45
[8]  
Derbinski J, 2001, NAT IMMUNOL, V2, P1032, DOI 10.1038/ni723
[9]   EPITHELIAL HETEROGENEITY IN THE MURINE THYMUS - A CELL-SURFACE GLYCOPROTEIN EXPRESSED BY SUBCAPSULAR AND MEDULLARY EPITHELIUM [J].
FARR, A ;
NELSON, A ;
TRUEX, J ;
HOSIER, S .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1991, 39 (05) :645-653
[10]  
FARR AG, 1985, J IMMUNOL, V134, P2971