Wnt signaling in the thymus is regulated by differential expression of intracellular signaling molecules

被引:94
作者
Weerkamp, F
Baert, MRM
Naber, BAE
Koster, EEL
de Haas, EFE
Atkuri, KR
van Dongen, JJM
Herzenberg, LA
Staal, FJT [1 ]
机构
[1] Univ Med Ctr Rotterdam, Erasmus MC, Dept Immunol, NL-3015 GE Rotterdam, Netherlands
[2] Stanford Univ, Sch Med, Dept Genet, Stanford, CA 94305 USA
关键词
double negative cells; T cell development; beta-catenin; Dickkopf;
D O I
10.1073/pnas.0511299103
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Wnt signaling is essential for T cell development in the thymus, but the stages in which it occurs and the molecular mechanisms underlying Wnt responsiveness have remained elusive. Here we examined Wnt signaling activity in both human and murine thymocyte populations by determining beta-catenin levels, Tcf-reporter activation and expression of Wnt-target genes. We demonstrate that Wnt signaling occurs in all thymocyte subsets, including the more mature populations, but most prominently in the double negative (DN) subsets. This differential sensitivity to Wnt signaling was not caused by differences in the presence of Writs or Writ receptors, as these appeared to be expressed at comparable levels in all thymocyte subsets. Rather, it can be explained by high expression of activating signaling molecules in DN cells, e.g., beta-catenin, plakoglobin, and long forms of Tcf-1, and by low levels of inhibitory molecules. By blocking Wnt signaling from the earliest stage onwards using overexpression of Dickkopf, we show that inhibition of the canonical Writ pathway blocks development at the most immature DN1 stage. Thus, responsiveness to developmental signals can be regulated by differential expression of intracellular mediators rather than by abundance of receptors or ligands.
引用
收藏
页码:3322 / 3326
页数:5
相关论文
共 27 条
[1]   The chromatin remodelling factor Brg-1 interacts with β-catenin to promote target gene activation [J].
Barker, N ;
Hurlstone, A ;
Musisi, H ;
Miles, A ;
Bienz, M ;
Clevers, H .
EMBO JOURNAL, 2001, 20 (17) :4935-4943
[2]   Functional interaction of beta-catenin with the transcription factor LEF-1 [J].
Behrens, J ;
vonKries, JP ;
Kuhl, M ;
Bruhn, L ;
Wedlich, D ;
Grosschedl, R ;
Birchmeier, W .
NATURE, 1996, 382 (6592) :638-642
[3]   THE HUMAN TCF-1 GENE ENCODES A NUCLEAR DNA-BINDING PROTEIN UNIQUELY EXPRESSED IN NORMAL AND NEOPLASTIC T-LINEAGE LYMPHOCYTES [J].
CASTROP, J ;
VANWICHEN, D ;
KOOMANSBITTER, M ;
VANDEWETERING, M ;
DEWEGER, R ;
VANDONGEN, J ;
CLEVERS, H .
BLOOD, 1995, 86 (08) :3050-3059
[4]   β-catenin is dispensable for hematopoiesis and lymphopoiesis [J].
Cobas, M ;
Wilson, A ;
Ernst, B ;
Mancini, JC ;
MacDonald, HR ;
Kemler, R ;
Radtke, F .
JOURNAL OF EXPERIMENTAL MEDICINE, 2004, 199 (02) :221-229
[5]   New insights on human T cell development by quantitative T cell receptor gene rearrangement studies and gene expression profiling [J].
Dik, WA ;
Pike-Overzet, K ;
Weerkamp, F ;
de Ridder, D ;
de Haas, EFE ;
Baert, MRM ;
van der Spek, P ;
Koster, EEL ;
Reinders, MJT ;
van Dongen, JJM ;
Langerak, AW ;
Staal, FJT .
JOURNAL OF EXPERIMENTAL MEDICINE, 2005, 201 (11) :1715-1723
[6]   A third-generation lentivirus vector with a conditional packaging system [J].
Dull, T ;
Zufferey, R ;
Kelly, M ;
Mandel, RJ ;
Nguyen, M ;
Trono, D ;
Naldini, L .
JOURNAL OF VIROLOGY, 1998, 72 (11) :8463-8471
[7]   Somatic activation of β-catenin bypasses pre-TCR signaling and TCR selection in thymocyte development [J].
Gounari, F ;
Aifantis, I ;
Khazaie, K ;
Hoeflinger, S ;
Harada, N ;
Taketo, MM ;
von Boehmer, H .
NATURE IMMUNOLOGY, 2001, 2 (09) :863-869
[8]   The β-catenin-TCF-I pathway ensures CD4+CD8+ thymocyte survival [J].
Ioannidis, V ;
Beermann, F ;
Clevers, H ;
Held, W .
NATURE IMMUNOLOGY, 2001, 2 (08) :691-697
[9]   Plakoglobin (γ-catenin) has TCF/LEF family-dependent transcriptional activity in β-catenin-deficient cell line [J].
Maeda, O ;
Usami, N ;
Kondo, M ;
Takahashi, M ;
Goto, H ;
Shimokata, K ;
Kusugami, K ;
Sekido, Y .
ONCOGENE, 2004, 23 (04) :964-972
[10]   LDL-receptor-related protein 6 is a receptor for Dickkopf proteins [J].
Mao, BY ;
Wu, W ;
Li, Y ;
Hoppe, D ;
Stannek, P ;
Glinka, A ;
Niehrs, C .
NATURE, 2001, 411 (6835) :321-325