Access the full text.
Sign up today, get DeepDyve free for 14 days.
J. Marie, D. Liggitt, A. Rudensky (2006)
Cellular mechanisms of fatal early-onset autoimmunity in mice with the T cell-specific targeting of transforming growth factor-beta receptor.Immunity, 25 3
Craig Maynard, R. Hatton, Whitney Helms, J. Oliver, C. Stephensen, C. Weaver (2009)
Contrasting roles for all-trans retinoic acid in TGF-β–mediated induction of Foxp3 and Il10 genes in developing regulatory T cellsThe Journal of Experimental Medicine, 206
M. Gavin, J. Rasmussen, J. Fontenot, V. Vasta, V. Manganiello, J. Beavo, A. Rudensky (2007)
Foxp3-dependent programme of regulatory T-cell differentiationNature, 445
Y. Tone, K. Furuuchi, Yoshitsugu Kojima, M. Tykocinski, M. Greene, M. Tone (2008)
Smad3 and NFAT cooperate to induce Foxp3 expression through its enhancerNature Immunology, 9
R. Wildin, F. Ramsdell, J. Peake, F. Faravelli, J. Casanova, N. Buist, E. Levy-Lahad, M. Mazzella, O. Goulet, L. Perroni, F. Bricarelli, G. Byrne, M. Mceuen, S. Proll, M. Appleby, M. Brunkow (2001)
X-linked neonatal diabetes mellitus, enteropathy and endocrinopathy syndrome is the human equivalent of mouse scurfyNature Genetics, 27
S. Xiao, Hulin Jin, T. Korn, S. Liu, M. Oukka, B. Lim, V. Kuchroo (2008)
Retinoic Acid Increases Foxp3+ Regulatory T Cells and Inhibits Development of Th17 Cells by Enhancing TGF-β-Driven Smad3 Signaling and Inhibiting IL-6 and IL-23 Receptor Expression1The Journal of Immunology, 181
M. Vu, Xiang Xiao, Wenda Gao, N. Degauque, Ming Chen, A. Kroemer, N. Killeen, N. Ishii, X. Li (2007)
OX40 costimulation turns off Foxp3+ Tregs.Blood, 110 7
S. Floess, Jennifer Freyer, C. Siewert, U. Baron, S. Olek, J. Polansky, Kerstin Schlawe, Hyun-Dong Chang, T. Bopp, E. Schmitt, S. Klein-Hessling, E. Serfling, A. Hamann, J. Huehn (2007)
Epigenetic Control of the foxp3 Locus in Regulatory T CellsPLoS Biology, 5
J. Wong, R. Obst, M. Correia-Neves, Grigoriy Losyev, D. Mathis, C. Benoist (2007)
Adaptation of TCR Repertoires to Self-Peptides in Regulatory and Nonregulatory CD4+ T Cells1The Journal of Immunology, 178
S. Zheng, Ju Wang, W. Stohl, K. Kim, J. Gray, D. Horwitz (2006)
TGF-β Requires CTLA-4 Early after T Cell Activation to Induce FoxP3 and Generate Adaptive CD4+CD25+ Regulatory Cells1The Journal of Immunology, 176
Danyvid Olivares-Villagómez, Yijie Wang, J. Lafaille (1998)
Regulatory Cd4 Ϩ T Cells Expressing Endogenous T Cell Receptor Chains Protect Myelin Basic Protein–specific Transgenic Mice from Spontaneous Autoimmune Encephalomyelitis
S. Sauer, L. Bruno, Arnulf Hertweck, David Finlay, M. Leleu, Mikhail Spivakov, Z. Knight, B. Cobb, D. Cantrell, Eric O'Connor, K. Shokat, A. Fisher, M. Merkenschlager (2008)
T cell receptor signaling controls Foxp3 expression via PI3K, Akt, and mTORProceedings of the National Academy of Sciences, 105
E. Shevach (2009)
Mechanisms of foxp3+ T regulatory cell-mediated suppression.Immunity, 30 5
Todd Davidson, R. DiPaolo, J. Andersson, E. Shevach (2007)
Cutting Edge: IL-2 Is Essential for TGF-β-Mediated Induction of Foxp3+ T Regulatory CellsThe Journal of Immunology, 178
S. Allan, L. Passerini, R. Bacchetta, N. Crellin, Minyue Dai, P. Orban, S. Ziegler, M. Roncarolo, M. Levings (2005)
The role of 2 FOXP3 isoforms in the generation of human CD4+ Tregs.The Journal of clinical investigation, 115 11
C. Lio, C. Hsieh (2008)
A two-step process for thymic regulatory T cell development.Immunity, 28 1
R. Khattri, T. Cox, Sue-Ann Yasayko, F. Ramsdell (2003)
An essential role for Scurfin in CD4+CD25+ T regulatory cellsNature Immunology, 4
Jinfang Zhu, Todd Davidson, Gang Wei, Dragana Jankovic, Kairong Cui, Dustin Schones, Liying Guo, K. Zhao, E. Shevach, W. Paul (2009)
Down-regulation of Gfi-1 expression by TGF-β is important for differentiation of Th17 and CD103+ inducible regulatory T cellsThe Journal of Experimental Medicine, 206
S. Zheng, Ju Wang, J. Gray, H. Soucier, D. Horwitz (2004)
Natural and Induced CD4+CD25+ Cells Educate CD4+CD25− Cells to Develop Suppressive Activity: The Role of IL-2, TGF-β, and IL-101The Journal of Immunology, 172
H. Santen, C. Benoist, D. Mathis (2004)
Number of T Reg Cells That Differentiate Does Not Increase upon Encounter of Agonist Ligand on Thymic Epithelial CellsThe Journal of Experimental Medicine, 200
Wen Lin, Dipica Haribhai, Lance Relland, Nga Truong, M. Carlson, C. Williams, T. Chatila (2007)
Regulatory T cell development in the absence of functional Foxp3Nature Immunology, 8
P. Wong, G. Barton, K. Forbush, A. Rudensky (2001)
Dynamic Tuning of T Cell Reactivity by Self-Peptide–Major Histocompatibility Complex LigandsThe Journal of Experimental Medicine, 193
R. Selvaraj, T. Geiger (2007)
A Kinetic and Dynamic Analysis of Foxp3 Induced in T Cells by TGF-β1The Journal of Immunology, 178
Sonal Gupta, S. Manicassamy, C. Vasu, Anvita Kumar, W. Shang, Zuoming Sun (2008)
Differential requirement of PKC-theta in the development and function of natural regulatory T cells.Molecular immunology, 46 2
M. Burchill, Jianying Yang, K. Vang, James Moon, H. Chu, Chan-Wang Lio, Amanda Vegoe, C. Hsieh, Marc Jenkins, M. Farrar (2008)
Linked T cell receptor and cytokine signaling govern the development of the regulatory T cell repertoire.Immunity, 28 1
Y. Nishizuka, T. Sakakura (1970)
Thymus and reproduction: sex-linked dysgenesia of the gonad after neonatal thymectomy in mice.Science, 166 3906
Wanjun Chen, W. Jin, N. Hardegen, K. Lei, Li Li, N. Marinos, G. McGrady, S. Wahl (2003)
Conversion of Peripheral CD4+CD25− Naive T Cells to CD4+CD25+ Regulatory T Cells by TGF-β Induction of Transcription Factor Foxp3The Journal of Experimental Medicine, 198
J. Kim, A. Rudensky (2006)
The role of the transcription factor Foxp3 in the development of regulatory T cellsImmunological Reviews, 212
Azzam (2001)
Fine tuning of TCR signaling by CD5J. Immunol., 166
J. Bautista, C. Lio, S. Lathrop, K. Forbush, Yuqiong Liang, Jingqin Luo, A. Rudensky, C. Hsieh (2009)
Intraclonal competition limits the fate determination of regulatory T cells in the thymusNature Immunology, 10
J. Marie, J. Letterio, M. Gavin, A. Rudensky (2005)
TGF-β1 maintains suppressor function and Foxp3 expression in CD4+CD25+ regulatory T cellsThe Journal of Experimental Medicine, 201
I. Apostolou, A. Sarukhan, L. Klein, H. Boehmer (2002)
Origin of regulatory T cells with known specificity for antigenNature Immunology, 3
N. Komatsu, M. Mariotti-Ferrandiz, Ying Wang, B. Malissen, H. Waldmann, S. Hori (2009)
Heterogeneity of natural Foxp3+ T cells: A committed regulatory T-cell lineage and an uncommitted minor population retaining plasticityProceedings of the National Academy of Sciences, 106
Steven Josefowicz, Christopher Wilson, A. Rudensky (2009)
Cutting Edge: TCR Stimulation Is Sufficient for Induction of Foxp3 Expression in the Absence of DNA Methyltransferase 11The Journal of Immunology, 182
M. Lafaille, J. Lafaille (2009)
Natural and adaptive foxp3+ regulatory T cells: more of the same or a division of labor?Immunity, 30 5
S. Sakaguchi, Toshitada Takahashi, Y. Nishizuka, E. Boyse, Sloan-Kettering Center, York Th, A. Tl (1982)
Study on cellular events in postthymectomy autoimmune oophoritis in mice. I. Requirement of Lyt-1 effector cells for oocytes damage after adoptive transferThe Journal of Experimental Medicine, 156
L. Molinero, Jianying Yang, T. Gajewski, C. Abraham, M. Farrar, M. Alegre (2009)
CARMA1 Controls an Early Checkpoint in the Thymic Development of FoxP3+ Regulatory T Cells1The Journal of Immunology, 182
D. Horwitz, S. Zheng, Juhua Wang, J. Gray (2008)
Critical role of IL‐2 and TGF‐β in generation, function and stabilization of Foxp3+CD4+ TregEuropean Journal of Immunology, 38
P. Ehrlich, C. Bolduan, Howard (2009)
Collected studies on immunity
J. Fontenot, M. Gavin, A. Rudensky (2003)
Foxp3 programs the development and function of CD4+CD25+ regulatory T cellsNature Immunology, 4
J. Hill, J. Hall, Cheng-Ming Sun, Qi Cai, N. Ghyselinck, P. Chambon, Y. Belkaid, D. Mathis, C. Benoist (2008)
Retinoic acid enhances Foxp3 induction indirectly by relieving inhibition from CD4+CD44hi Cells.Immunity, 29 5
Y. Belkaid, G. Oldenhove (2008)
Tuning microenvironments: induction of regulatory T cells by dendritic cells.Immunity, 29 3
J. Carter, G. Calabrese, M. Naganuma, U. Lorenz (2005)
Deficiency of the Src Homology Region 2 Domain-Containing Phosphatase 1 (SHP-1) Causes Enrichment of CD4+CD25+ Regulatory T Cells1The Journal of Immunology, 174
S. Haxhinasto, D. Mathis, C. Benoist (2008)
The AKT–mTOR axis regulates de novo differentiation of CD4+Foxp3+ cellsThe Journal of Experimental Medicine, 205
A. Singer, S. Adoro, Jung-Hyun Park (2008)
Lineage fate and intense debate: myths, models and mechanisms of CD4- versus CD8-lineage choiceNature Reviews Immunology, 8
Ramesh Selvaraj, Terrence Geiger (2007)
A kinetic and dynamic analysis of Foxp3 induced in T cells by TGF-beta.Journal of immunology, 178 12
U. Baron, S. Floess, Georg Wieczorek, Katrin Baumann, A. Grützkau, Jun Dong, A. Thiel, Tina Boeld, P. Hoffmann, M. Edinger, Ivana Türbachova, A. Hamann, S. Olek, J. Huehn (2007)
DNA demethylation in the human FOXP3 locus discriminates regulatory T cells from activated FOXP3+ conventional T cellsEuropean Journal of Immunology, 37
J. Hall, N. Bouladoux, Cheng-Ming Sun, E. Wohlfert, R. Blank, Qing Zhu, M. Grigg, J. Berzofsky, Y. Belkaid (2008)
Commensal DNA limits regulatory T cell conversion and is a natural adjuvant of intestinal immune responses.Immunity, 29 4
A. Laurence, C. Tato, Todd Davidson, Y. Kanno, Zhi Chen, Zhengju Yao, R. Blank, F. Meylan, R. Siegel, L. Hennighausen, E. Shevach, J. O’Shea (2007)
Interleukin-2 signaling via STAT5 constrains T helper 17 cell generation.Immunity, 26 3
T. So, M. Croft (2007)
Cutting Edge: OX40 Inhibits TGF-β- and Antigen-Driven Conversion of Naive CD4 T Cells into CD25+Foxp3+ T cells1The Journal of Immunology, 179
M. Burchill, Jianying Yang, K. Vang, M. Farrar (2007)
Interleukin-2 receptor signaling in regulatory T cell development and homeostasis.Immunology letters, 114 1
K. Kawahata, Y. Misaki, Michiko Yamauchi, S. Tsunekawa, K. Setoguchi, J. Miyazaki, Kazuhiko Yamamoto (2002)
Generation of CD4+CD25+ Regulatory T Cells from Autoreactive T Cells Simultaneously with Their Negative Selection in the Thymus and from Nonautoreactive T Cells by Endogenous TCR Expression1The Journal of Immunology, 168
T. Chatila, F. Blaeser, N. Ho, H. Lederman, Constantine Voulgaropoulos, C. Helms, A. Bowcock (2000)
JM2, encoding a fork head-related protein, is mutated in X-linked autoimmunity-allergic disregulation syndrome.The Journal of clinical investigation, 106 12
M. Schmidt-Supprian, Jane Tian, E. Grant, M. Pasparakis, R. Maehr, H. Ovaa, H. Ploegh, A. Coyle, K. Rajewsky (2004)
Differential dependence of CD4+CD25+ regulatory and natural killer-like T cells on signals leading to NF-kappaB activation.Proceedings of the National Academy of Sciences of the United States of America, 101 13
M. Benson, Karina Pino-Lagos, M. Rosemblatt, R. Noelle (2007)
All-trans retinoic acid mediates enhanced T reg cell growth, differentiation, and gut homing in the face of high levels of co-stimulationThe Journal of Experimental Medicine, 204
B. Medoff, Barry Sandall, Aimee Landry, Kiyotaka Nagahama, A. Mizoguchi, A. Luster, R. Xavier (2009)
Differential requirement for CARMA1 in agonist‐selected T‐cell developmentEuropean Journal of Immunology, 39
F. Ruscetti (1984)
Biology of interleukin-2Survey of Immunologic Research, 3
X. Tai, M. Cowan, L. Feigenbaum, A. Singer (2005)
CD28 costimulation of developing thymocytes induces Foxp3 expression and regulatory T cell differentiation independently of interleukin 2Nature Immunology, 6
M. Burchill, Christine Goetz, Martin Prlic, Jennifer O’Neil, Ian Harmon, S. Bensinger, L. Turka, P. Brennan, S. Jameson, M. Farrar (2003)
Distinct Effects of STAT5 Activation on CD4+ and CD8+ T Cell Homeostasis: Development of CD4+CD25+ Regulatory T Cells versus CD8+ Memory T Cells 1The Journal of Immunology, 171
Y. Wan, R. Flavell (2007)
Regulatory T-cell functions are subverted and converted owing to attenuated Foxp3 expressionNature, 445
C. Hsieh, Yuqiong Liang, A. Tyznik, S. Self, D. Liggitt, A. Rudensky (2004)
Recognition of the peripheral self by naturally arising CD25+ CD4+ T cell receptors.Immunity, 21 2
L. Williams, A. Rudensky (2007)
Maintenance of the Foxp3-dependent developmental program in mature regulatory T cells requires continued expression of Foxp3Nature Immunology, 8
M. Barnes, P. Krebs, N. Harris, Celine Eidenschenk, R. González‐Quintial, C. Arnold, K. Crozat, S. Sovath, E. Moresco, A. Theofilopoulos, B. Beutler, K. Hoebe (2009)
Commitment to the Regulatory T Cell Lineage Requires CARMA1 in the Thymus but Not in the PeripheryPLoS Biology, 7
Yongzhong Liu, Pin Zhang, Jun Li, A. Kulkarni, S. Perruche, Wanjun Chen (2008)
A critical function for TGF-β signaling in the development of natural CD4+CD25+Foxp3+ regulatory T cellsNature Immunology, 9
(2002)
Supporting Online Material
(2009)
signaling by CD5
S. Lathrop, Nicole Santacruz, D. Pham, Jingqin Luo, C. Hsieh (2008)
Antigen-specific peripheral shaping of the natural regulatory T cell populationThe Journal of Experimental Medicine, 205
M. Jordan, A. Boesteanu, A. Reed, Andria Petrone, Andrea Holenbeck, M. Lerman, A. Naji, A. Caton (2001)
Thymic selection of CD4+CD25+ regulatory T cells induced by an agonist self-peptideNature Immunology, 2
D. Tran, H. Ramsey, E. Shevach (2007)
Induction of FOXP3 expression in naive human CD4+FOXP3 T cells by T-cell receptor stimulation is transforming growth factor-beta dependent but does not confer a regulatory phenotype.Blood, 110 8
C. Hsieh, Ye Zheng, Yuqiong Liang, J. Fontenot, A. Rudensky (2006)
An intersection between the self-reactive regulatory and nonregulatory T cell receptor repertoiresNature Immunology, 7
S. Ziegler (2006)
FOXP3: of mice and men.Annual review of immunology, 24
S. Sakaguchi, N. Sakaguchi, M. Asano, M. Itoh, M. Toda (1995)
Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases.Journal of immunology, 155 3
Liang Zhou, M. Chong, D. Littman (2009)
Plasticity of CD4+ T cell lineage differentiation.Immunity, 30 5
S. Germain, G. Sacks, Soorana, I. Sargent, C. Redman (2007)
Systemic inflammatory priming in normal pregnancy and preeclampsia: The role of circulating syncytiotrophoblast microparticles (Journal of Immunology (2007) 178, (5949-5956))Journal of Immunology, 179
J. Fontenot, J. Rasmussen, M. Gavin, A. Rudensky (2005)
A function for interleukin 2 in Foxp3-expressing regulatory T cellsNature Immunology, 6
R. Germain (2002)
T-cell development and the CD4–CD8 lineage decisionNature Reviews Immunology, 2
Zhibin Chen, C. Benoist, D. Mathis (2005)
How defects in central tolerance impinge on a deficiency in regulatory T cells.Proceedings of the National Academy of Sciences of the United States of America, 102 41
A. Bonomo, P. Kehn, E. Payer, L. Rizzo, A. Cheever, E. Shevach (1995)
Pathogenesis of post-thymectomy autoimmunity. Role of syngeneic MLR-reactive T cells.Journal of immunology, 154 12
Marc Gavin, Michael Bevan (1995)
Increased peptide promiscuity provides a rationale for the lack of N regions in the neonatal T cell repertoire.Immunity, 3 6
M. Lafaille, N. Kutchukhidze, Shiqian Shen, Yi Ding, H. Yee, J. Lafaille (2008)
Adaptive Foxp3+ regulatory T cell-dependent and -independent control of allergic inflammation.Immunity, 29 1
Danyvid Olivares-Villagómez, Yijie Wang, J. Lafaille (1998)
Regulatory CD4+ T Cells Expressing Endogenous T Cell Receptor Chains Protect Myelin Basic Protein–specific Transgenic Mice from Spontaneous Autoimmune EncephalomyelitisThe Journal of Experimental Medicine, 188
S. Sriskantharajah, M. Belich, S. Papoutsopoulou, J. Janzen, V. Tybulewicz, B. Seddon, S. Ley (2009)
Proteolysis of NF-κB1 p105 is essential for T cell antigen receptor–induced proliferationNature Immunology, 10
R. Pacholczyk, Hanna Ignatowicz, P. Kraj, L. Ignatowicz (2006)
Origin and T cell receptor diversity of Foxp3+CD4+CD25+ T cells.Immunity, 25 2
J. Coombes, K. Siddiqui, C. Arancibia-Cárcamo, J. Hall, Cheng-Ming Sun, Y. Belkaid, F. Powrie (2007)
A functionally specialized population of mucosal CD103+ DCs induces Foxp3+ regulatory T cells via a TGF-β– and retinoic acid–dependent mechanismThe Journal of Experimental Medicine, 204
Jun Wang, A. Ioan-Facsinay, Ellen I. H. van der Voort, T. Huizinga, R. Toes (2007)
Transient expression of FOXP3 in human activated nonregulatory CD4+ T cellsEuropean Journal of Immunology, 37
J. Fontenot, James Dooley, A. Farr, A. Rudensky (2005)
Developmental regulation of Foxp3 expression during ontogenyThe Journal of Experimental Medicine, 202
Zhengju Yao, Y. Kanno, M. Kerenyi, G. Stephens, L. Durant, W. Watford, A. Laurence, G. Robinson, E. Shevach, R. Moriggl, L. Hennighausen, Changyou Wu, J. O’Shea (2007)
Nonredundant roles for Stat5a/b in directly regulating Foxp3.Blood, 109 10
M. Gavin, T. Torgerson, Evan Houston, Paul Deroos, W. Ho, A. Stray-Pedersen, E. Ocheltree, P. Greenberg, H. Ochs, A. Rudensky (2006)
Single-cell analysis of normal and FOXP3-mutant human T cells: FOXP3 expression without regulatory T cell development.Proceedings of the National Academy of Sciences of the United States of America, 103 17
(2006)
Molecular mechanisms underlying FOXP3 induction in human T cells
Hyoung-Pyo Kim, W. Leonard (2007)
CREB/ATF-dependent T cell receptor–induced FoxP3 gene expression: a role for DNA methylationThe Journal of Experimental Medicine, 204
M. Burchill, Jianying Yang, C. Vogtenhuber, B. Blazar, M. Farrar (2007)
IL-2 Receptor β-Dependent STAT5 Activation Is Required for the Development of Foxp3+ Regulatory T Cells1The Journal of Immunology, 178
J. Polansky, Karsten Kretschmer, Jennifer Freyer, S. Floess, A. Garbe, U. Baron, S. Olek, A. Hamann, H. Boehmer, J. Huehn (2008)
DNA methylation controls Foxp3 gene expressionEuropean Journal of Immunology, 38
E. Shevach, D. Tran, Todd Davidson, J. Andersson (2008)
The critical contribution of TGF‐β to the induction of Foxp3 expression and regulatory T cell functionEuropean Journal of Immunology, 38
M. Brunkow, E. Jeffery, K. Hjerrild, B. Paeper, L. Clark, Sue-Ann Yasayko, J. Wilkinson, D. Galas, S. Ziegler, F. Ramsdell (2001)
Disruption of a new forkhead/winged-helix protein, scurfin, results in the fatal lymphoproliferative disorder of the scurfy mouseNature Genetics, 27
K. Vang, Jianying Yang, Shawn Mahmud, M. Burchill, Amanda Vegoe, M. Farrar (2008)
IL-2, -7, and -15, but Not Thymic Stromal Lymphopoeitin, Redundantly Govern CD4+Foxp3+ Regulatory T Cell Development1The Journal of Immunology, 181
K. Elias, A. Laurence, Todd Davidson, G. Stephens, Y. Kanno, E. Shevach, J. O’Shea (2008)
Retinoic acid inhibits Th17 polarization and enhances FoxP3 expression through a Stat-3/Stat-5 independent signaling pathway.Blood, 111 3
M. Morgan, J. Bilsen, A. Bakker, B. Heemskerk, M. Schilham, F. Hartgers, B. Elferink, L. Zanden, R. Vries, T. Huizinga, T. Ottenhoff, R. Toes (2005)
Expression of FOXP3 mRNA is not confined to CD4+CD25+ T regulatory cells in humans.Human immunology, 66 1
Ming Li, Shomyseh Sanjabi, R. Flavell (2006)
Transforming Growth Factor-β Controls Development, Homeostasis, and Tolerance of T Cells by Regulatory T Cell-Dependent and -Independent MechanismsImmunity, 25
Karsten Kretschmer, I. Apostolou, D. Hawiger, K. Khazaie, M. Nussenzweig, H. Boehmer (2005)
Inducing and expanding regulatory T cell populations by foreign antigenNature Immunology, 6
H. Ohki, C. Martin, C. Corbel, M. Coltey, N. Douarin (1987)
Tolerance induced by thymic epithelial grafts in birds.Science, 237 4818
J. Fontenot, M. Gavin, A. Rudensky (2003)
Foxp 3 programs the development and function of CD 4 + CD 25 + regulatory T cells
J. Fontenot, J. Rasmussen, L. Williams, James Dooley, A. Farr, A. Rudensky (2005)
Regulatory T cell lineage specification by the forkhead transcription factor foxp3.Immunity, 22 3
J. Wong, D. Mathis, C. Benoist (2007)
TCR-based lineage tracing: no evidence for conversion of conventional into regulatory T cells in response to a natural self-antigen in pancreatic isletsThe Journal of Experimental Medicine, 204
Oliver Annacker, J. Coombes, V. Malmstrom, H. Uhlig, T. Bourne, B. Johansson-Lindbom, W. Agace, C. Parker, F. Powrie (2005)
Essential role for CD103 in the T cell–mediated regulation of experimental colitisThe Journal of Experimental Medicine, 202
M. Asano, M. Toda, N. Sakaguchi, S. Sakaguchi (1996)
Autoimmune disease as a consequence of developmental abnormality of a T cell subpopulationThe Journal of Experimental Medicine, 184
Karsten Kretschmer, T. Heng, H. Boehmer (2006)
De novo production of antigen-specific suppressor cells in vivoNature Protocols, 1
Cheng-Ming Sun, J. Hall, J. Hall, R. Blank, N. Bouladoux, M. Oukka, J. Mora, Y. Belkaid (2007)
Small intestine lamina propria dendritic cells promote de novo generation of Foxp3 T reg cells via retinoic acidThe Journal of Experimental Medicine, 204
E. Bettelli, T. Korn, M. Oukka, V. Kuchroo (2008)
Induction and effector functions of TH17 cellsNature, 453
R. Pacholczyk, J. Kern (2008)
The T‐cell receptor repertoire of regulatory T cellsImmunology, 125
L. Walker, A. Chodos, M. Eggena, H. Dooms, A. Abbas (2003)
Antigen-dependent Proliferation of CD4+ CD25+ Regulatory T Cells In VivoThe Journal of Experimental Medicine, 198
B. Salomon, D. Lenschow, L. Rhee, N. Ashourian, Bhagarith Singh, A. Sharpe, J. Bluestone (2000)
B7/CD28 costimulation is essential for the homeostasis of the CD4+CD25+ immunoregulatory T cells that control autoimmune diabetes.Immunity, 12 4
C. Bennett, J. Christie, F. Ramsdell, M. Brunkow, P. Ferguson, L. Whitesell, T. Kelly, F. Saulsbury, P. Chance, H. Ochs (2001)
The immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome (IPEX) is caused by mutations of FOXP3Nature Genetics, 27
Immunity – Unpaywall
Published: May 1, 2009
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.