| Literature DB >> 23849743 |
Abstract
Both the CTLA-4 pathway and regulatory T cells (Treg) are essential for the control of immune homeostasis. Their therapeutic relevance is highlighted by the increasing use of anti-CTLA-4 antibody in tumor therapy and the development of Treg cell transfer strategies for use in autoimmunity and transplantation settings. The CTLA-4 pathway first came to the attention of the immunological community in 1995 with the discovery that mice deficient in Ctla-4 suffered a fatal lymphoproliferative syndrome. Eight years later, mice lacking the critical Treg transcription factor Foxp3 were shown to exhibit a remarkably similar phenotype. Much of the debate since has centered on the question of whether Treg suppressive function requires CTLA-4. The finding that it does in some settings but not in others has provoked controversy and inevitable polarization of opinion. In this article, I suggest that CTLA-4 and Treg represent complementary and largely overlapping mechanisms of immune tolerance. I argue that Treg commonly use CTLA-4 to effect suppression, however CTLA-4 can also function in the non-Treg compartment while Treg can invoke CTLA-4-independent mechanisms of suppression. The notion that Foxp3 and CTLA-4 direct independent programs of immune regulation, which in practice overlap to a significant extent, will hopefully help move us towards a better appreciation of the underlying biology and therapeutic significance of these pathways.Entities:
Keywords: CD4 T cells; CTLA-4; Foxp3; Immune regulation; Tolerance; Treg
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Year: 2013 PMID: 23849743 PMCID: PMC3989116 DOI: 10.1016/j.jaut.2013.06.006
Source DB: PubMed Journal: J Autoimmun ISSN: 0896-8411 Impact factor: 7.094
Fig. 1Cellular expression of CTLA-4 and Foxp3. CTLA-4 is a predominantly intracellular protein that is constitutively expressed in Foxp3+ Treg and induced in conventional T cells following activation. CTLA-4 and CD28 bind to shared ligands (CD80, CD86) on antigen presenting cells. The Treg transcription factor, Foxp3, promotes expression of CTLA-4 and other characteristicTreg markers such as CD25 while inhibiting expression of cytokines such as IL-2.
The Foxp3−/− and CTLA-4−/− phenotypes can be corrected by the presence of wildtype cells. The effect of adoptive transfer of the indicated bone marrow into rag-deficient recipients, alone or with additional cells, is shown (in terms of whether recipients became sick or remained healthy). Note: Depending on the study, “Foxp3 deficient bone marrow” refers to bone marrow from mice lacking the Foxp3 gene or bone marrow from scurfy mice that have a frameshift mutation in the Foxp3 gene.
| Foxp3-deficient bone marrow | CTLA-4−/− bone marrow | |
|---|---|---|
| Alone | Sick | Sick |
| Plus wildtype bone marrow | Healthy | Healthy |
| Plus wildtype CD4+CD25+ cells | Healthy | Healthy |
Examples of studies in which CTLA-4 has been shown to contribute to Treg function.
| CTLA-4−/− Treg population tested | Observation | Reference |
|---|---|---|
| CD4+CD25+ cells | Regulation of colitis by CTLA-4-sufficient Treg was largely abrogated by anti-CTLA-4 blocking antibody. Note: CTLA-4−/− Treg were shown to regulate in an IL-10-dependent manner, suggesting other mechanisms can compensate in mice lacking CTLA-4 since birth. | |
| Foxp3-expressing cells | Specific deletion of CTLA-4 in Treg (by expression of Foxp3-driven Cre in CTLA-4-floxed mice) caused lethal T cell mediated autoimmunity featuring lymphadenopathy, splenomegaly and widespread tissue infiltration. | |
| CD4+CD25+ cells | DO11+CTLA4−/−rag−/− Treg were unable to control autoimmune pancreas destruction in an adoptive transfer model of diabetes. Wildtype Treg bearing an identical specificity (DO11+rag−/−) conferred 100% protection from disease. | |
| CD4+CD25+ CD62hi cells (from young Ctla4−/− mice) | CTLA-4−/− Treg failed to control colitis induced by T cell transfer into rag−/− recipients. Wildtype Treg conferred protection from colitis. | |
| CD4+CD25+ cells | Injection of wildtype Treg but not conventional T cells (CD4+CD25−) significantly prolonged the lifespan of CTLA-4−/− mice. | |
| CD4+CD25+ cells | Wildtype Treg completely prevented disease induced by CTLA-4−/− T cells in rag−/− recipients, demonstrating that expression of CTLA-4 in Treg is sufficient for regulation, even if conventional T cells lack CTLA-4. | |
| CD4+CD25+ cells | Treg from CTLA-4−/− mice expressing CTLA-4 only in activated conventional T cells (under the control of the IL-2 promoter) failed to control colitis induced by CD4+CD25− cells in rag−/− recipients. Wildtype Treg conferred 100% protection. | |
| CD4+CD25+ CD62hi cells | CTLA-4+/+ but not CTLA-4−/− Treg reduced the infiltration of antigen-specific effector T cells into the pancreas and prevented the destruction of pancreatic tissue. | |
| CD4+CD25+ cells (purified from healthy mixed bone marrow chimeras) | CTLA-4−/− Treg failed to suppress inflammatory bowel disease induced by T cell transfer into rag−/− recipients (0/4 mice survived). Recipients of wildtype Treg showed complete protection (4/4 mice survived). |
Fig. 2CTLA-4 and Foxp3 direct overlapping programs of immune regulation. A large fraction of CTLA-4-dependent immune regulation involves the actions of CTLA-4 on the Treg population; however CTLA-4 can also act on conventional T cells. Likewise, CTLA-4 represents a major mechanism of Treg function, but Treg can also call on numerous non-CTLA-4 based suppressive mechanisms.