B. Silva-santos, W. W. Schamel, P. Fisch, and M. , ???? T-cell conference 2012: Close encounters for the fifth time, European Journal of Immunology, vol.42, issue.12, pp.3101-3105, 2012.
DOI : 10.1002/eji.201270101

H. Saito, D. M. Kranz, Y. Takagaki, A. C. Hayday, H. N. Eisen et al., Complete primary structure of a heterodimeric T-cell receptor deduced from cDNA sequences, Nature, vol.67, issue.5971, pp.757-762, 1984.
DOI : 10.1038/309757a0

]. A. Hayday, H. Saito, S. D. Gillies, D. M. Kranz, G. Tanigawa et al., Structure, organization, and somatic rearrangement of T cell gamma genes, Cell, vol.40, issue.2, pp.259-269, 1985.
DOI : 10.1016/0092-8674(85)90140-0

I. Bank, R. A. Depinho, M. B. Brenner, J. Cassimeris, F. W. Alt et al., A functional T3 molecule associated with a novel heterodimer on the surface of immature human thymocytes, Nature, vol.125, issue.6075, pp.179-181, 1986.
DOI : 10.1038/322179a0

W. Born, C. Miles, J. White, R. O-'brien, J. H. Freed et al., Peptide sequences of T-cell receptor ?? and ?? chains are identical to predicted X and ?? proteins, Nature, vol.330, issue.6148, pp.572-574, 1987.
DOI : 10.1038/330572a0

E. Y. Loh, L. L. Lanier, C. W. Turck, D. R. Littman, M. M. Davis et al., Identification and sequence of a fourth human T cell antigen receptor chain, Nature, vol.330, issue.6148, pp.569-572, 1987.
DOI : 10.1038/330569a0

I. Prinz, B. Silva-santos, and D. J. Pennington, Functional development of ???? T cells, European Journal of Immunology, vol.10, issue.8, pp.1988-1994, 2013.
DOI : 10.1002/eji.201343759

J. C. Ribot, A. Debarros, D. J. Pang, J. F. Neves, V. Peperzak et al., CD27 is a thymic determinant of the balance between interferon-??- and interleukin 17???producing ???? T cell subsets, Nature Immunology, vol.170, issue.4, pp.427-436, 2009.
DOI : 10.1038/ni.1717

J. D. Haas, F. H. González, S. Schmitz, V. Chennupati, L. Föhse et al., CCR6 and NK1.1 distinguish between IL-17A and IFN-c-producing cd effector T cells, Eur. J. Immunol, pp.39-3488, 2009.

V. Bekiaris, J. R. Sedy´, M. G. Sedy´sedy´, A. Macauley, C. F. Rhode-kurnow et al., The Inhibitory Receptor BTLA Controls ???? T Cell Homeostasis and Inflammatory Responses, Immunity, vol.39, issue.6, pp.1082-1094, 2013.
DOI : 10.1016/j.immuni.2013.10.017

M. Wencker, G. Turchinovich, R. Di-marco-barros, L. Deban, and A. Jandke, Innate-like T cells straddle innate and adaptive immunity by altering antigenreceptor responsiveness, Nat. Immunol, pp.15-80, 2014.

J. M. Lewis, M. Girardi, S. J. Roberts, S. D. Barbee, A. C. Hayday et al., Selection of the cutaneous intraepithelial ????+ T cell repertoire by a thymic stromal determinant, Nature Immunology, vol.2, issue.8, pp.843-850, 2006.
DOI : 10.1084/jem.177.3.729

L. M. Boyden, J. M. Lewis, S. D. Barbee, A. Bas, M. Girardi et al., Skint1, the prototype of a newly identified immunoglobulin superfamily gene cluster, positively selects epidermal cd T cells, Nat. Genet, pp.40-656, 2008.

S. D. Barbee, M. J. Woodward, G. Turchinovich, J. J. Mention, J. M. Lewis et al., Skint-1 is a highly specific, unique selecting component for epidermal T cells, Proceedings of the National Academy of Sciences, vol.108, issue.8, pp.3330-3335, 2011.
DOI : 10.1073/pnas.1010890108

C. Harly, Y. Guillaume, S. Nedellec, C. M. Peigné, H. Mönkkönen et al., Key implication of CD277/butyrophilin-3 (BTN3A) in cellular stress sensing by a major human ???? T-cell subset, Blood, vol.120, issue.11, pp.2269-2279, 2012.
DOI : 10.1182/blood-2012-05-430470

S. Vavassori, A. Kumar, G. S. Wan, G. S. Ramanjaneyulu, M. Cavallari et al., Butyrophilin 3A1 binds phosphorylated antigens and stimulates human cd T cells, Nat. Immunol, pp.14-908, 2013.
DOI : 10.1038/ni.2665

A. Sandstrom, C. M. Peigné, A. Léger, J. E. Crooks, F. Konczak et al., The Intracellular B30.2 Domain of Butyrophilin 3A1 Binds Phosphoantigens to Mediate Activation of Human V??9V??2??T Cells, Immunity, vol.40, issue.4, pp.490-500, 2014.
DOI : 10.1016/j.immuni.2014.03.003

C. H. Hsiao, X. Lin, R. J. Barney, R. R. Shippy, J. Li et al., Synthesis of a phosphoantigen prodrug that potently activates Vc9Vd2 T-lymphocytes, Chem. Biol, 2014.

B. A. Mangan, M. R. Dunne, V. P. O-'reilly, P. J. Dunne, M. A. Exley et al., CD1d restriction and Th1/Th2/Th17 cytokine secretion by human Vd3 T cells, J. Immunol, pp.191-221, 2013.

A. M. Luoma, C. D. Castro, T. Mayassi, L. A. Bembinster, L. Bai et al., Crystal Structure of V??1??T Cell Receptor in Complex with CD1d-Sulfatide Shows MHC-like Recognition of a Self-Lipid by Human ???? T Cells, Immunity, vol.39, issue.6, pp.1032-1042, 2013.
DOI : 10.1016/j.immuni.2013.11.001

C. R. Willcox, V. Pitard, S. Netzer, L. Couzi, M. Salim et al., Cytomegalovirus and tumor stress surveillance by binding of a human cd T cell antigen receptor to endothelial protein C receptor, Nat. Immunol, pp.13-872, 2012.

X. Zeng, Y. L. Wei, J. Huang, E. W. Newell, H. Yu et al., ???? T Cells Recognize a Microbial Encoded B Cell Antigen to Initiate a Rapid Antigen-Specific Interleukin-17 Response, Immunity, vol.37, issue.3, pp.524-534, 2012.
DOI : 10.1016/j.immuni.2012.06.011

M. K. Aydintug, L. Zhang, C. Wang, D. Liang, J. M. Wands et al., Cd T cells recognize the insulin B:9?23 peptide antigen when it is dimerized through thiol oxidation, Mol. Immunol, pp.60-116, 2014.

H. Shen, Y. Wang, C. Y. Chen, J. Frencher, D. Huang et al., Th17-related cytokines contribute to recall-like expansion/effector function of HMBPPspecific Vc2Vd2 T cells after M. tuberculosis infection or vaccination, Eur. J. Immunol, 2014.

J. C. Ribot, A. Debarros, and B. Silva-santos, Searching for?????signal 2???: costimulation requirements of ???? T cells, Cellular and Molecular Life Sciences, vol.33, issue.14, pp.2345-2355, 2011.
DOI : 10.1007/s00018-011-0698-2

C. Chen, H. Hsu, E. Hudgens, J. C. Telfer, and C. L. Baldwin, Signal transduction by different forms of the cd T cell-specific pattern recognition receptor WC1, J. Immunol, pp.193-379, 2014.

S. D. Barbee, M. J. Woodward, G. Turchinovich, J. J. Mention, J. M. Lewis et al., Skint-1 is a highly specific, unique selecting component for epidermal T cells, Proceedings of the National Academy of Sciences, vol.108, issue.8, pp.3330-3335, 2011.
DOI : 10.1073/pnas.1010890108

L. Abeler-dörner, M. Swamy, G. Williams, A. C. Hayday, and A. Bas, Butyrophilins: an emerging family of immune regulators, Trends in Immunology, vol.33, issue.1, pp.34-41, 2012.
DOI : 10.1016/j.it.2011.09.007

A. Pappalardo and K. Thompson, Activated cd T cells inhibit osteoclast differentiation and resorptive activity in vitro, Clin. Exp. Immunol, vol.174, pp.281-291, 2013.

J. Fisher, M. Yan, J. Heuijerjans, L. Carter, A. Abolhassani et al., Neuroblastoma killing properties of V-delta 2 and V-delta2 negative gamma delta T cells following expansion by artificial antigen presenting cells, Clin. Cancer Res, vol.http, 2014.

M. S. Davey, M. P. Morgan, A. R. Liuzzi, C. J. Tyler, M. W. Khan et al., Microbe-Specific Unconventional T Cells Induce Human Neutrophil Differentiation into Antigen Cross-Presenting Cells, The Journal of Immunology, vol.193, issue.7, pp.193-3704, 2014.
DOI : 10.4049/jimmunol.1401018

C. Y. Chen, S. Yao, D. Huang, H. Wei, H. Sicard et al., Phosphoantigen/ IL2 expansion and differentiation of Vc2Vd2 T cells increase resistance to tuberculosis in nonhuman primates, PLoS Pathog, vol.9, 2013.

Y. H. Chien, C. Meyer, and M. Bonneville, T Cells: First Line of Defense and Beyond, Annual Review of Immunology, vol.32, issue.1, pp.121-155, 2014.
DOI : 10.1146/annurev-immunol-032713-120216

G. Workalemahu, H. Wang, K. J. Puan, M. H. Nada, T. Kuzuyama et al., Metabolic engineering of Salmonella vaccine bacteria to boost human Vc2Vd2 T cell immunity, J. Immunol, pp.193-708, 2014.

M. Eberl, I. M. Friberg, A. R. Liuzzi, M. P. Morgan, and N. Topley, Pathogen-Specific Immune Fingerprints during Acute Infection: The Diagnostic Potential of Human ???????? T-Cells, Frontiers in Immunology, vol.18, issue.8, 2014.
DOI : 10.1634/theoncologist.2013-0097

C. Y. Lin, G. W. Roberts, A. Kift-morgan, K. L. Donovan, N. Topley et al., Pathogen-Specific Local Immune Fingerprints Diagnose Bacterial Infection in Peritoneal Dialysis Patients, Journal of the American Society of Nephrology, vol.24, issue.12, pp.24-2002, 2013.
DOI : 10.1681/ASN.2013040332

J. Jameson, K. Ugarte, N. Chen, P. Yachi, E. Fuchs et al., A Role for Skin gamma delta T Cells in Wound Repair, Science, vol.296, issue.5568, pp.747-749, 2002.
DOI : 10.1126/science.1069639

A. Toulon, L. Breton, K. R. Taylor, M. Tenenhaus, D. Bhavsar et al., A role for human skin???resident T cells in wound healing, The Journal of Experimental Medicine, vol.102, issue.4, pp.206-743, 2009.
DOI : 10.1046/j.1523-1747.1998.00265.x

D. A. Witherden, P. Verdino, S. E. Rieder, O. Garijo, R. E. Mills et al., The Junctional Adhesion Molecule JAML Is a Costimulatory Receptor for Epithelial ???? T Cell Activation, Science, vol.329, issue.5996, pp.1205-1210, 2010.
DOI : 10.1126/science.1192698

J. Gertner-dardenne, C. Bonnafous, C. Bezombes, A. H. Capietto, V. Scaglione et al., Bromohydrin pyrophosphate enhances antibody-dependent cell-mediated cytotoxicity induced by therapeutic antibodies, Blood, vol.113, issue.20, pp.4875-4884, 2009.
DOI : 10.1182/blood-2008-08-172296

H. H. Oberg, M. Peipp, C. Kellner, S. Sebens, S. Krause et al., Novel bispecific antibodies increase cd T-cell cytotoxicity against pancreatic cancer cells, Cancer Res, pp.74-1349, 2014.
DOI : 10.1158/0008-5472.can-13-0675

L. Martinet, S. Fleury-cappellesso, M. Gadelorge, G. Dietrich, P. Bourin et al., A regulatory cross-talk between Vc9Vd2 T lymphocytes and mesenchymal stem cells, Eur. J. Immunol, pp.39-752, 2009.

S. Ma, Q. Cheng, Y. Cai, H. Gong, Y. Wu et al., IL-17A produced by cd T cells promotes tumor growth in hepatocellular carcinoma, Cancer Res, pp.74-1969, 2014.

P. Wu, D. Wu, C. Ni, J. Ye, W. Chen et al., ????T17 Cells Promote the Accumulation and Expansion of Myeloid-Derived Suppressor Cells in Human Colorectal Cancer, Immunity, vol.40, issue.5, pp.785-800, 2014.
DOI : 10.1016/j.immuni.2014.03.013

. Balkwill, Murine CD27 (À) Vc6 (+) cd T cells producing IL-17A promote ovarian cancer growth via mobilization of protumor small peritoneal macrophages, Proc. Natl. Acad. Sci. U.S.A, pp.111-3562, 2014.