M. A. Forget, Y. Huon, A. Reuben, C. Grange, M. Liberman et al., Stimulation of Wnt/ss-catenin pathway in human CD8+ T lymphocytes from blood and lung tumors leads to a shared young/memory phenotype, PLoS One, vol.7, issue.7, p.41074, 2012.

A. O. Galindo-albarran, O. H. Lopez-portales, D. Y. Gutierrez-reyna, O. Rodriguez-jorge, J. A. Sanchez-villanueva et al., CD8+ T Cells from Human Neonates Are Biased toward an Innate Immune Response, Cell Rep, vol.17, issue.8, pp.2151-2160, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01460128

O. Galindo-albarrán-ariel, L. Oscar, H. , G. Darely, Y. et al., CD8+ T Cells from Human Neonates Are Biased toward an Innate Immune Response, Cell Reports, vol.17, issue.8, pp.2151-2160, 2016.

C. Gao, G. Xiao, and J. Hu, Regulation of Wnt/?-catenin signaling by posttranslational modifications, Cell & bioscience, vol.4, p.13, 2014.

G. Montes-de-oca, L. Y. , C. Avelar, T. , P. Garrido et al., Cardiolipin deficiency causes a dissociation of the b 6 c:caa 3 megacomplex in B. subtilis membranes, J Bioenerg Biomembr, vol.48, issue.4, pp.451-467, 2016.

L. Gattinoni, X. S. Zhong, D. C. Palmer, Y. Ji, C. S. Hinrichs et al., Wnt signaling arrests effector T cell differentiation and generates CD8+ memory stem cells, Nat Med, vol.15, issue.7, pp.808-813, 2009.
DOI : 10.1038/nm.1982

URL : http://europepmc.org/articles/pmc2707501?pdf=render

R. H. Goodman and S. Smolik, CBP / p300 in cell growth , transformation , and development, Genes & development, vol.14, pp.1553-1577, 1997.

L. Grumolato, G. Liu, P. Mong, R. Mudbhary, R. Biswas et al., Canonical and noncanonical Wnts use a common mechanism to activate completely unrelated coreceptors, Genes & development, vol.24, issue.22, pp.2517-2530, 2010.
DOI : 10.1101/gad.1957710

URL : http://genesdev.cshlp.org/content/24/22/2517.full.pdf

S. Jati, S. Kundu, A. Chakraborty, S. K. Mahata, V. Nizet et al., Wnt5A Signaling Promotes Defense Against Bacterial Pathogens by Activating a, Host Autophagy Circuit. Front Immunol, vol.9, p.679, 2018.

M. Kühl, L. C. Sheldahl, C. C. Malbon, and R. T. Moon, Ca(2+)/calmodulin-dependent protein kinase II is stimulated by Wnt and Frizzled homologs and promotes ventral cell fates in Xenopus, Journal of Biological Chemistry, vol.17, pp.12701-12711, 2000.

C. Lange, E. Mix, K. Rateitschak, and A. Rolfs, Wnt Signal Pathways and Neural Stem Cell Differentiation, 2006.
DOI : 10.1159/000092097

L. Li, H. T. Kim, A. Nellore, N. Patsoukis, V. Petkova et al., Prostaglandin E2 promotes survival of naive UCB T cells via the Wnt/beta-catenin pathway and alters immune reconstitution after UCBT, Blood Cancer J, vol.4, p.178, 2014.

B. Lino, M. T. Carrillo-rayas, A. Chagolla, L. Gonzalez-de, and L. E. Vara, Purification and characterization of a calcium-dependent protein kinase from beetroot plasma membranes, Planta, vol.225, issue.1, pp.255-268, 2006.

T. T. Lui, C. Lacroix, S. M. Ahmed, S. J. Goldenberg, C. A. Leach et al., The ubiquitin-specific protease USP34 regulates axin stability and Wnt/betacatenin signaling, Mol Cell Biol, vol.31, issue.10, pp.2053-2065, 2011.
DOI : 10.1128/mcb.01094-10

URL : https://mcb.asm.org/content/31/10/2053.full.pdf

H. Ma, M. Guo, B. Shan, and Z. Xia, Targeted functional analysis of p300 coactivator in Wnt/beta-catenin signaling pathway using phosphoproteomic and biochemical approaches, J Proteomics, vol.75, issue.9, pp.2601-2610, 2012.
DOI : 10.1016/j.jprot.2012.03.009

B. T. Macdonald, K. Tamai, and X. He, Wnt/beta-catenin signaling: components, mechanisms, and diseases, Dev Cell, vol.17, issue.1, pp.9-26, 2009.

M. B. Major, N. D. Camp, J. D. Berndt, X. Yi, S. J. Goldenberg et al., Wilms Tumor Suppressor WTX Negatively Regulates WNT/ß-Catenin Signaling, Science, vol.316, issue.5827, pp.1043-1046, 2007.

A. Marchant and M. Goldman, T cell-mediated immune responses in human newborns: ready to learn?, Clin Exp Immunol, vol.141, issue.1, pp.10-18, 2005.

S. R. Mihaly, J. Ninomiya-tsuji, and S. Morioka, TAK1 control of cell death, Cell Death Differ, vol.21, issue.11, pp.1667-1676, 2014.

Y. Nakamura, E. De-paiva-alves, G. J. Veenstra, and S. Hoppler, Tissue-and stage-specific Wnt target gene expression is controlled subsequent to beta-catenin recruitment to cis-regulatory modules, Development, vol.143, issue.11, pp.1914-1925, 2016.

V. V. Ogryzko, R. L. Schiltz, V. Russanova, B. H. Howard, and Y. Nakatani, The Transcriptional Coactivators p300 and CBP Are Histone Acetyltransferases, Cell, vol.87, pp.953-959, 1996.

J. Roth, N. Shikama, C. Henzen, I. Desbaillets, W. Lutz et al., Differential role of p300 and CBP acetyltransferase during myogenesis: p300 acts upstream of MyoD and Myf5, The EMBO journal, vol.22, pp.5186-5196, 2003.

J. F. Roth, N. Shikama, C. Henzen, I. Desbaillets, W. Lutz et al., Differential role of p300 and CBP acetyltransferase during myogenesis: p300 acts upstream of MyoD and Myf5, The EMBO journal, vol.22, pp.5186-5196, 2003.

G. Scholz, C. Jandus, L. Zhang, C. Grandclement, I. C. Lopez-mejia et al., Modulation of mTOR Signalling Triggers the Formation of Stem Cell-like, Memory T Cells. EBioMedicine, vol.4, pp.50-61, 2016.

S. O. Schonland, J. K. Zimmer, C. M. Lopez-benitez, T. Widmann, K. D. Ramin et al., Homeostatic control of T-cell generation in neonates, Blood, vol.102, issue.4, pp.1428-1434, 2003.

M. V. Semenov, R. Habas, B. T. Macdonald, and X. He, SnapShot: Noncanonical Wnt Signaling Pathways, Cell, vol.131, issue.7, p.1378, 2007.
DOI : 10.1016/j.cell.2007.12.011

URL : https://doi.org/10.1016/j.cell.2007.12.011

A. Shevchenko, M. Wilm, O. Vorm, and M. Mann, Mass spectrometric sequencing of proteins silver-stained polyacrylamide gels, Anal Chem, vol.68, issue.5, pp.850-858, 1996.

J. L. Teo and M. Kahn, The Wnt signaling pathway in cellular proliferation and differentiation: A tale of two coactivators, Adv Drug Deliv Rev, vol.62, issue.12, pp.1149-1155, 2010.