The transcriptional program of vaccine-induced CD8 + T cell memory
暂无分享,去创建一个
G. Nabel | C. Klebanoff | M. Cameron | F. Lefebvre | J. Goulet | A. Hegazy | M. Gilliet | N. Restifo | L. Gattinoni | Y. Ji | R. Roychoudhuri | L. Flatz | M. Honda | S. Fourati | C. Nichols | Li Pan | Yun Ji
[1] Thomas Höfer,et al. Disparate Individual Fates Compose Robust CD8+ T Cell Immunity , 2013, Science.
[2] Hai-Hui Xue,et al. Cutting Edge: Generation of Memory Precursors and Functional Memory CD8+ T Cells Depends on T Cell Factor-1 and Lymphoid Enhancer-Binding Factor-1 , 2012, The Journal of Immunology.
[3] B. Pulendran,et al. Identifying gnostic predictors of the vaccine response. , 2012, Current opinion in immunology.
[4] J. Mascola,et al. Gene-Based Vaccination with a Mismatched Envelope Protects against Simian Immunodeficiency Virus Infection in Nonhuman Primates , 2012, Journal of Virology.
[5] J. Szustakowski,et al. Optimal Deconvolution of Transcriptional Profiling Data Using Quadratic Programming with Application to Complex Clinical Blood Samples , 2011, PloS one.
[6] F. Marincola,et al. Repression of the DNA-binding inhibitor Id3 by Blimp-1 limits CD8+ T cell memory formation , 2011, Nature Immunology.
[7] E John Wherry,et al. T cell exhaustion , 2011 .
[8] Matthew S. Lewis,et al. Profound early control of highly pathogenic SIV by an effector-memory T cell vaccine , 2011, Nature.
[9] J. Harty,et al. Repetitive antigen stimulation induces stepwise transcriptome diversification but preserves a core signature of memory CD8(+) T cell differentiation. , 2010, Immunity.
[10] S. Kaech,et al. Generation of effector CD8+ T cells and their conversion to memory T cells , 2010, Immunological reviews.
[11] G. Nabel,et al. Development of replication-defective lymphocytic choriomeningitis virus vectors for the induction of potent CD8+ T cell immunity , 2010, Nature Medicine.
[12] J. Borst,et al. CD27 sustains survival of CTLs in virus-infected nonlymphoid tissue in mice by inducing autocrine IL-2 production. , 2010, The Journal of clinical investigation.
[13] G. Tsokos,et al. SLAM family receptors and the SLAM-associated protein (SAP) modulate T cell functions , 2010, Seminars in Immunopathology.
[14] Andreas Hutloff,et al. Selective expression of the chemokine receptor XCR1 on cross-presenting dendritic cells determines cooperation with CD8+ T cells. , 2009, Immunity.
[15] D. Douek,et al. Different Vaccine Vectors Delivering the Same Antigen Elicit CD8+ T Cell Responses with Distinct Clonotype and Epitope Specificity1 , 2009, The Journal of Immunology.
[16] Daniel R. Beisner,et al. Foxo1 links homing and survival of naive T cells by regulating L-selectin, CCR7 and interleukin 7 receptor , 2009, Nature Immunology.
[17] Dietmar Zehn,et al. Complete but curtailed T cell response to very low affinity antigen , 2009, Nature.
[18] D. Fearon,et al. Secondary Replicative Function of CD8+ T Cells That Had Developed an Effector Phenotype , 2009, Science.
[19] J. Ladenson,et al. The role of human ribosomal proteins in the maturation of rRNA and ribosome production. , 2008, RNA.
[20] Surojit Sarkar,et al. Functional and genomic profiling of effector CD8 T cell subsets with distinct memory fates , 2008, The Journal of experimental medicine.
[21] Nikhil S. Joshi,et al. Inflammation directs memory precursor and short-lived effector CD8(+) T cell fates via the graded expression of T-bet transcription factor. , 2007, Immunity.
[22] J. Mascola,et al. Phase I clinical evaluation of a six-plasmid multiclade HIV-1 DNA candidate vaccine. , 2007, Vaccine.
[23] C. Klebanoff,et al. CD8+ T‐cell memory in tumor immunology and immunotherapy , 2006, Immunological reviews.
[24] E. Wherry,et al. Effector and memory CD8+ T cell fate coupled by T-bet and eomesodermin , 2005, Nature Immunology.
[25] Martin F. Bachmann,et al. Functional Properties and Lineage Relationship of CD8+ T Cell Subsets Identified by Expression of IL-7 Receptor α and CD62L1 , 2005, The Journal of Immunology.
[26] P. Lansdorp,et al. CD27 Expression Promotes Long-Term Survival of Functional Effector–Memory CD8+Cytotoxic T Lymphocytes in HIV-infected Patients , 2004, The Journal of experimental medicine.
[27] Jean YH Yang,et al. Bioconductor: open software development for computational biology and bioinformatics , 2004, Genome Biology.
[28] Antonio Lanzavecchia,et al. Central memory and effector memory T cell subsets: function, generation, and maintenance. , 2004, Annual review of immunology.
[29] Gordon K Smyth,et al. Linear Models and Empirical Bayes Methods for Assessing Differential Expression in Microarray Experiments , 2004, Statistical applications in genetics and molecular biology.
[30] E. Wherry,et al. Selective expression of the interleukin 7 receptor identifies effector CD8 T cells that give rise to long-lived memory cells , 2003, Nature Immunology.
[31] Susan M. Kaech,et al. Molecular and Functional Profiling of Memory CD8 T Cell Differentiation , 2002, Cell.
[32] J. Harty,et al. Programmed contraction of CD8+ T cells after infection , 2002, Nature Immunology.
[33] E. Wherry,et al. Vaccines: Effector and memory T-cell differentiation: implications for vaccine development , 2002, Nature Reviews Immunology.
[34] S. Szabo,et al. Distinct Effects of T-bet in TH1 Lineage Commitment and IFN-γ Production in CD4 and CD8 T Cells , 2002, Science.
[35] Susan M. Kaech,et al. Effector and memory T-cell differentiation: implications for vaccine development. Nat Rev Immunol. , 2002 .
[36] S. Szabo,et al. Distinct effects of T-bet in TH1 lineage commitment and IFN-gamma production in CD4 and CD8 T cells. , 2002, Science.
[37] Susan M. Kaech,et al. Memory CD8+ T cell differentiation: initial antigen encounter triggers a developmental program in naïve cells , 2001, Nature Immunology.
[38] T. Schumacher,et al. CD27 is required for generation and long-term maintenance of T cell immunity , 2000, Nature Immunology.
[39] Joshy Jacob,et al. Modelling T-cell memory by genetic marking of memory T cells in vivo , 1999, Nature.
[40] J. Opferman,et al. Linear differentiation of cytotoxic effectors into memory T lymphocytes. , 1999, Science.
[41] F. Sallusto,et al. Two subsets of memory T lymphocytes with distinct homing potentials and effector functions , 1999, Nature.
[42] J. Bonner,et al. Differentiation , 1968, Nature.
[43] Yi Liu,et al. Single-Cell Gene Expression Profiling , 2022 .