<HashMap><database>GEO</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Other>ftp://ftp.ncbi.nlm.nih.gov/geo/series/GSE341nnn/GSE341292/</Other></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Transcriptomics</omics_type><species>Mus musculus</species><gds_type> Other</gds_type><gds_type>Expression profiling by high throughput sequencing</gds_type><full_dataset_link>https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE341292</full_dataset_link><repository>GEO</repository><entry_type>GSE</entry_type></additional><is_claimable>false</is_claimable><name>Distinct activation programs in naïve and memory CD8 T cells govern progeny stemness and effector persistence (single cell experiment, OT-I mice, Lm-OVA infection,Week 12)</name><description>We longitudinally profiled gene expression in naive and central and effector memory CD8+ T cells across multiple models of acute cognate infection to reveal subset-specific activation programs. However, how prior antigen experience alters T-cell activation programs remains poorly understood. We longitudinally profiled gene expression in naive, central memory, and effector memory CD8+ T cells in response to cognate antigen across multiple models of acute infection. Naive T cells engaged TOX- and TCF7-centered programs and generated early stem-like central memory precursors. Their initially slow proliferation was followed by rapid expansion and the production of large numbers of effector cells. Central memory T cells rapidly triggered effector and proliferation programs while maintaining a smaller self-renewing population. Effector memory T cells expanded poorly and generated almost exclusively effector progeny. Effector progeny derived from both memory subsets survived contraction more efficiently than naive T-cell-derived progeny and established persistent effector memory populations. These data show that prior antigen experience does not simply accelerate CD8+ T-cell activation but redirects cell-intrinsic programs governing progeny fate and persistence. These distinct programs may reflect adaptation to different histories and anticipated patterns of antigen exposure.</description><dates><publication>2026/07/29</publication></dates><accession>GSE341292</accession><cross_references><GSM>GSM9903297</GSM><GSM>GSM9903298</GSM><GSM>GSM9903299</GSM><GSM>GSM9903300</GSM><GPL>24247</GPL><GSE>341292</GSE><taxon>Mus musculus</taxon></cross_references></HashMap>