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Series GSE260449 Query DataSets for GSE260449
Status Public on May 14, 2024
Title Osr2 functions as a mechanical checkpoint to augment CD8+ T cell exhaustion [YODA1_vs_DMSO_CutnTag_CD8]
Organism Mus musculus
Experiment type Genome binding/occupancy profiling by high throughput sequencing
Summary The alteration in extracellular matrix (ECM) architecture and stiffness becomes one of the hallmarks of cancer. Whether the mechanical property of ECM contributes to the functionality of CD8+ T cells, a key component of anti-tumor response, remains largely unknown. Here we report that mechanical stress drives T cell exhaustion program via Osr2, a transcription factor that had been poorly investigated in T cells. Osr2 is highly and selectively induced in CD8+ T cells when encountering stiff matrix or mechanical force signaling (MFS). Integrated genetic and multi-omics analyses reveals that Osr2 is enriched in the terminal exhausted tumor infiltrating lymphocytes and its expression is modulated by the combined TCR and MFS mediated by Piezo1/Calcium/CREB axis. Importantly, depletion of Piezo1 or Osr2 alleviates T cell exhaustion, which is associated with enhanced anti-tumor immunity mediated by antigen specific T cells or CAR-T cells in solid tumor models. On the contrary, forced Osr2 expression in CD8+ T cells augment their exhaustion and dampens tumor control. In agreement with these observations, high Osr2 expression is correlated with poor prognosis in multiple human malignancies. Mechanistically, Osr2 recruits HDAC3, which in turn establishes epigenetic reprogramming to suppress cytotoxic genes expression and to promote CD8+T cell exhaustion. Thus, our results unravel a mechanical signaling cascade centered by Osr2 that serves as a key driver for CD8+ T cell exhaustion and suggest that mechanical checkpoints could be promising targets for cancer immunotherapy.
 
Overall design CUT&Tag analysis of CD8+ T-cells activated by anti-CD3/CD28, with or without YODA1 treatment.
 
Contributor(s) Li J, Zhang J, Chen L, Zhou D
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Submission date Feb 28, 2024
Last update date May 14, 2024
Contact name Dawang Zhou
E-mail(s) dwzhou@xmu.edu.cn
Organization name Xiamen University
Department Life Science
Lab Dawang Zhou Lab
Street address Xiang'an south rd, Xiang'an district
City Xiamen
State/province Fujian
ZIP/Postal code 361102
Country China
 
Platforms (1)
GPL24247 Illumina NovaSeq 6000 (Mus musculus)
Samples (9)
GSM8117414 CREB_DMSO_rep1
GSM8117415 CREB_DMSO_rep2
GSM8117416 CREB_YODA1_rep1
This SubSeries is part of SuperSeries:
GSE223164 Osr2 functions as a biomechanical checkpoint to aggravate CD8+ T cell exhaustion in tumor
Relations
BioProject PRJNA1081785

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE260449_RAW.tar 1.3 Gb (http)(custom) TAR (of BW)
SRA Run SelectorHelp
Raw data are available in SRA

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