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Aging-regulated PNUTS maintains endothelial barrier function via SEMA3B suppression [PNUTS]

GSE263742 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2024/04/15 Platform GPL21103
Summary
Age-related diseases pose great challenges to health care systems worldwide. During aging, endothelial senescence increases the risk for cardiovascular disease. Recently, it was described that Phosphatase 1 Nuclear Targeting Subunit (PNUTS) has a central role in cardiomyocyte aging and homeostasis. Here, we determined the role of PNUTS in endothelial cell aging. We confirmed that PNUTS is repressed in senescent endothelial cells (ECs). Moreover, PNUTS silencing elicits several of the hallmarks of endothelial aging: senescence, reduced angiogenesis and loss of barrier function. To validate our findings in vivo, we generated an endothelial-specific inducible PNUTS-deficient mouse line (Cdh5-CreERT2;PNUTSfl/fl), termed PNUTSEC-KO. Two weeks after PNUTS deletion, PNUTSEC-KO mice presented severe multiorgan failure and vascular leakage. Transcriptomic analysis of PNUTS-silenced HUVECs and lungs of PNUTSEC-KO mice revealed that the PNUTS-PP1 axis tightly regulates the expression of semaphorin 3B (SEMA3B). Indeed, silencing of SEMA3B completely restored barrier function after PNUTS loss-of-function. These results reveal a pivotal role for PNUTS in endothelial homeostasis through a SEMA3B downstream pathway that provides a potential target against the effects of aging in ECs.
Published in
Aging-regulated PNUTS maintains endothelial barrier function via SEMA3B suppression
Lozano-Vidal N, Stanicek L, Bink DI et al. · Communications biology 2024 · PMID 38714838 · doi:10.1038/s42003-024-06230-5
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Also filed as BioProject PRJNA1099143 and SRA study SRP501164. Searching any of these in the dataset finder brings you back here.

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