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Targeting NFAT5 attenuates high sodium-induced vascular aging by re-sensitizing senescent smooth muscle cells to
Shihui Bian1, Yu Jiang2, Yijie Yu2
1Department of Geriatrics, Affiliated People's Hospital of Jiangsu University, Zhenjiang, Jiangsu, PR China.
Abstract:
Chronic high sodium intake precipitates vascular aging; however, the molecular signaling remain poorly defined. Nuclear factor of activated T cells 5 (NFAT5) is a central regulator of the cellular osmotic stress response; however, its specific role in modulating vascular senescence signaling remains unknown. Here, we investigated whether NFAT5 signaling mediates high‑sodium-induced vascular aging and evaluated the therapeutic potential of the specific NFAT5 inhibitor KRN5. We utilized C57BL/6 J mice fed a high‑sodium diet and cultured primary vascular smooth muscle cells (VSMCs) under hypertonic conditions to model vascular aging in vivo and in vitro. Mechanistic studies, including RNA sequencing, chromatin immunoprecipitation, and luciferase reporter assays, were performed to identify NFAT5 transcriptional targets. We found high sodium accelerated vascular aging and VSMC senescence, accompanied by a marked upregulation and nuclear activation of NFAT5. KRN5 significantly attenuated these aging phenotypes and suppressed the senescence-associated secretory phenotype (SASP) in vivo. Mechanistically, activated NFAT5 conferred robust apoptosis resistance to senescent VSMCs by shifting the Bcl-2 family balance towards cell survival. Specifically, NFAT5 directly binds to a conserved region of the Bcl-XL promoter to drive its transcription. Consequently, KRN5 effectively re-sensitizing senescent VSMCs to apoptosis. Collectively, our findings identify the NFAT5 signaling pathway as a critical mechanistic link between high sodium intake and vascular aging. KRN5 is a novel senolytic strategy that dismantles the Bcl-XL-dependent survival mechanism in senescent VSMCs.
Insights
High sodium intake accelerates vascular aging by activating NFAT5 signaling, promoting senescent cell survival. Inhibiting NFAT5 with KRN5 reverses aging, making senescent cells susceptible to apoptosis.
Area of Science:
- Cardiovascular Biology
- Molecular Aging
- Osmotic Stress Response
Background:
- Chronic high sodium intake is linked to vascular aging, but underlying molecular mechanisms are unclear.
- Nuclear factor of activated T cells 5 (NFAT5) regulates osmotic stress, yet its role in vascular senescence is unknown.
Purpose of the Study:
- To investigate if NFAT5 signaling mediates high-sodium-induced vascular aging.
- To evaluate the therapeutic potential of the NFAT5 inhibitor KRN5.
Main Methods:
- Utilized high-sodium diet in C57BL/6J mice and hypertonic conditions in primary vascular smooth muscle cells (VSMCs).
- Employed RNA sequencing, chromatin immunoprecipitation, and luciferase reporter assays to identify NFAT5 targets.
- Assessed aging phenotypes, senescence markers, and apoptosis resistance.
Main Results:
- High sodium accelerated vascular aging and VSMC senescence, increasing NFAT5 activity.
- KRN5 treatment attenuated aging phenotypes and suppressed the senescence-associated secretory phenotype (SASP).
- NFAT5 promoted senescent VSMC survival by upregulating Bcl-XL, and KRN5 restored apoptosis sensitivity.
Conclusions:
- NFAT5 signaling is a key mediator linking high sodium intake to vascular aging.
- KRN5 represents a novel senolytic strategy targeting Bcl-XL-dependent survival in senescent VSMCs.