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Nakai, S.

Publications and source records attributed to Nakai, S..

2 recordsLinked to original sources

SHARPIN enhances ferroptosis in synovial sarcoma cells via NF-κB- and PRMT5-mediated PGC1α reduction

Sarcoma is a rare type of cancer for which new therapeutic agents are required. Ferroptosis is a nonapoptotic cell death triggered by iron-mediated lipid peroxidation. We found that transferrin receptor 1 (TFRC), an iron uptake protein, was expressed at higher levels in sarcoma cell lines than in noncancer and carcinoma cell lines. Glutathione peroxidase 4 (GPX4) protects cells against ferroptosis, and its inhibition using RAS-selective lethal 3 (RSL3) had an antitumor effect that was more pronounced in sarcoma cell lines, particularly synovial sarcoma cells, than in non-sarcoma cells. Because NF-{kappa}B can provoke ferroptosis, we examined the role of SHARPIN, an activator of NF-{kappa}B, in sarcoma. We found that SHARPIN expression is significantly associated with reduced survival in cohorts of patients with cancer, including sarcoma. In addition, SHARPIN promotes the sensitivity of sarcoma cells to ferroptosis. Further analyses revealed that the PGC1/NRF2/SLC7A11 axis and BNIP3L/NIX-mediated mitophagy are regulated through NF-{kappa}B and PRMT5 downstream of SHARPIN. Our findings suggest that ferroptosis could have a therapeutic effect in sarcoma, particularly in subpopulations with high TFRC and SHARPIN expression.

cancer biology↗

Reinstating olfactory bulb derived limbic gamma oscillations alleviates depression

Although the etiology of major depressive disorder remains poorly understood, impairment of gamma oscillations recently emerged as a potential biomarker for major depression. The olfactory bulb (OB) is a major source of brain wide gamma oscillations and bulbectomy is an animal model for depression. Here we demonstrate that chemogenetic suppression of OB neuronal activity or temporally suppressing the OB to pyriform cortex synaptic transmission decreased gamma oscillation power in multiple brain areas associated with depression-like behaviors. To assess the hypothesized link between depression and diffuse depression of gamma oscillations, we employed gamma phase-dependent closed loop neuromodulation of cortical areas, paced by the native OB output. This procedure alleviated depressive-like behaviors in animals and suggests that restoring gamma oscillations may improve depression in humans. One Sentence SummaryRole of limbic gamma oscillations in depression

neuroscience↗