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To die or not to die SGK1-sensitive ORAI/STIM in cell survival
Florian Lang1, Lisann Pelzl1, Stefan Hauser2
1Department of Vegetative Physiology, Eberhad Karls University, Wilhelmstr. 56, D-72074 Tübingen, Germany.
Abstract:
The pore forming Ca2+ release activated Ca2+ channel (CRAC) isoforms ORAI1-3 and their regulators STIM1,2 accomplish store operated Ca2+ entry (SOCE). Activation of SOCE may lead to cytosolic Ca2+ oscillations, which in turn support cell proliferation and cell survival. ORAI/STIM and thus SOCE are upregulated by the serum and glucocorticoid inducible kinase SGK1, a kinase under powerful genomic regulation and activated by phosphorylation via the phosphoinositol-3-phosphate pathway. SGK1 enhances ORAI1 abundance partially by phosphorylation of Nedd4-2, an ubiquitin ligase priming the channel protein for degradation. The SGK1-phosphorylated Nedd4-2 binds to the protein 14-3-3 and is thus unable to ubiquinate ORAI1. SGK1 further increases the ORAI1 and STIM1 protein abundance by activating nuclear factor kappa B (NF-κB), a transcription factor upregulating the expression of STIM1 and ORAI1. SGK1-sensitive upregulation of ORAI/STIM and thus SOCE is triggered by a wide variety of hormones and growth factors, as well as several cell stressors including ischemia, radiation, and cell shrinkage. SGK1 dependent upregulation of ORAI/STIM confers survival of tumor cells and thus impacts on growth and therapy resistance of cancer. On the other hand, SGK1-dependent upregulation of ORAI1 and STIM1 may support survival of neurons and impairment of SGK1-dependent ORAI/STIM activity may foster neurodegeneration. Clearly, further experimental effort is needed to define the mechanisms linking SGK1-dependent upregulation of ORAI1 and STIM1 to cell survival and to define the impact of SGK1-dependent upregulation of ORAI1 and STIM1 on malignancy and neurodegenerative disease.
Insights
Serum and glucocorticoid inducible kinase 1 (SGK1) upregulates calcium release-activated calcium (CRAC) channels (ORAI) and STIM proteins, enhancing store-operated calcium entry (SOCE). This SGK1-mediated pathway impacts cancer cell survival and neurodegeneration.
Area of Science:
- Cell Biology
- Molecular Biology
- Physiology
Background:
- Store-operated calcium entry (SOCE) is crucial for cellular functions, mediated by ORAI channels and STIM proteins.
- SGK1 (serum and glucocorticoid inducible kinase 1) is a key regulator of ORAI/STIM expression and SOCE activity.
- SGK1 activation is linked to cellular proliferation, survival, and responses to various stimuli and stressors.
Purpose of the Study:
- To elucidate the mechanisms by which SGK1 regulates ORAI and STIM expression and SOCE.
- To investigate the role of SGK1-mediated SOCE in cancer cell survival and neurodegenerative processes.
- To understand how SGK1 influences protein degradation and gene transcription related to SOCE.
Main Methods:
- Investigated SGK1's effect on ORAI1 and STIM1 protein levels.
- Examined SGK1's impact on Nedd4-2 phosphorylation and its interaction with 14-3-3 proteins.
- Analyzed SGK1's activation of NF-κB and its role in STIM1 and ORAI1 gene expression.
Main Results:
- SGK1 upregulates ORAI1 and STIM1 protein abundance, thereby enhancing SOCE.
- SGK1 phosphorylates Nedd4-2, inhibiting its ubiquitination of ORAI1 and promoting ORAI1 stability.
- SGK1 activates NF-κB, leading to increased transcription of STIM1 and ORAI1 genes.
Conclusions:
- SGK1 plays a significant role in controlling SOCE by modulating ORAI1 and STIM1 levels through both post-translational modification and transcriptional regulation.
- The SGK1-ORAI/STIM axis is implicated in cancer cell survival and therapy resistance.
- Dysregulation of SGK1-dependent SOCE may contribute to neurodegenerative diseases, warranting further investigation.
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