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Aberrant mTOR/autophagy/Nurr1 signaling is critical for TSC-associated tumor development
Ying Wang1, Chunjia Li2, Yanzhuo Zhang1
1Department of Molecular Orthopaedics, Beijing Research Institute of Traumatology and Orthopaedics, Beijing Jishuitan Hospital, Beijing 100035, China.
Abstract:
Tuberous sclerosis complex (TSC), an inherited neurocutaneous disease, is caused by mutations in either the TSC1 or TSC2 gene. This genetic disorder is characterized by the growth of benign tumors in the brain, kidneys, and other organs. As a member of the orphan nuclear receptor family, nuclear receptor related 1 (Nurr1) plays a vital role in some neuropathological diseases and several types of benign or malignant tumors. Here, we explored the potential regulatory role of TSC1/2 signaling in Nurr1 and the effect of Nurr1 in TSC-related tumors. We found that Nurr1 expression was drastically decreased by the disruption of the TSC1/2 complex in Tsc2-null cells, genetically modified mouse models of TSC, cortical tubers of TSC patients, and kidney tumor tissue obtained from a TSC patient. Deficient TSC1/2 complex downregulated Nurr1 expression in an mTOR-dependent manner. Moreover, hyperactivation of mTOR reduced Nurr1 expression via suppression of autophagy. In addition, Nurr1 overexpression inhibited cell proliferation and suppressed cell cycle progression. Therefore, TSC/mTOR/autophagy/Nurr1 signaling is partially responsible for the tumorigenesis of TSC. Taken together, Nurr1 may be a novel therapeutic target for TSC-associated tumors, and Nurr1 agonists or reagents that induce Nurr1 expression may be used for the treatment of TSC.
Insights
Tuberous sclerosis complex (TSC) involves tumor growth due to TSC1/2 gene mutations. This study reveals that the nuclear receptor related 1 (Nurr1) pathway is downregulated in TSC, suggesting Nurr1 as a potential therapeutic target for TSC-associated tumors.
Area of Science:
- Genetics
- Oncology
- Neuroscience
Background:
- Tuberous sclerosis complex (TSC) is an inherited neurocutaneous disorder caused by TSC1 or TSC2 gene mutations, leading to benign tumors.
- Nuclear receptor related 1 (Nurr1) is implicated in neuropathological diseases and tumor development.
Purpose of the Study:
- To investigate the regulatory role of TSC1/2 signaling on Nurr1.
- To determine the effect of Nurr1 in TSC-related tumorigenesis.
Main Methods:
- Analysis of Nurr1 expression in Tsc2-null cells, TSC mouse models, and patient tissues (cortical tubers, kidney tumors).
- Investigation of the mTOR pathway and autophagy in regulating Nurr1.
- Assessment of Nurr1's impact on cell proliferation and cell cycle progression.
Main Results:
- Disruption of the TSC1/2 complex significantly decreased Nurr1 expression.
- mTOR signaling, via suppression of autophagy, mediated the downregulation of Nurr1 in TSC.
- Nurr1 overexpression inhibited cell proliferation and cell cycle progression.
Conclusions:
- The TSC/mTOR/autophagy/Nurr1 signaling pathway contributes to TSC tumorigenesis.
- Nurr1 represents a potential therapeutic target for TSC-associated tumors, with agonists or inducers offering treatment possibilities.
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