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MARCH1 negatively regulates TBK1-mTOR signaling pathway by ubiquitinating TBK1
Xiao Li1, Kai Cheng1, Meng-Di Shang2
1The Second Clinical Medical College , Binzhou Medical University, Yantai, Shandong, 264003, P.R. China.
Background:
TBK1 positively regulates the growth factor-mediated mTOR signaling pathway by phosphorylating mTOR. However, it remains unclear how the TBK1-mTOR signaling pathway is regulated. Considering that STING not only interacts with TBK1 but also with MARCH1, we speculated that MARCH1 might regulate the mTOR signaling pathway by targeting TBK1. The aim of this study was to determine whether MARCH1 regulates the mTOR signaling pathway by targeting TBK1.
Methods:
The co-immunoprecipitation (Co-IP) assay was used to verify the interaction between MARCH1 with STING or TBK1. The ubiquitination of STING or TBK1 was analyzed using denatured co-immunoprecipitation. The level of proteins detected in the co-immunoprecipitation or denatured co-immunoprecipitation samples were determined by Western blotting. Stable knocked-down cells were constructed by infecting lentivirus bearing the related shRNA sequences. Scratch wound healing and clonogenic cell survival assays were used to detect the migration and proliferation of breast cancer cells.
Results:
We showed that MARCH1 played an important role in growth factor-induced the TBK1- mTOR signaling pathway. MARCH1 overexpression attenuated the growth factor-induced activation of mTOR signaling pathway, whereas its deficiency resulted in the opposite effect. Mechanistically, MARCH1 interacted with and promoted the K63-linked ubiquitination of TBK1. This ubiquitination of TBK1 then attenuated its interaction with mTOR, thereby inhibiting the growth factor-induced mTOR signaling pathway. Importantly, faster proliferation induced by MARCH1 deficiency was weakened by mTOR, STING, or TBK1 inhibition.
Conclusion:
MARCH1 suppressed growth factors mediated the mTOR signaling pathway by targeting the STING-TBK1-mTOR axis.
Insights
The E3 ubiquitin ligase MARCH1 inhibits the mTOR signaling pathway by targeting TBK1, a key regulator of cell growth. This finding reveals a novel mechanism controlling cell proliferation in response to growth factors.
Area of Science:
- Cellular signaling
- Molecular biology
- Cancer research
Background:
- TBK1 (TANK-binding kinase 1) activates the mTOR signaling pathway, crucial for cell growth.
- Regulation of the TBK1-mTOR pathway remains incompletely understood.
- STING interacts with both TBK1 and MARCH1, suggesting a potential regulatory role for MARCH1.
Purpose of the Study:
- To investigate whether MARCH1 regulates the mTOR signaling pathway by targeting TBK1.
Main Methods:
- Co-immunoprecipitation (Co-IP) to confirm protein interactions.
- Denatured co-immunoprecipitation to analyze ubiquitination.
- Western blotting to quantify protein levels.
- Lentivirus-mediated shRNA for stable gene knockdown.
- Scratch wound healing and clonogenic cell survival assays for proliferation and migration analysis.
Main Results:
- MARCH1 negatively regulates the growth factor-induced TBK1-mTOR signaling pathway.
- MARCH1 overexpression attenuates mTOR activation; MARCH1 deficiency enhances it.
- MARCH1 promotes K63-linked ubiquitination of TBK1, weakening its interaction with mTOR.
- MARCH1 deficiency-induced proliferation is reversed by inhibiting mTOR, STING, or TBK1.
Conclusions:
- MARCH1 suppresses growth factor-mediated mTOR signaling by targeting the STING-TBK1-mTOR axis.
- MARCH1 acts as a negative regulator in this pathway, impacting cell proliferation.
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