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MICAL-L2 Is Essential for c-Myc Deubiquitination and Stability in Non-small Cell Lung Cancer Cells
Pengxiang Min1,2, Lin Zhang3, Yueyuan Wang1
1Department of Physiology, Nanjing Medical University, Nanjing, China.
Abstract:
Objectives: MICAL-L2, a member of the molecules interacting with the CasL (MICAL) family, was reported to be highly expressed in several types of cancers, however, the roles of MICAL-L2 in NSCLC pathogenesis remain to be explored. This study is designed to clarify the mechanisms by which MICAL-L2 participates in NSCLC cell proliferation. Materials and Methods: The expression levels of MICAL-L2 in human lung cancer samples were assessed by immunohistochemical staining. Cells were transfected with siRNA or plasmids to regulate MICAL-L2 expression. Cell proliferation was measured by EdU staining and CCK-8 assays. MICAL-L2 and phosphorylated/total c-Myc expression were examined by Western blotting analysis. Interaction between MICAL-L2 and c-Myc was assessed by immunofluorescence staining, Western blotting and co-immunoprecipitation assays. Western blotting, polyubiquitylation detection and protein stability assays were used to assess whether MICAL-L2 exerts its oncogenic effect via c-Myc. Results: We found that MICAL-L2 was highly expressed in human NSCLC. While overexpressing MICAL-L2 increased NSCLC cell proliferation, MICAL-L2 depletion decreased the proliferation of NSCLC cells, an effect that was linked to cell cycle arrest. MICAL-L2 physically interacted with the c-Myc protein and functioned to maintain nuclear c-Myc levels and prolonged its half-life. Knockdown of MICAL-L2 expression led to decreased c-Myc protein stability through accelerating polyubiquitylation of c-Myc and gave rise to c-Myc degradation. We further found that MICAL-L2 deubiquitinated c-Myc and blocked its degradation, presumably by inhibiting c-Myc phosphorylation at threonine residue 58. Conclusions: These results indicate that MICAL-L2 is a key regulator of c-Myc deubiquitination and stability in the nucleus, and this activity may be involved in promoting NSCLC cell proliferation.
Insights
MICAL-L2 promotes non-small cell lung cancer (NSCLC) proliferation by stabilizing the c-Myc protein. This study reveals MICAL-L2
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- MICAL-L2 (Molecules Interacting with CasL-2) is upregulated in various cancers.
- Its specific role in non-small cell lung cancer (NSCLC) pathogenesis is not well understood.
Purpose of the Study:
- To elucidate the mechanisms by which MICAL-L2 influences NSCLC cell proliferation.
- To investigate the interaction between MICAL-L2 and c-Myc in NSCLC.
Main Methods:
- Immunohistochemistry to assess MICAL-L2 expression in NSCLC tissues.
- Cell transfection (siRNA/plasmids) to modulate MICAL-L2 levels.
- EdU staining, CCK-8 assays, Western blotting, immunofluorescence, co-immunoprecipitation, and protein stability assays to analyze proliferation, cell cycle, and protein interactions.
Main Results:
- MICAL-L2 is highly expressed in NSCLC and promotes cell proliferation.
- MICAL-L2 interacts with c-Myc, maintaining its nuclear levels and prolonging its half-life.
- MICAL-L2 deubiquitinates c-Myc, inhibiting its degradation and potentially blocking phosphorylation at Thr58.
Conclusions:
- MICAL-L2 acts as a crucial regulator of c-Myc deubiquitination and stability within the nucleus.
- This regulatory function of MICAL-L2 contributes to the promotion of NSCLC cell proliferation.
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