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Musashi-2 Deficiency Triggers Colorectal Cancer Ferroptosis by Downregulating the MAPK Signaling Cascade to Inhibit
Xiaole Meng1,2,3,4, Xiao Peng4, Wanxin Ouyang1,4
1Organ Transplantation Institute of Xiamen University, Fujian Provincial Key Laboratory of Organ and Tissue Regeneration, School of Medicine, Xiamen University, Xiamen, China.
Background:
Musashi-2 (MSI2) is a critical RNA-binding protein (RBP) whose ectopic expression drives the pathogenesis of various cancers. Accumulating evidence suggests that inducing ferroptosis of tumor cells can inhibit their malignant biological behavior as a promising therapeutic approach. However, it is unclear whether MSI2 regulates cell death in colorectal cancer (CRC), especially the underlying mechanisms and biological effects in CRC ferroptosis remain elusive.
Methods:
Experimental methods including qRT‒PCR, immunofluorescence, flow cytometry, western blot, co-immunoprecipitation, CCK-8, colony formation assay, in vitro cell transwell migration and invasion assays, in vivo xenograft tumor experiments, liver and lung CRC metastasis models, CAC mice models, transmission electron microscopy, immunohistochemistry, histopathology, 4D label-free proteomics sequencing, bioinformatic and database analysis were used in this study.
Results:
Here, we investigated that MSI2 was upregulated in CRC and positively correlated with ferroptosis inhibitor molecules. MSI2 deficiency suppressed CRC malignancy by inhibiting cell proliferation, viability, migration and invasion in vitro and in vivo; and MSI2 deficiency triggered CRC ferroptosis by changing the intracellular redox state (ROS levels and lipid peroxidation), erastin induced cell mortality and viability, iron homeostasis (intracellular total irons and ferrous irons), reduced glutathione (GSH) levels and mitochondrial injury. Mechanistically, through 4D-lable free proteomics analysis on SW620 stable cell lines, we demonstrated that MSI2 directly interacted with p-ERK and MSI2 knockdown downregulated the p-ERK/p38/MAPK axis signaling pathway, which further repressed MAPKAPK2 and HPSB1 phosphorylation, leading to decreased expression of PCNA and Ki67 and increased expression of ACSL4 in cancer cells. Furthermore, HSPB1 could rescue the phenotypes of MSI2 deficiency on CRC ferroptosis in vitro and in vivo.
Conclusions:
This study indicates that MSI2 deficiency suppresses the growth and survival of CRC cells and promotes ferroptosis by inactivating the MAPK signaling pathway to inhibit HSPB1 phosphorylation, which leads to downregulation of PCNA and Ki67 and upregulation of ACSL4 in cancer cells and subsequently induces redox imbalance, iron accumulation and mitochondrial shrinkage, ultimately triggering ferroptosis. Therefore, targeted inhibition of MSI2/MAPK/HSPB1 axis to promote ferroptosis might be a potential treatment strategy for CRC.
Insights
Musashi-2 (MSI2) deficiency suppresses colorectal cancer (CRC) growth by inducing ferroptosis. This occurs via the MAPK signaling pathway, offering a potential therapeutic strategy for CRC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Research
Background:
- Musashi-2 (MSI2), an RNA-binding protein, is implicated in cancer pathogenesis.
- Inducing ferroptosis is a promising strategy to inhibit tumor growth.
- The role and mechanisms of MSI2 in colorectal cancer (CRC) ferroptosis are not well understood.
Purpose of the Study:
- To investigate the role of MSI2 in colorectal cancer (CRC) cell death and ferroptosis.
- To elucidate the underlying molecular mechanisms by which MSI2 affects CRC ferroptosis.
- To evaluate the therapeutic potential of targeting the MSI2 pathway in CRC.
Main Methods:
- Utilized a comprehensive set of experimental techniques including qRT-PCR, western blot, flow cytometry, and proteomics.
- Conducted in vitro and in vivo experiments, including cell assays, xenograft models, and metastasis models.
- Employed bioinformatic and database analysis for mechanistic insights.
Main Results:
- MSI2 is upregulated in CRC and correlates with ferroptosis inhibitors.
- MSI2 deficiency inhibits CRC proliferation, migration, and invasion while promoting ferroptosis.
- MSI2 interacts with p-ERK, downregulating the MAPK pathway, inhibiting HSPB1 phosphorylation, and altering ferroptosis markers (ACSL4, PCNA, Ki67).
Conclusions:
- MSI2 deficiency promotes CRC ferroptosis by inactivating the MAPK/HSPB1 pathway, leading to redox imbalance and mitochondrial damage.
- Targeting the MSI2/MAPK/HSPB1 axis to induce ferroptosis presents a potential therapeutic strategy for CRC.
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