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.

PubMed
Abstract

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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