pepmg_

Study summary · research use only

Vimentin is required for tumor progression and metastasis in a mouse model of non-small cell lung cancer

Study · animal · Oncogene · 2023 · DOI 10.1038/s41388-023-02703-9 · PMID 37161053

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

This study used mouse models of non-small cell lung cancer (NSCLC), including LSL-KrasG12D; Tp53fl/fl mice crossed with vimentin knockout mice (KPV-/- vs. KPV+/+), treatment of KPV+/+ mice with withaferin A (WFA), and implantation of luciferase-expressing KPV+/+, KPV-/-, or KPVY117L cells into athymic mice. KPV-/- mice showed reduced tumor growth and longer survival than KPV+/+ mice, WFA treatment was associated with reduced tumor growth and lung tumor burden, and KPV-/- and KPVY117L cells (unable to form mature vimentin filaments) failed to metastasize to the lung. Metabolomic and transcriptomic analysis showed KPV-/- cells had upregulated ferroptosis-related genes and reduced glutathione peroxidase 4 (GPX4), with accumulation of lipid peroxides and increased ferroptosis, which the authors link to vimentin's role in tumor growth, metastasis, and protection from ferroptosis in this model.

Abstract

Vimentin is highly expressed in metastatic cancers, and its expression correlates with poor patient prognoses. However, no causal in vivo studies linking vimentin and non-small cell lung cancer (NSCLC) progression existed until now. We use three complementary in vivo models to show that vimentin is required for the progression of NSCLC. First, we crossed LSL-KrasG12D; Tp53fl/fl mice (KPV+/+) with vimentin knockout mice (KPV-/-) to demonstrate that KPV-/- mice have attenuated tumor growth and improved survival compared with KPV+/+ mice. Next, we therapeutically treated KPV+/+ mice with withaferin A (WFA), an agent that disrupts vimentin intermediate filaments (IFs). We show that WFA suppresses tumor growth and reduces tumor burden in the lung. Finally, luciferase-expressing KPV+/+, KPV-/-, or KPVY117L cells were implanted into the flanks of athymic mice to track cancer metastasis to the lung. In KPVY117L cells, vimentin forms oligomers called unit-length filaments but cannot assemble into mature vimentin IFs. KPV-/- and KPVY117L cells fail to metastasize, suggesting that cell-autonomous metastasis requires mature vimentin IFs. Integrative metabolomic and transcriptomic analysis reveals that KPV-/- cells upregulate genes associated with ferroptosis, an iron-dependent form of regulated cell death. KPV-/- cells have reduced glutathione peroxidase 4 (GPX4) levels, resulting in the accumulation of toxic lipid peroxides and increased ferroptosis. Together, our results demonstrate that vimentin is required for rapid tumor growth, metastasis, and protection from ferroptosis in NSCLC.

Read the full study on PubMed ↗ Open-access full text ↗

pepmg summarizes the peer-reviewed literature and links to every source — it sells nothing, ships nothing, and gives no medical, dosing, or human-use guidance. Don't just trust this summary: follow the citation to its source and read it yourself. Research use only.