AI Article Synopsis

  • Invasive properties are essential for tumor progression and spread in KRAS-driven lung cancer, with different molecular subtypes showing unique invasion modes that influence growth and treatment response.
  • A new experimental approach was developed to identify targetable signaling pathways related to early invasion in two major subtypes, TP53 and LKB1, revealing that BMP6 is specifically upregulated in LKB1-mutant lung tumors.
  • Pre-clinical studies demonstrated that inhibiting the ALK2/BMP6 signaling pathway effectively suppresses tumor growth in a mouse model, highlighting LKB1's role in regulating iron homeostasis during cancer progression and resistance to ferroptosis.

Article Abstract

The acquisition of invasive properties is a prerequisite for tumor progression and metastasis. Molecular subtypes of KRAS-driven lung cancer exhibit distinct modes of invasion that likely contribute to unique growth properties and therapeutic susceptibilities. Despite this, pre-clinical discovery strategies designed to exploit invasive phenotypes are lacking. To address this, we designed an experimental system to screen for targetable signaling pathways linked to active early invasion phenotypes in the two most prominent molecular subtypes, TP53 and LKB1, of KRAS-driven lung adenocarcinoma (LUAD). By combining live-cell imaging of human bronchial epithelial cells in a 3D invasion matrix with RNA transcriptome profiling, we identified the LKB1-specific upregulation of bone morphogenetic protein 6 (BMP6). Examination of early-stage lung cancer patients confirmed upregulation of BMP6 in LKB1-mutant lung tumors. At the molecular level, we find that the canonical iron regulatory hormone Hepcidin is induced via BMP6 signaling upon LKB1 loss, where intact LKB1 kinase activity is necessary to maintain signaling homeostasis. Furthermore, pre-clinical studies in a novel Kras/Lkb1-mutant syngeneic mouse model show that potent growth suppression was achieved by inhibiting the ALK2/BMP6 signaling axis with single agents that are currently in clinical trials. We show that alterations in the iron homeostasis pathway are accompanied by simultaneous upregulation of ferroptosis protection proteins. Thus, LKB1 is sufficient to regulate both the 'gas' and 'breaks' to finely tune iron-regulated tumor progression.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312689PMC
http://dx.doi.org/10.1101/2023.06.14.544941DOI Listing

Publication Analysis

Top Keywords

lung cancer
12
iron homeostasis
8
homeostasis pathway
8
lkb1-mutant lung
8
tumor progression
8
molecular subtypes
8
kras-driven lung
8
lung
5
live-cell invasive
4
invasive phenotyping
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!