Skip to content
#gene editing Open access

Mutation-induced phenotypic plasticity drives formation of a pro-metastatic tumour-intrinsic niche

Aug 2026 · bioRxiv · 2 citations
Biology

TL;DR

It is argued that formation of a tumour-intrinsic niche is a prerequisite for BRAF-mutant CRC seeding to distant organs and that interference with niche formation may help avoid metastatic relapse.

Abstract

Colorectal cancer (CRC) progression is characterised by a remarkable increase in plasticity and cellular heterogeneity1,2. The ability of cells to shift states and adopt mixed lineage potential exacerbates during metastasis and associates with poor patient survival3. How these atypical differentiated states emerge and drive cancer progression however has remained unclear. Here, we investigate this issue for BRAF-mutant CRC that commonly arise via the serrated pathway4 and are linked to poor prognosis via incompletely understood progression steps. Using patient-derived organoids, gene editing and murine tumour models, we show that mutations in RNF43, a regulator of WNT receptor abundance5, endow BRAF-mutant CRC with metastatic capacity by driving a non-dividing tumour-intrinsic niche cell (TINC) state that provides growth factor self-sufficiency to the cancer tissue. TINCs are enriched in RNF43-mutant, mucinous and metastatic samples of human CRC, and ablation of TINCs lead to re-acquired external growth factor dependency during CRC organoid outgrowth. Together, our findings uncover a mechanism by which tumours leverage cellular plasticity to mediate self-organised stem– and niche-cell interactions. Our results argue that formation of a tumour-intrinsic niche is a prerequisite for BRAF-mutant CRC seeding to distant organs and that interference with niche formation may help avoid metastatic relapse.

Read PDF

Similar papers

Open access Jul 2026

Progressive intestinal tumor cell plasticity, Myc activation, and loss of Lgr5+ tumor stem cell lineage commitment upon Wnt depletion

It is demonstrated that a plastic cell state (PCS) is present already in polyps from patients with familial adenomatous polyposis and in mouse intestinal adenomas, in which PCS is associated with PROX1+ tumor stem cells.

Marika Lassila, Fatemeh Seyednasrollah, Cinzia Bessone et al. · 0 citations
Open access Jul 2026

Spatial ecology of breast cancer reveals co-evolution of proliferative and dormant niches.

A G0 persister-like state with reduced copy number alteration burden and hallmarks of dormancy is uncovered, characterised by transcriptional reprogramming of stress response pathways and increased epithelial-mesenchymal plasticity.

Cenk Celik, William A. Weston, Thais de Moraes-Lacerda et al. · 1 citation
Open access Jul 2026

Fluctuating environment causes neoplastic transition and epithelial-mesenchymal plasticity in human cells

The immortalized non-tumorigenic breast epithelial cell line (MCF10A) develops neoplastic clones under fluctuating conditions in-vitro that mimic the harsh tumor microenvironment and is identified as a potential therapeutic target against epithelial-mesenchymal plasticity and metastatic spread in breast cancer.

Erez Persi, Rafael R. Canevarolo, P. Sudalagunta et al. · 1 citation
Open access Jul 2026

Fibroblast-Enhanced Tumour Microenvironment Signalling Promotes Adaptive Doxorubicin Tolerance in Heterotypic Melanoma Spheroids

These findings indicate that fibroblasts redirect chemotherapy responses toward a stress-adaptive, persister-like phenotype and establish fibroblast-containing 3D melanoma spheroids as a physiologically relevant platform for studying tumour microenvironment-mediated chemotherapy tolerance and stromal-tumour interactions.

Ilie-Ovidiu Pavel, G. Negrea, S. Mészáros et al. · 0 citations

Related blog posts