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A Single-cell Perturbation Landscape of Colonic Stem Cell Polarisation

<p>Cancer cells are regulated by oncogenic mutations and microenvironmental signals, yet these processes are often studied separately. To functionally map how cell-intrinsic and cell-extrinsic cues co-regulate cell-fate in colorectal cancer (CRC), we performed a systematic single-cell analysis of 1,107 colonic organoid cultures regulated by 1) CRC oncogenic mutations, 2) microenvironmental fibroblasts and macrophages, 3) stromal ligands, and 4) signalling inhibitors. Multiplexed single-cell analysis revealed a stepwise epithelial differentiation landscape dictated by combinations of oncogenes and stromal ligands, spanning from fibroblast-induced Clusterin (CLU)<sup>+</sup> revival colonic stem cells (revCSC) to oncogene-driven LRIG1<sup>+</sup> hyper-proliferative CSC (proCSC). The transition from revCSC to proCSC is regulated&nbsp;by decreasing WNT3A and TGF-&beta;-driven YAP signalling and increasing KRAS<sup>G12D</sup> or stromal EGF/Epiregulin-activated MAPK/PI3K flux. We find APC-loss and KRAS<sup>G12D</sup> collaboratively limit access to revCSC and disrupt stromal-epithelial communication -- trapping epithelia in the proCSC fate. These results reveal that oncogenic mutations dominate homeostatic differentiation by obstructing cell-extrinsic regulation of cell-fate plasticity.</p>

ShareScore

36/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
8
Harmonization
4
Access
16
Reuse readiness
8
Engagement
0

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