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Biology subjects

Colombe, M.

Publications and source records attributed to Colombe, M..

2 recordsLinked to original sources

BMP pathway antagonism by Grem1 regulates epithelial cell fate in intestinal regeneration

In the intestine, the homeostatic effect of Bone Morphogenetic Protein (BMP) on cell fate has predominantly been inferred through pathway inactivation. Here, we assessed the impact of autocrine Bmp4 expression on secretory cell fate. Ligand exposure reduced proliferation, expedited terminal differentiation, abrogated long-term secretory cell survival and prevented dedifferentiation. As stem cell plasticity is required for regenerative adaptive reprogramming, we spatiotemporally mapped and functionally explored BMPs role in epithelial restitution. Following ulceration, physiological attenuation of BMP signalling arose through upregulation of the secreted antagonist, Grem1, from topographically distinct populations of stromal cells. Concomitant expression supported functional compensation, following Grem1 deletion from tissue-resident fibroblasts. BMP pathway manipulation showed that antagonist-mediated BMP attenuation was obligatory, but functionally sub-maximal, as regeneration was impaired or enhanced by epithelial overexpression of Bmp4 or Grem1 respectively. Mechanistically, Bmp4 abrogated regenerative stem cell reprogramming, despite a convergent impact of YAP/TAZ on cell fate in remodelled wounds.

cell biology

Heterogeneity in clone dynamics within and adjacent to intestinal tumours identified by Dre-mediated lineage tracing

Somatic models of tissue pathology commonly utilise induction of gene specific mutations in mice mediated by spatiotemporal regulation of Cre recombinase. Subsequent investigation of the onset and development of disease can be limited by the inability to track changing cellular behaviours over time. Here a lineage tracing approach based on ligand dependent activation of Dre recombinase that can be employed independently of Cre is described. The clonal biology of intestinal epithelium following Cre-mediated stabilisation of {beta}-catenin reveals that within tumours many new clones rapidly become extinct. Surviving clones show accelerated population of tumour glands compared to normal intestinal crypts but in a non-uniform manner indicating that intra-tumour glands follow heterogeneous dynamics. In tumour adjacent epithelium clone sizes are smaller than in the background epithelium as a whole. This suggests a zone of around 5 crypt diameters within which clone expansion is inhibited by tumours and that may facilitate their growth.

cancer biology