生物
细胞外基质
真皮
细胞生物学
毛囊
重编程
表皮(动物学)
细胞分化
祖细胞
干细胞
皮肤癌
病理
细胞
解剖
癌症
医学
遗传学
基因
作者
Nordin Bansaccal,Pauline Vieugué,Rahul M. Sarate,Yura Song,Esmeralda Minguijón,Yekaterina A. Miroshnikova,Dagmar Zeuschner,Amandine Collin,Justine Allard,Dan Engelman,Anne-Lise Delaunois,Mélanie Liagre,Leona de Groote,Evy Timmerman,Delphi Van Haver,Francis Impens,Isabelle Salmon,Sara A. Wickström,Alejandro Sifrim,Cédric Blanpain
出处
期刊:Nature
[Springer Nature]
日期:2023-11-15
卷期号:623 (7988): 828-835
被引量:26
标识
DOI:10.1038/s41586-023-06740-y
摘要
The skin epidermis is constantly renewed throughout life1,2. Disruption of the balance between renewal and differentiation can lead to uncontrolled growth and tumour initiation3. However, the ways in which oncogenic mutations affect the balance between renewal and differentiation and lead to clonal expansion, cell competition, tissue colonization and tumour development are unknown. Here, through multidisciplinary approaches that combine in vivo clonal analysis using intravital microscopy, single-cell analysis and functional analysis, we show how SmoM2—a constitutively active oncogenic mutant version of Smoothened (SMO) that induces the development of basal cell carcinoma—affects clonal competition and tumour initiation in real time. We found that expressing SmoM2 in the ear epidermis of mice induced clonal expansion together with tumour initiation and invasion. By contrast, expressing SmoM2 in the back-skin epidermis led to a clonal expansion that induced lateral cell competition without dermal invasion and tumour formation. Single-cell analysis showed that oncogene expression was associated with a cellular reprogramming of adult interfollicular cells into an embryonic hair follicle progenitor (EHFP) state in the ear but not in the back skin. Comparisons between the ear and the back skin revealed that the dermis has a very different composition in these two skin types, with increased stiffness and a denser collagen I network in the back skin. Decreasing the expression of collagen I in the back skin through treatment with collagenase, chronic UV exposure or natural ageing overcame the natural resistance of back-skin basal cells to undergoing EHFP reprogramming and tumour initiation after SmoM2 expression. Altogether, our study shows that the composition of the extracellular matrix regulates how susceptible different regions of the body are to tumour initiation and invasion. Experiments in mice show that expression of the oncogene SmoM2 induces basal cell carcinoma in the ear epidermis but not in the back skin, and that this difference in susceptibility is regulated by the extracellular matrix.
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