Villarejo Ana, Molina-Ortiz Patricia, Montenegro Yenny, Moreno-Bueno Gema, Morales Saleta, Santos Vanesa, Gridley Tom, Pérez-Moreno Mirna A, Peinado Héctor, Portillo Francisco, Calés Carmela, Cano Amparo
Departamento de Bioquímica, Universidad Autónoma de Madrid: Instituto de Investigaciones Biomédicas "Alberto Sols" CSIC-UAM; IdiPAZ, Madrid 28029, Spain.
Departamento de Bioquímica, Universidad Autónoma de Madrid: Instituto de Investigaciones Biomédicas "Alberto Sols" CSIC-UAM; IdiPAZ, Madrid 28029, Spain, Fundación MD Anderson International Madrid, Madrid 28033, Spain.
Carcinogenesis. 2015 May;36(5):585-97. doi: 10.1093/carcin/bgv021. Epub 2015 Mar 16.
Snail2 is a zinc finger transcription factor involved in driving epithelial to mesenchymal transitions. Snail2 null mice are viable, but display defects in melanogenesis, gametogenesis and hematopoiesis, and are markedly radiosensitive. Here, using mouse genetics, we have studied the contributions of Snail2 to epidermal homeostasis and skin carcinogenesis. Snail2 (-/-) mice presented a defective epidermal terminal differentiation and, unexpectedly, an increase in number, size and malignancy of tumor lesions when subjected to the two-stage mouse skin chemical carcinogenesis protocol, compared with controls. Additionally, tumor lesions from Snail2 (-/-) mice presented a high inflammatory component with an elevated percentage of myeloid precursors in tumor lesions that was further increased in the presence of the anti-inflammatory agent dexamethasone. In vitro studies in Snail2 null keratinocytes showed that loss of Snail2 leads to a decrease in proliferation indicating a non-cell autonomous role for Snail2 in the skin carcinogenic response observed in vivo. Bone marrow (BM) cross-reconstitution assays between Snail2 wild-type and null mice showed that Snail2 absence in the hematopoietic system fully reproduces the tumor behavior of the Snail2 null mice and triggers the accumulation of myeloid precursors in the BM, blood and tumor lesions. These results indicate a new role for Snail2 in preventing myeloid precursors recruitment impairing skin chemical carcinogenesis progression.
Snail2是一种锌指转录因子,参与驱动上皮-间质转化。Snail2基因敲除小鼠可以存活,但在黑色素生成、配子发生和造血过程中表现出缺陷,并且对辐射高度敏感。在此,我们利用小鼠遗传学研究了Snail2对表皮稳态和皮肤癌发生的作用。与对照组相比,Snail2 (-/-) 小鼠在进行两阶段小鼠皮肤化学致癌实验时,表现出表皮终末分化缺陷,并且肿瘤病变的数量、大小和恶性程度意外增加。此外,Snail2 (-/-) 小鼠的肿瘤病变具有高度炎症成分,肿瘤病变中髓系前体细胞的百分比升高,在使用抗炎剂地塞米松的情况下进一步增加。对Snail2基因敲除角质形成细胞的体外研究表明,Snail2的缺失导致增殖减少,表明Snail2在体内观察到的皮肤致癌反应中具有非细胞自主性作用。Snail2野生型和基因敲除小鼠之间的骨髓 (BM) 交叉重建实验表明,造血系统中Snail2的缺失完全再现了Snail2基因敲除小鼠的肿瘤行为,并触发了骨髓、血液和肿瘤病变中髓系前体细胞的积累。这些结果表明Snail2在防止髓系前体细胞募集从而损害皮肤化学致癌进程方面具有新的作用。