Bhat Vasudeva, Sun Yu Jia, Weger Steve, Raouf Afshin
1 Department of Immunology, Faculty of Health Sciences, University of Manitoba , Winnipeg, Manitoba, Canada .
2 Research Institute for Oncology and Hematology, CancerCare Manitoba , Winnipeg, Manitoba, Canada .
Stem Cells Dev. 2016 Apr 1;25(7):522-9. doi: 10.1089/scd.2015.0315. Epub 2016 Mar 16.
The evolutionarily conserved Notch and Wnt signaling pathways have demonstrated roles in normal mammary gland development and in breast carcinogenesis. We previously reported that in human mammary gland, signaling through NOTCH3 alone regulates the commitment of the undifferentiated bipotential progenitors to the luminal cell fate, indicating that NOTCH3 may regulate the expression of unique genes apart from the other Notch receptors. In this study, we used gain of function and loss of function experiments and found that a Wnt signaling receptor, Frizzled7 (FZD7), is a unique and nonredundant target of NOTCH3 in human breast epithelial cells. Interestingly, neither the constitutively active forms of NOTCH1-2, 4 nor loss of expression of these receptors were able to alter expression of FZD7 in human breast epithelial cells. We further show that FZD7-expressing cells are found more frequently in the luminal progenitor-enriched subpopulation of cells obtained from breast reduction samples compared with the undifferentiated bipotent progenitors. Also, we show that NOTCH3-induced expression of FZD7 occurs in the absence of CSL (CBF1-Suppressor of Hairless-Lag-1). Our data suggest that noncanonical Notch signaling through NOTCH3 could modulate Wnt signaling via FZD7 and in this way, might be involved in luminal cell differentiation.
进化上保守的Notch和Wnt信号通路已被证明在正常乳腺发育和乳腺癌发生过程中发挥作用。我们之前报道过,在人类乳腺中,仅通过NOTCH3信号传导就能调节未分化的双潜能祖细胞向腔面细胞命运的定向分化,这表明NOTCH3可能调控一些与其他Notch受体不同的独特基因的表达。在本研究中,我们通过功能获得和功能丧失实验发现,一种Wnt信号受体卷曲蛋白7(FZD7)是人类乳腺上皮细胞中NOTCH3的一个独特且非冗余的靶点。有趣的是,NOTCH1 - 2、4的组成型激活形式以及这些受体表达的缺失均无法改变人类乳腺上皮细胞中FZD7的表达。我们进一步表明,与未分化的双潜能祖细胞相比,在从缩乳样本中获得的富含腔面祖细胞的亚群细胞中,表达FZD7的细胞更为常见。此外,我们还表明,NOTCH3诱导的FZD7表达在没有CSL(CBF1 - 无毛抑制因子 - Lag - 1)的情况下也会发生。我们的数据表明,通过NOTCH3的非经典Notch信号传导可能通过FZD7调节Wnt信号传导,进而可能参与腔面细胞的分化。