Muzzopappa Mariana, Milán Marco
a Institute for Research in Biomedicine (IRB Barcelona) , the Barcelona Institute of Science and Technology , Baldiri Reixac, 10-12, Barcelona , Spain.
b Institució Catalana de Recerca i Estudis Avan¸ats (ICREA) , Passeig de Lluís Companys , Barcelona , Spain.
Fly (Austin). 2018;12(2):127-132. doi: 10.1080/19336934.2018.1441652. Epub 2018 Mar 1.
The growth of epithelial tumors is often governed by cell interactions with the surrounding stroma. Drosophila has been instrumental in identifying the relevant molecular elements mediating these interactions. Of note is the role of the TNF ligand Eiger, released from recruited blood cells, in activating the JNK tumor-promoting pathway in epithelial tumors. JNK drives the transcriptional induction of mitogenic molecules, matrix metalloproteases and systemic signals that lead to tumor growth, tissue invasiveness and malignancy. Here we review our findings on a tumor-intrinsic, Eiger- and stroma-independent mechanism that contributes to the unlimited growth potential of tumors caused either by chromosomal instability or impaired cell polarity. This newly identified mechanism, which was revealed in an experimental condition in which contacts between tumor cells and wild-type epithelial cells were minimized, relies on interactions between functionally distinct tumor cell populations that activate JNK in a cell-autonomous manner. We discuss the impact of cell interaction-based feedback amplification loops on the unlimited growth potential of epithelial tumors. These findings are expected to contribute to the identification of the relevant cell populations and molecular mechanisms to be targeted in drug therapy.
上皮肿瘤的生长通常受细胞与周围基质相互作用的调控。果蝇在鉴定介导这些相互作用的相关分子元件方面发挥了重要作用。值得注意的是,从募集的血细胞中释放的TNF配体Eiger在激活上皮肿瘤中的JNK促肿瘤通路方面所起的作用。JNK驱动有丝分裂分子、基质金属蛋白酶和导致肿瘤生长、组织侵袭性和恶性肿瘤的全身信号的转录诱导。在这里,我们回顾了我们关于一种肿瘤内在的、不依赖Eiger和基质的机制的研究结果,该机制导致由染色体不稳定或细胞极性受损引起的肿瘤具有无限生长潜力。这种新发现的机制是在肿瘤细胞与野生型上皮细胞之间的接触最小化的实验条件下揭示的,它依赖于功能不同的肿瘤细胞群体之间的相互作用,这些相互作用以细胞自主的方式激活JNK。我们讨论了基于细胞相互作用的反馈放大环对上皮肿瘤无限生长潜力的影响。这些发现有望有助于识别药物治疗中需要靶向的相关细胞群体和分子机制。