Posgrado en Ciencias Genómicas, Universidad Autónoma de La Ciudad de México, CDMX, Mexico.
Programa en Biomedicina Molecular y Red de Biotecnología, Instituto Politécnico Nacional, CDMX, Mexico.
Cancer Lett. 2018 Sep 28;432:17-27. doi: 10.1016/j.canlet.2018.06.003. Epub 2018 Jun 6.
RNA-based multi-target therapies focused in the blocking of signaling pathways represent an attractive approach in cancer. Here, we uncovered a miR-204 cooperative targeting of multiple signaling transducers involved in vasculogenic mimicry (VM). Our data showed that invasive triple negative MDA-MB-231 and Hs-578T breast cancer cells, but not poorly invasive MCF-7 cells, efficiently undergoes matrix-associated VM under hypoxia. Ectopic restoration of miR-204 in MDA-MB-231 cells leads to a potent inhibition of VM and reduction of number of branch points and patterned 3D channels. Further analysis of activation state of multiple signaling pathways using Phosphorylation Antibody Arrays revealed that miR-204 reduced the expression and phosphorylation levels of 13 proteins involved in PI3K/AKT, RAF1/MAPK, VEGF, and FAK/SRC signaling. In agreement with phospho-proteomic profiling, VM was impaired following pharmacological administration of PI3K and SRC inhibitors. Mechanistic studies confirmed that miR-204 exerts a negative post-transcriptional regulation of PI3K-α and c-SRC proto-oncogenes. Moreover, overall survival analysis of a large cohort of breast cancer patients indicates that low miR-204 and high FAK/SRC levels were associated with worst outcomes. In conclusion, our study provides novel lines of evidence indicating that miR-204 may exerts a fine-tuning regulation of the synergistic transduction of PI3K/AKT/FAK mediators critical in VM formation.
基于 RNA 的多靶点疗法专注于阻断信号通路,是癌症治疗的一种有吸引力的方法。在这里,我们发现 miR-204 可以协同靶向多个参与血管生成拟态 (VM) 的信号转导器。我们的数据表明,侵袭性三阴性 MDA-MB-231 和 Hs-578T 乳腺癌细胞,但不是低侵袭性 MCF-7 细胞,在缺氧下能够有效地进行基质相关的 VM。在 MDA-MB-231 细胞中外源性恢复 miR-204 导致 VM 被强烈抑制,分支点和模式化 3D 通道的数量减少。使用磷酸化抗体阵列对多种信号通路的激活状态进行进一步分析表明,miR-204 降低了 13 种参与 PI3K/AKT、RAF1/MAPK、VEGF 和 FAK/SRC 信号通路的蛋白质的表达和磷酸化水平。与磷酸化蛋白质组学分析一致,PI3K 和 SRC 抑制剂的药理学给药后 VM 受损。机制研究证实,miR-204 对 PI3K-α 和 c-SRC 原癌基因发挥负转录后调控作用。此外,对大量乳腺癌患者的总体生存分析表明,miR-204 水平低和 FAK/SRC 水平高与最差的预后相关。总之,我们的研究提供了新的证据表明,miR-204 可能对 PI3K/AKT/FAK 介质的协同转导进行微调调节,这对于 VM 的形成至关重要。