Suresh Babu Vishnu, Bisht Anadi, Mallipatna Ashwin, Sa Deepak, Dudeja Gagan, Kannan Ramaraj, Shetty Rohit, Guha Nilanjan, Heymans Stephane, Ghosh Arkasubhra
GROW Research Laboratory, Narayana Nethralaya Foundation, Bangalore 560099, India.
Department of Cardiology, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, 6229 ER Maastricht, The Netherlands.
Cancers (Basel). 2022 Oct 19;14(20):5124. doi: 10.3390/cancers14205124.
Advanced retinoblastoma (Rb) tumors display high metastatic spread to distant tissues, causing a potent threat to vision and life. Through transcriptomic profiling, we discovered key upregulated genes that belonged to the epithelial-mesenchymal transition (EMT) and chemotherapy resistance pathways in advanced Rb tumors. Through in vitro models, we further showed that Rb null tumor cells under prolonged chemo drug exposure, acquires a metastasis-like phenotype through the EMT program mediated by ZEB1 and SNAI2 and these cells further acquires chemotherapeutic resistance through cathepsin-L- and MDR1-mediated drug efflux mechanisms. Using a miRNA microarray, we identified miR-181a-5p as being significantly reduced in advanced Rb tumors, which was associated with an altered EMT and drug-resistance genes. We showed that enhancing miR-181a-5p levels in Rb null chemo-resistant sublines reduced the ZEB1 and SNAI2 levels and halted the mesenchymal transition switch, further reducing the drug resistance. We thus identified miR-181a-5p as a therapeutically exploitable target for EMT-triggered drug-resistant cancers that halted their invasion and migration and sensitized them to low-dose chemotherapy drugs.
晚期视网膜母细胞瘤(Rb)肿瘤表现出向远处组织的高度转移扩散,对视力和生命构成严重威胁。通过转录组分析,我们发现了晚期Rb肿瘤中属于上皮-间质转化(EMT)和化疗耐药途径的关键上调基因。通过体外模型,我们进一步表明,在长期化疗药物暴露下,Rb基因缺失的肿瘤细胞通过由ZEB1和SNAI2介导的EMT程序获得转移样表型,并且这些细胞通过组织蛋白酶-L和MDR1介导的药物外排机制进一步获得化疗耐药性。使用miRNA微阵列,我们确定miR-181a-5p在晚期Rb肿瘤中显著降低,这与EMT和耐药基因的改变有关。我们表明,提高Rb基因缺失的化疗耐药亚系中miR-181a-5p的水平可降低ZEB1和SNAI2的水平,并阻止间质转化开关,进一步降低耐药性。因此,我们确定miR-181a-5p是EMT引发的耐药癌症的一个可用于治疗的靶点,它可以阻止这些癌症的侵袭和迁移,并使它们对低剂量化疗药物敏感。