Department of Medicinal Biochemistry, School of Pharmacy, Aichi Gakuin University, Nagoya, Japan,
Department of Medicinal Biochemistry, School of Pharmacy, Aichi Gakuin University, Nagoya, Japan.
Pathobiology. 2020;87(5):277-290. doi: 10.1159/000508350. Epub 2020 Sep 16.
Scirrhous gastric cancer, which accounts for approximately 10% of all gastric cancers, often disseminates to the peritoneum, leading to intractable cases with poor prognosis. There is an urgent need for new treatment approaches for this difficult cancer.
We previously established an original cell line, HSC-60, from a scirrhous gastric cancer patient and isolated a peritoneal-metastatic cell line, 60As6, in nude mice following orthotopic inoculations. In the present study, we focused on the expression of long noncoding ribonucleic acid (RNA) (lncRNA) in the cell lines and investigated the mechanism on peritoneal dissemination.
We demonstrated that an lncRNA, HOX transcript antisense RNA (HOTAIR), is expressed significantly more highly in 60As6 than HSC-60 cells. Then, using both HOTAIR knockdown and overexpression experiments, we showed that high-level expression of HOTAIR promotes epithelial-mesenchymal transition (EMT) in 60As6 cells. By luciferase assay, we found that HOTAIR directly targets and binds to miR-217, and that miR-217 directly binds to Zinc finger E-box-binding homeobox 1 (ZEB1). The knockdown of HOTAIR in 60As6 cells significantly reduced the invasion activity and peritoneal dissemination - and significantly prolonged the survival - in the orthotopic tumor mouse model.
An EMT-associated pathway (the HOTAIR-miR-217-ZEB1 axis) appears to inhibit peritoneal dissemination and could lead to a novel therapeutic strategy against scirrhous gastric cancer in humans.
硬癌约占所有胃癌的 10%,常播散至腹膜,导致预后不良的难治性病例。这种难治性癌症急需新的治疗方法。
我们之前从硬癌患者中建立了一个原始细胞系 HSC-60,并在裸鼠原位接种后分离出一个腹膜转移细胞系 60As6。在本研究中,我们专注于细胞系中长链非编码 RNA(lncRNA)的表达,并研究了腹膜扩散的机制。
我们表明,HOX 转录反义 RNA(HOTAIR)在 60As6 细胞中的表达明显高于 HSC-60 细胞。然后,通过 HOTAIR 敲低和过表达实验,我们表明高水平表达的 HOTAIR 促进了 60As6 细胞中的上皮-间充质转化(EMT)。通过荧光素酶测定,我们发现 HOTAIR 可直接靶向并结合 miR-217,而 miR-217 可直接结合锌指 E 框结合同源盒 1(ZEB1)。在 60As6 细胞中敲低 HOTAIR 可显著降低侵袭活性和腹膜扩散,并显著延长原位肿瘤小鼠模型的存活时间。
与 EMT 相关的途径(HOTAIR-miR-217-ZEB1 轴)似乎可抑制腹膜扩散,并可能为人类硬癌提供一种新的治疗策略。