Shiina Marisa, Bourguignon Lilly Y W
San Francisco Veterans Affairs Medical Center and Department of Medicine, University of California at San Francisco and Endocrine Unit (111N2), 4150 Clement Street, San Francisco, CA 94121, USA.
Int J Cell Biol. 2015;2015:989070. doi: 10.1155/2015/989070. Epub 2015 Sep 10.
We determined that human head and neck cancer cells (HSC-3 cell line) contain a subpopulation displaying cancer stem cell (CSC) properties and are very tumorigenic. Specifically, we investigated whether different sizes of hyaluronan (HA) (e.g., 5 kDa, 20 kDa, 200 kDa, or 700 kDa-HA-sizes) play a role in regulating these CSCs. First, we observed that 200 kDa-HA (but not other sizes of HA) preferentially induces certain stem cell marker expression resulting in self-renewal and clonal formation of these cells. Further analyses indicate that 200 kDa-HA selectively stimulates the expression of a panel of microRNAs (most noticeably miR-10b) in these CSCs. Survival protein (cIAP-1) expression was also stimulated by 200 kDa-HA in these CSCs leading to cisplatin resistance. Furthermore, our results indicate that the anti-miR-10 inhibitor not only decreases survival protein expression, but also increases chemosensitivity of the 200 kDa-HA-treated CSCs. These findings strongly support the contention that 200 kDa-HA plays a pivotal role in miR-10 production leading to survival protein upregulation and chemoresistance in CSCs. Together, our findings suggest that selective activation of oncogenic signaling by certain sizes of HA (e.g., 200 kDa-HA) may be instrumental in the formation of CSC functions leading to tumor cell survival and chemoresistance in head and neck cancer progression.
我们确定人类头颈癌细胞(HSC - 3细胞系)包含一个具有癌症干细胞(CSC)特性且极具致瘤性的亚群。具体而言,我们研究了不同大小的透明质酸(HA)(例如5 kDa、20 kDa、200 kDa或700 kDa - HA大小)是否在调节这些CSC中发挥作用。首先,我们观察到200 kDa - HA(而非其他大小的HA)优先诱导某些干细胞标志物的表达,从而导致这些细胞的自我更新和克隆形成。进一步分析表明,200 kDa - HA在这些CSC中选择性地刺激了一组微小RNA(最显著的是miR - 10b)的表达。在这些CSC中,存活蛋白(cIAP - 1)的表达也受到200 kDa - HA的刺激,导致顺铂耐药。此外,我们的结果表明,抗miR - 10抑制剂不仅降低了存活蛋白的表达,还增加了经200 kDa - HA处理的CSC的化学敏感性。这些发现有力地支持了以下观点:200 kDa - HA在导致CSC中存活蛋白上调和化学耐药的miR - 10产生中起关键作用。总之,我们的研究结果表明,特定大小的HA(例如200 kDa - HA)对致癌信号的选择性激活可能有助于在头颈癌进展过程中形成CSC功能,从而导致肿瘤细胞存活和化学耐药。