Mohanty Atish, Nam Arin, Pozhitkov Alex, Yang Lu, Srivastava Saumya, Nathan Anusha, Wu Xiwei, Mambetsariev Isa, Nelson Michael, Subbalakshmi A R, Guo Linlin, Nasser Mohd W, Batra Surinder K, Orban John, Jolly Mohit Kumar, Massarelli Erminia, Kulkarni Prakash, Salgia Ravi
Department of Medical Oncology & Therapeutics Research, City of Hope National Medical Center, 1500 East Duarte Road, Duarte, CA 91010-3000, USA.
Department of Computational and Quantitative Medicine, City of Hope, 1500 East Duarte Road, Duarte, CA, USA.
iScience. 2020 Aug 22;23(9):101496. doi: 10.1016/j.isci.2020.101496. eCollection 2020 Sep 25.
Tumor heterogeneity and cisplatin resistance are major causes of tumor relapse and poor survival. Here, we show that in lung cancer, interaction between paxillin (PXN) and integrin β4 (ITGB4), components of the focal adhesion (FA) complex, contributes to cisplatin resistance. Knocking down PXN and ITGB4 attenuated cell growth and improved cisplatin sensitivity, both in 2D and 3D cultures. PXN and ITGB4 independently regulated expression of several genes. In addition, they also regulated expression of common genes including USP1 and VDAC1, which are required for maintaining genomic stability and mitochondrial function, respectively. Mathematical modeling suggested that bistability could lead to stochastic phenotypic switching between cisplatin-sensitive and resistant states in these cells. Consistently, purified subpopulations of sensitive and resistant cells re-created the mixed parental population when cultured separately. Altogether, these data point to an unexpected role of the FA complex in cisplatin resistance and highlight a novel non-genetic mechanism.
肿瘤异质性和顺铂耐药性是肿瘤复发和生存率低的主要原因。在此,我们表明在肺癌中,粘着斑(FA)复合物的组成成分桩蛋白(PXN)和整合素β4(ITGB4)之间的相互作用导致了顺铂耐药性。在二维和三维培养中,敲低PXN和ITGB4均可减弱细胞生长并提高顺铂敏感性。PXN和ITGB4分别调控多个基因的表达。此外,它们还共同调控包括USP1和VDAC1在内的一些基因的表达,USP1和VDAC1分别是维持基因组稳定性和线粒体功能所必需的。数学模型表明,双稳态可能导致这些细胞在顺铂敏感和耐药状态之间发生随机表型转换。一致的是,敏感细胞和耐药细胞的纯化亚群在单独培养时会重新形成混合的亲代群体。总之,这些数据表明FA复合物在顺铂耐药性中具有意想不到的作用,并突出了一种新的非遗传机制。