Weidenfeld Keren, Schif-Zuck Sagi, Abu-Tayeh Hanan, Kang Keunsoo, Kessler Ofra, Weissmann Marina, Neufeld Gera, Barkan Dalit
Department of Human Biology, University of Haifa, Haifa, Israel.
Department of Microbiology, Dankook University, Cheonan, Republic of Korea.
Oncotarget. 2016 Nov 1;7(44):71362-71377. doi: 10.18632/oncotarget.12109.
Recurrence of breast cancer disease years after treatment appears to arise from disseminated dormant tumor cells (DTC). The mechanisms underlying the outgrowth of DTC remain largely unknown. Here we demonstrate that dormant MCF-7 cells expressing LOXL2 acquire a cancer stem cell (CSC)-like phenotype, mediating their outgrowth in the 3D BME system that models tumor dormancy and outgrowth. Similarly, MCF-7-LOXL2 cells colonizing the lung transitioned from dormancy to metastatic outgrowth whereas MCF-7 cells remained dormant. Notably, epithelial to mesenchymal transition (EMT) of MCF-7-LOXL2 cells was required for their CSC-like properties and their transition to metastatic outgrowth. These findings were further supported by clinical data demonstrating that increase in LOXL2 mRNA levels correlates with increase in the mRNA levels of EMT and stem cells markers, and is also associated with decrease in relapse free survival of breast cancer patients. Notably, conditional hypoxia induced expression of endogenous LOXL2 in MCF-7 cells promoted EMT and the acquisition of a CSC-like phenotype, while knockdown of LOXL2 inhibited this transition. Overall, our results demonstrate that expression of LOXL2 endowed DTC with CSC-like phenotype driving their transition to metastatic outgrowth and this stem-like phenotype is dependent on EMT that can be driven by the tumor microenvironment.
乳腺癌治疗多年后复发似乎源于播散的休眠肿瘤细胞(DTC)。DTC生长的潜在机制在很大程度上仍不清楚。在此,我们证明表达LOXL2的休眠MCF-7细胞获得了癌症干细胞(CSC)样表型,介导其在模拟肿瘤休眠和生长的三维基底膜提取物(BME)系统中的生长。同样,定植于肺部的MCF-7-LOXL2细胞从休眠转变为转移性生长,而MCF-7细胞则保持休眠。值得注意的是,MCF-7-LOXL2细胞的上皮-间质转化(EMT)是其CSC样特性及其向转移性生长转变所必需的。临床数据进一步支持了这些发现,表明LOXL2 mRNA水平的升高与EMT和干细胞标志物mRNA水平的升高相关,并且还与乳腺癌患者无复发生存期的缩短有关。值得注意的是,条件性缺氧诱导MCF-7细胞中内源性LOXL2的表达促进了EMT和CSC样表型的获得,而敲低LOXL2则抑制了这种转变。总体而言,我们的结果表明,LOXL2的表达赋予DTC CSC样表型,驱动其向转移性生长转变,并且这种干细胞样表型依赖于可由肿瘤微环境驱动的EMT。