Reeves Mark E, Firek Matthew, Chen Shin-Tai, Amaar Yousef G
Surgical Oncology Laboratory, Loma Linda VA Medical Center, Loma Linda, California, United States of America; Department of Surgery, Loma Linda University School of Medicine, Loma Linda, California, United States of America.
Surgical Oncology Laboratory, Loma Linda VA Medical Center, Loma Linda, California, United States of America.
PLoS One. 2014 Jul 9;9(7):e101679. doi: 10.1371/journal.pone.0101679. eCollection 2014.
RASSF1C is a major isoform of the RASSF1 gene, and is emerging as an oncogene. This is in contradistinction to the RASSF1A isoform, which is an established tumor suppressor. We have previously shown that RASSF1C promotes lung cancer cell proliferation and have identified RASSF1C target genes with growth promoting functions. Here, we further report that RASSF1C promotes lung cancer cell migration and enhances lung cancer cell tumor sphere formation. We also show that RASSF1C over-expression reduces the inhibitory effects of the anti-cancer agent, betulinic acid (BA), on lung cancer cell proliferation. In previous work, we demonstrated that RASSF1C up-regulates piwil1 gene expression, which is a stem cell self-renewal gene that is over-expressed in several human cancers, including lung cancer. Here, we report on the effects of BA on piwil1 gene expression. Cells treated with BA show decreased piwil1 expression. Also, interaction of IGFBP-5 with RASSF1C appears to prevent RASSF1C from up-regulating PIWIL1 protein levels. These findings suggest that IGFBP-5 may be a negative modulator of RASSF1C/ PIWIL1 growth-promoting activities. In addition, we found that inhibition of the ATM-AMPK pathway up-regulates RASSF1C gene expression.
RASSF1C是RASSF1基因的一种主要亚型,正逐渐成为一种癌基因。这与已确定的肿瘤抑制因子RASSF1A亚型形成对比。我们之前已经表明RASSF1C促进肺癌细胞增殖,并鉴定出具有促进生长功能的RASSF1C靶基因。在此,我们进一步报道RASSF1C促进肺癌细胞迁移并增强肺癌细胞肿瘤球形成。我们还表明RASSF1C过表达降低了抗癌药物桦木酸(BA)对肺癌细胞增殖的抑制作用。在之前的工作中,我们证明RASSF1C上调piwil1基因表达,piwil1是一种干细胞自我更新基因,在包括肺癌在内的几种人类癌症中过表达。在此,我们报道BA对piwil1基因表达的影响。用BA处理的细胞显示piwil1表达降低。此外,IGFBP - 5与RASSF1C的相互作用似乎阻止RASSF1C上调PIWIL1蛋白水平。这些发现表明IGFBP - 5可能是RASSF1C/PIWIL1促生长活性的负调节因子。此外,我们发现抑制ATM - AMPK途径会上调RASSF1C基因表达。