Han Song, Gonzalo David H, Feely Michael, Delitto Daniel, Behrns Kevin E, Beveridge Mark, Zhang DongYu, Thomas Ryan, Trevino Jose G, Schmittgen Thomas D, Hughes Steven J
Department of Surgery, University of Florida, Gainesville, FL 32610, USA.
Department of Pathology, College of Medicine, University of Florida, Gainesville, FL 32610, USA.
Oncotarget. 2016 Jul 20;8(33):54054-54067. doi: 10.18632/oncotarget.10722. eCollection 2017 Aug 15.
The pancreatic adenocarcinoma (PDAC) microenvironment is largely comprised of fibrotic tumor associated stroma (TAS) that contributes to the lethal biology of PDAC. microRNA (miRNA) are small non-coding RNAs that regulate gene expression. We hypothesized that interactions between PDAC cells and TAS cells within the microenvironment modulate miRNA expression and thus, tumor biology. We observed that miR-205 and members of the miR-200 family (miR-200a, -200b, -200c, -141 and miR-429) were exclusively expressed in PDAC cells, consistent with an epithelial miRNA signature, while miR-145 and miR-199 family members (miR-199a and -199b) were solely expressed in TAS cells, consistent with a stromal miRNA signature. This finding was confirmed by qRT-PCR of RNA obtained by laser-capture microdissection of surgical specimens. Using an co-culture model, we further demonstrated regulation of miRNA expression by cell-cell contact. Forced expression in TAS cells of miR-200b/-200c and miR-205 to mimic these observed changes in miRNA concentrations induced secretion of GM-CSF and IP10, and notably inhibited migration. These data suggest interactions within the tumor microenvironment alter miRNA expression, which in turn have a functional impact on TAS.
胰腺腺癌(PDAC)微环境主要由促纤维增生性肿瘤相关基质(TAS)组成,其对PDAC的致命生物学特性起作用。微小RNA(miRNA)是调节基因表达的小型非编码RNA。我们假设微环境中PDAC细胞与TAS细胞之间的相互作用调节miRNA表达,进而影响肿瘤生物学特性。我们观察到miR-205和miR-200家族成员(miR-200a、-200b、-200c、-141和miR-429)仅在PDAC细胞中表达,与上皮miRNA特征一致,而miR-145和miR-199家族成员(miR-199a和-199b)仅在TAS细胞中表达,与基质miRNA特征一致。通过对手术标本进行激光捕获显微切割获得的RNA进行qRT-PCR,证实了这一发现。使用共培养模型,我们进一步证明了细胞间接触对miRNA表达的调节作用。在TAS细胞中强制表达miR-200b/-200c和miR-205以模拟观察到的miRNA浓度变化,可诱导GM-CSF和IP10分泌,并显著抑制迁移。这些数据表明肿瘤微环境中的相互作用会改变miRNA表达,进而对TAS产生功能性影响。