Mariadason John M, Arango Diego, Corner Georgia A, Arañes Maria J, Hotchkiss Kylie A, Yang Wancai, Augenlicht Leonard H
Department of Oncology, Albert Einstein Cancer Center, Montefiore Medical Center, Bronx, New York 10467, USA.
Cancer Res. 2002 Aug 15;62(16):4791-804.
Colonic epithelial cells undergo cell cycle arrest, lineage specific differentiation, and apoptosis, as they migrate along the crypt axis toward the lumenal surface. The Caco-2 colon carcinoma cell line models many of these phenotypic changes, in vitro. We used this model system and cDNA microarray analysis to characterize the genetic reprogramming that accompanies colon cell differentiation. The analyses revealed extensive yet functionally coordinated alterations in gene expression during the differentiation program. Consistent with cell differentiation reflecting a more specialized phenotype, the majority of changes (70%) were down-regulations of gene expression. Specifically, Caco-2 cell differentiation was accompanied by the coordinate down-regulation of genes involved in cell cycle progression and DNA synthesis, which reflected the concomitant reduction in cell proliferation. Simultaneously, genes involved in RNA splicing and transport, protein translation, folding, and degradation, were coordinately down-regulated, paralleled by a reduction in protein synthesis. Conversely, genes involved in xenobiotic and drug metabolism were up-regulated, which was linked to increased resistance of differentiated cells to chemotherapeutic agents. Increased expression of genes involved in extracellular matrix deposition, lipid transport, and lipid metabolism were also evident. Underlying these altered profiles of expression, components of signal transduction pathways, and several transcription factors were altered in expression.
结肠上皮细胞在沿着隐窝轴朝管腔表面迁移的过程中会经历细胞周期停滞、谱系特异性分化和凋亡。在体外,Caco-2结肠癌细胞系模拟了许多这些表型变化。我们使用这个模型系统和cDNA微阵列分析来表征伴随结肠细胞分化的基因重编程。分析揭示了分化程序期间基因表达广泛但功能协调的改变。与细胞分化反映更特殊的表型一致,大多数变化(70%)是基因表达的下调。具体而言,Caco-2细胞分化伴随着参与细胞周期进程和DNA合成的基因的协同下调,这反映了细胞增殖的相应减少。同时,参与RNA剪接和转运、蛋白质翻译、折叠和降解的基因也被协同下调,同时蛋白质合成减少。相反,参与外源性物质和药物代谢的基因被上调,这与分化细胞对化疗药物的抗性增加有关。参与细胞外基质沉积、脂质转运和脂质代谢的基因表达增加也很明显。在这些改变的表达谱之下,信号转导通路的成分和几个转录因子的表达发生了改变。