Osathanon Thanaphum, Nowwarote Nunthawan, Pavasant Prasit
Mineralized Tissue Research Unit, Department of Anatomy, Faculty of Dentistry, Chulalongkorn University.
J Oral Sci. 2016;58(2):283-94. doi: 10.2334/josnusd.15-0535.
Notch signaling dysregulation plays an important role in altering cancer cell behaviors; however, its role in oral squamous cell carcinoma (OSCC) remains controversial. This study aimed to investigate the role of Notch signaling related genes in human OSCC using a meta-analysis of Gene Expression Omnibus database (GEO-publicly available gene expression microarray data) and to examine the role of Notch signaling in OSCC behaviors. The meta-analysis included 13 GEO datasets and was performed by combining effect sizes in a random effect model. The results demonstrated that in OSCC dysregulated genes participated in the metabolic process and protein binding as determined by gene ontology analysis. Enriched pathway analysis demonstrated the majority of the dysregulated genes were involved in pathway categories as follow; pathway in cancers, small cell lung cancer, extracellular matrix-receptor interaction, focal adhesion, and cell cycle progression. Interestingly, the enriched pathway analysis also demonstrated that OSCC samples exhibited an upregulation of genes in Notch signaling pathway, namely JAG1, JAG2, ADAM17, NCSTN, PSEN1, NCOR2, NUMB, DVL3, HDAC1, and HDAC2. Furthermore, Notch signaling inhibition by a γ-secretase inhibitor significantly decreased OSCC cell proliferation in vitro, corresponding with a decrease in C-FOS mRNA expression. The study demonstrated that Notch signaling is dysregulated in human OSCC and plays a role in cell proliferation. (J Oral Sci 58, 283-294, 2016).
Notch信号失调在改变癌细胞行为方面发挥着重要作用;然而,其在口腔鳞状细胞癌(OSCC)中的作用仍存在争议。本研究旨在通过对基因表达综合数据库(GEO——公开可用的基因表达微阵列数据)进行荟萃分析,探讨Notch信号相关基因在人类OSCC中的作用,并研究Notch信号在OSCC行为中的作用。荟萃分析纳入了13个GEO数据集,并采用随机效应模型合并效应量进行分析。结果表明,通过基因本体分析确定,在OSCC中失调的基因参与了代谢过程和蛋白质结合。富集通路分析表明,大多数失调基因涉及以下通路类别:癌症通路、小细胞肺癌、细胞外基质——受体相互作用、粘着斑和细胞周期进程。有趣的是,富集通路分析还表明,OSCC样本中Notch信号通路的基因,即JAG1、JAG2、ADAM17、NCSTN、PSEN1、NCOR2、NUMB、DVL3、HDAC1和HDAC2,出现上调。此外,γ-分泌酶抑制剂抑制Notch信号可显著降低体外OSCC细胞增殖,同时C-FOS mRNA表达也相应降低。该研究表明,Notch信号在人类OSCC中失调,并在细胞增殖中发挥作用。(《口腔科学杂志》58卷,283 - 294页,2016年)