Kasamatsu Atsushi, Endo Yosuke, Uzawa Katsuhiro, Nakashima Dai, Koike Hirofumi, Hashitani Susumu, Numata Tsutomu, Urade Masahiro, Tanzawa Hideki
Department of Clinical Molecular Biology, Graduate School of Medicine, Chiba University, Chuo-ku, Japan.
Int J Biochem Cell Biol. 2005 Sep;37(9):1869-80. doi: 10.1016/j.biocel.2005.04.004.
Adenoid cystic carcinoma (ACC) of the salivary gland often has a variable clinical course with a poor prognosis. To investigate DNA copy number aberrations associated with ACCs, we compared comparative genome hybridization data from ACCs (n = 6) with other types of salivary gland tumors such as adenocarcinomas (n = 3) and pleomorphic adenomas (n = 6). While 15 gain loci (1q32, 6p25, 6q21-q24, 7q11.2, 7q31, 10q11.2, 11p12-q12, 12q13, 12q14, 13q24, 16p13.3-13.2, 18p11.3, 18q23, 19q13.4, and Xq28) were detected, no DNA loss locus was evident. To examine the expression status of genes on the ACC-associated loci, transcriptional measurements of approximately 38000 human genes then were monitored using Affymetrix U133 Plus 2.0 GeneChips. A total of 4431 genes were found differentially expressed by at least two-fold between ACCs and normal salivary glands. Of them, 3162 genes were up-regulated and 1269 genes were down-regulated in ACCs. After obtaining locus information about the RNA transcripts from the Affymetrix database, we found 262 ACC-associated genes with increased expression on ACC-associated loci. To investigate functional network and gene ontology, the 262 genes were analyzed using Ingenuity Pathway Analysis Tool. The function with the highest P value was a cancer-related function (P = 2.52e-4 to 4.71e-2). In addition, we identified pituitary tumor-transforming gene 1 and transformation related protein 63 genes that were up-regulated by increasing DNA copy number and modulated expression of oncogenes. These results suggested that the combination of copy number and gene expression profiling provides an improved strategy for gene identification in salivary gland ACCs.
涎腺腺样囊性癌(ACC)通常具有多变的临床病程,预后较差。为了研究与ACC相关的DNA拷贝数畸变,我们将ACC(n = 6)的比较基因组杂交数据与其他类型的涎腺肿瘤,如腺癌(n = 3)和多形性腺瘤(n = 6)进行了比较。虽然检测到15个增益位点(1q32、6p25、6q21 - q24、7q11.2、7q31、10q11.2、11p12 - q12、12q13、12q14、13q24、16p13.3 - 13.2、18p11.3、18q23、19q13.4和Xq28),但未发现明显的DNA缺失位点。为了检测ACC相关位点上基因的表达状态,随后使用Affymetrix U133 Plus 2.0基因芯片监测了约38000个人类基因的转录水平。共发现4431个基因在ACC和正常涎腺之间的差异表达至少为两倍。其中,3162个基因在ACC中上调,1269个基因在ACC中下调。从Affymetrix数据库获得RNA转录本的位点信息后,我们发现262个与ACC相关的基因在ACC相关位点上表达增加。为了研究功能网络和基因本体,使用Ingenuity Pathway Analysis工具对这262个基因进行了分析。P值最高的功能是与癌症相关的功能(P = 2.52e - 4至4.71e - 2)。此外,我们鉴定出垂体肿瘤转化基因1和转化相关蛋白63基因,它们通过增加DNA拷贝数而上调,并调节癌基因的表达。这些结果表明,拷贝数和基因表达谱分析的结合为涎腺ACC中的基因鉴定提供了一种改进策略