Aberrant expression of RAB1A in human tongue cancer

被引:0
作者
K Shimada
K Uzawa
M Kato
Y Endo
M Shiiba
H Bukawa
H Yokoe
N Seki
H Tanzawa
机构
[1] Graduate School of Medicine,Department of Clinical Molecular Biology
[2] Chiba University,Department of Functional Genomics
[3] Graduate School of Medicine,Division of Oral Surgery
[4] Chiba University,undefined
[5] Chiba University Hospital,undefined
[6] Center of Excellence (COE) Program in the 21st Century,undefined
[7] Graduate School of Medicine,undefined
[8] Chiba University,undefined
来源
British Journal of Cancer | 2005年 / 92卷
关键词
tongue squamous cell carcinoma; in-house cDNA microarray; gene expression profiling; gene;
D O I
暂无
中图分类号
学科分类号
摘要
This study was designed to identify specific gene expression changes in tongue squamous cell carcinomas (TSCCs) compared with normal tissues using in-house cDNA microarray that comprised of 2304 full-length cDNAs from a cDNA library prepared from normal oral tissues, primary oral cancers, and oral cancer cell lines. The genes identified by our microarray system were further analysed at the mRNA or protein expression level in a series of clinical samples by real-time quantitative reverse transcriptase–polymerase chain reaction (qRT–PCR) analysis and imuunohositochemistry. The microarray analysis identified a total of 16 genes that were significantly upregulated in common among four TSCC specimens. Consistent with the results of the microarray, increased mRNA levels of selected genes with known molecular functions were found in the four TSCCs. Among genes identified, Rab1a, a member of the Ras oncogene family, was further analysed for its protein expression in 54 TSCCs and 13 premalignant lesions. We found a high prevalence of Rab1A-overexpression not only in TSCCs (98%) but also in premalignant lesions (93%). Thus, our results suggest that rapid characterisation of the target gene(s) for TSCCs can be accomplished using our in-house cDNA microarray analysis combined with the qRT–PCR and immunohistochemistry, and that the Rab1A is a potential biomarker of tongue carcinogenesis.
引用
收藏
页码:1915 / 1921
页数:6
相关论文
共 357 条
[1]  
Alevizos I(2001)Oral cancer Oncogene 20 6196-6204
[2]  
Mahadevappa M(2002) gene expression profiling assisted by laser capture microdissection and microarray analysis Clin Cancer Res 8 794-801
[3]  
Zhang X(1995)The feasibility of using fine needle aspiration from primary breast cancers for cDNA microarray analyses J Biol Chem 270 21472-21479
[4]  
Ohyama H(1992)Sequence analysis and chromosomal localization of human cap Z Curr Opin Oncol 4 471-477
[5]  
Kohno Y(2001)Recent advances in epidemiology of head and neck cancer Br J Cancer 84 1512-1519
[6]  
Posner M(2001)Identification of potential diagnostic markers of prostate cancer and prostatic intraepithelial neoplasia using cDNA microarray J Cell Sci 24 4421-4428
[7]  
Gallagher GT(1999)Pigment epithelium-derived factor (PEDF) in neuroblastoma: a multifunctional mediator of Schwann cell antitumor activity Science 285 245-248
[8]  
Varvares M(1996)Pigment epithelium-derived factor: a potent inhibitor of angiogenesis Nat Genet 14 457-460
[9]  
Cohen D(2002)Use of cDNA microarray to analyse gene expression patterns in human cancer Clin Cancer Res 8 1155-1166
[10]  
Kim D(2001)Development and validation of a method for using breast core needle biopsies for gene expression microarray analyses Int J Cancer 92 832-838