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肺癌肿瘤抑制因子1(TSLC1)改变肿瘤发生生长特性和基因表达。

Tumor suppressor in lung cancer 1 (TSLC1) alters tumorigenic growth properties and gene expression.

作者信息

Sussan Thomas E, Pletcher Mathew T, Murakami Yoshinori, Reeves Roger H

机构信息

Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, MD 21205-2185, USA.

出版信息

Mol Cancer. 2005 Aug 5;4:28. doi: 10.1186/1476-4598-4-28.

Abstract

BACKGROUND

Introduction of cDNA or genomic clones of the tumor suppressor in lung cancer 1 (TSLC1) gene into the non-small cell lung cancer line, A549, reverses tumorigenic growth properties of these cells. These results and the observation that TSLC1 is down-regulated in a number of tumors suggest that TSLC1 functions as a critical switch mediating repression of tumorigenesis.

RESULTS

To investigate this mechanism, we compared growth properties of A549 with the TSLC1-containing derivative. We found a G1/S phase transition delay in 12.2. Subtractive hybridization, quantitative PCR, and TranSignal Protein/DNA arrays were used to identify genes whose expression changed when TSLC1 was up-regulated. Members of common G1/S phase regulatory pathways such as TP53, MYC, RB1 and HRAS were not differentially expressed, indicating that TSLC1 may function through an alternative pathway(s). A number of genes involved in cell proliferation and tumorigenesis were differentially expressed, notably genes in the Ras-induced senescence pathway. We examined expression of several of these key genes in human tumors and normal lung tissue, and found similar changes in expression, validating the physiological relevance of the A549 and 12.2 cell lines.

CONCLUSION

Gene expression and cell cycle differences provide insights into potential downstream pathways of TSLC1 that mediate the suppression of tumor properties in A549 cells.

摘要

背景

将肺癌1(TSLC1)基因的cDNA或基因组克隆导入非小细胞肺癌细胞系A549中,可逆转这些细胞的致瘤生长特性。这些结果以及TSLC1在多种肿瘤中表达下调的观察结果表明,TSLC1作为一个关键开关,介导肿瘤发生的抑制作用。

结果

为了研究这一机制,我们比较了A549及其含TSLC1的衍生物的生长特性。我们发现12.2中存在G1/S期转换延迟。采用消减杂交、定量PCR和TranSignal蛋白质/DNA芯片来鉴定TSLC1上调时表达发生变化的基因。TP53、MYC、RB1和HRAS等常见G1/S期调控途径的成员没有差异表达,这表明TSLC1可能通过一条或多条替代途径发挥作用。一些参与细胞增殖和肿瘤发生的基因存在差异表达,特别是Ras诱导衰老途径中的基因。我们检测了其中几个关键基因在人类肿瘤和正常肺组织中的表达,发现表达有类似变化,验证了A549和12.2细胞系的生理相关性。

结论

基因表达和细胞周期差异为TSLC1的潜在下游途径提供了见解,这些途径介导了A549细胞中肿瘤特性的抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ee/1208945/e0a1fb153784/1476-4598-4-28-1.jpg

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