Chapman E J, Hurst C D, Pitt E, Chambers P, Aveyard J S, Knowles M A
Cancer Research UK Clinical Centre, St James's University Hospital, Leeds, UK.
Oncogene. 2006 Aug 17;25(36):5037-45. doi: 10.1038/sj.onc.1209513. Epub 2006 Apr 17.
The CDKN2A locus is frequently inactivated in urothelial cell carcinoma (UCC), yet how this alteration contributes to bladder tumorigenesis is not known. Although most UCC express telomerase, inactivation of the p16/Rb pathway is generally required for in vitro immortalisation. This and the involvement of p16 in senescence of normal human urothelial cells (NHUC) suggest that CDKN2A deletion may aid bypass of senescence and allow immortalisation. CDKN2A encodes p16 and p14ARF and therefore inactivation of this locus can disrupt both the Rb and p53 tumour suppressor pathways. Retrovirus-mediated transduction was used to specifically modulate the p16/Rb and/or p53 tumour suppressor pathways in NHUC and to express human telomerase reverse transcriptase (hTERT). Expression of hTERT bypassed Rb and p53 pathway-dependent barriers to proliferation and immortalised NHUC. TERT-NHUC had normal karyotypes, were non-tumorigenic and unexpectedly retained CDKN2A. Thus, the phenotypic significance of inactivation of CDKN2A in UCC may not be solely related to bypass of senescence. Phenotypic assays in human urothelial cells have relied on cell strains derived from invasive tumours or NHUC immortalised by expression of SV40-large T. The production of genetically normal but immortal NHUC lines now provides a valuable platform for experiments to examine the timing and combination of events necessary for UCC tumorigenesis.
CDKN2A基因座在尿路上皮细胞癌(UCC)中经常失活,但这种改变如何促进膀胱肿瘤发生尚不清楚。尽管大多数UCC表达端粒酶,但体外永生化通常需要p16/Rb途径失活。这以及p16参与正常人尿路上皮细胞(NHUC)衰老表明,CDKN2A缺失可能有助于绕过衰老并实现永生化。CDKN2A编码p16和p14ARF,因此该基因座失活可破坏Rb和p53肿瘤抑制途径。采用逆转录病毒介导的转导特异性调节NHUC中的p16/Rb和/或p53肿瘤抑制途径,并表达人端粒酶逆转录酶(hTERT)。hTERT的表达绕过了Rb和p53途径依赖性的增殖障碍,并使NHUC永生化。TERT-NHUC具有正常核型,无致瘤性,且意外地保留了CDKN2A。因此,UCC中CDKN2A失活的表型意义可能不仅仅与绕过衰老有关。人尿路上皮细胞的表型分析依赖于源自浸润性肿瘤的细胞系或通过表达SV40大T而永生化的NHUC。现在,基因正常但永生化的NHUC系的产生为研究UCC肿瘤发生所需事件的时间和组合的实验提供了一个有价值的平台。