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乳腺癌中9号染色体短臂等位基因缺失及p16/CDKN2情况与永生化乳腺上皮细胞中p16失活的证据

Chromosome 9p allelic loss and p16/CDKN2 in breast cancer and evidence of p16 inactivation in immortal breast epithelial cells.

作者信息

Brenner A J, Aldaz C M

机构信息

University of Texas M.D. Anderson Cancer Center, Department of Carcinogenesis, Smithville 78957, USA.

出版信息

Cancer Res. 1995 Jul 1;55(13):2892-5.

PMID:7796417
Abstract

To define the extent of involvement of chromosome 9p in breast carcinogenesis, we performed microsatellite length polymorphism analysis of markers spanning this region. Of 24 primary breast carcinomas analyzed, we observed a high frequency (58%) of loss of heterozygosity or allelic imbalance affecting subregion 9p21-22. Mutational analysis of CDKN2 (p16) was performed to determine whether this gene was the target of such alterations. Of 21 tumors analyzed, only 1 showed a mutation of probable consequence, suggesting that CDKN2 appears not to be the target of loss of heterozygosity and indicating the possible existence of another tumor suppressor gene within this region. Additionally, since it has been suggested that some CDKN2 deletions and mutations could be due to an in vitro phenomenon, four immortal breast cell lines derived from normal epithelium, MCF10F, MCF12F, 184A1, and 184B5, were examined for loss or mutation of CDKN2. Two lines (MCF10F and MCF12F) showed homozygous deletions of CDKN2, and one (184A1) revealed a hemizygous deletion and a nonsense mutation in the remaining allele. This could imply an important role of CDKN2 in the control of immortalization or in vitro adaptation and is the first evidence of such in nontumor-derived cell lines. Additionally, this is the first report of frequent loss of heterozygosity in the 9p21-22 chromosome subregion of uncultured primary breast tumors.

摘要

为了确定9号染色体短臂(9p)在乳腺癌发生过程中的受累范围,我们对跨越该区域的标记物进行了微卫星长度多态性分析。在分析的24例原发性乳腺癌中,我们观察到影响9p21 - 22亚区域的杂合性缺失或等位基因失衡的高频发生率(58%)。对CDKN2(p16)进行了突变分析,以确定该基因是否是此类改变的靶点。在分析的21例肿瘤中,只有1例显示出可能有后果的突变,这表明CDKN2似乎不是杂合性缺失的靶点,并提示该区域可能存在另一个肿瘤抑制基因。此外,由于有人提出一些CDKN2缺失和突变可能是体外现象所致,因此对4株源自正常上皮的永生化乳腺细胞系MCF10F、MCF12F、184A1和184B5进行了CDKN2缺失或突变检测。两株细胞系(MCF10F和MCF12F)显示出CDKN2的纯合缺失,一株(184A1)在剩余等位基因中显示出半合子缺失和一个无义突变。这可能意味着CDKN2在永生化控制或体外适应性方面具有重要作用,这是在非肿瘤来源细胞系中的首个此类证据。此外,这是未培养的原发性乳腺肿瘤9p21 - 22染色体亚区域杂合性频繁缺失的首次报道。

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