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人卵巢癌细胞系中Rb基因及细胞周期蛋白依赖性激酶4抑制基因(p16INK4和p15INK4B)的分析

Analysis of the Rb gene and cyclin-dependent kinase 4 inhibitor genes (p16INK4 and p15INK4B) in human ovarian carcinoma cell lines.

作者信息

Yaginuma Y, Hayashi H, Kawai K, Kurakane T, Saitoh Y, Kitamura S, Sengoku K, Ishikawa M

机构信息

Department of Obstetrics and Gynecology, Asahikawa Medical College, Japan.

出版信息

Exp Cell Res. 1997 Jun 15;233(2):233-9. doi: 10.1006/excr.1997.3560.

Abstract

In the present study, we analyzed human ovarian carcinoma cell lines for abnormalities in the tumor suppressor gene Rb (retinoblastoma) and in cyclin-dependent kinase 4 (CDK4) inhibitor genes (p16INK4 and p15INK4B) using molecular biology techniques. For the Rb gene, in all six cell lines (PA-1, Caov-3 and -4, OVCAR-3, SK-OV-3, and Kuramochi), Rb gene abnormality was not detected using Southern blotting. In the Caov-3 cell line transcripts were not detectable by either Northern blot or polymerase chain reaction. Sequence analysis of the entire coding region of the Rb gene revealed point mutations (AAC to GAC) resulting in codon 123 (Asn to Asp) changes in the Caov-4 cell line. In the PA-1 cell line both wild-type Rb and mutant-type Rb (codon 798: CGG to TGG) were expressed, and in the OVCAR-3 cell line both wild-type Rb and mutant-type Rb (codon 704: ATG to GTG) were expressed. In four of six human ovarian carcinoma cell lines Rb gene abnormality was detected. For the p16INK4 and p15INK4B genes, only the SK-OV-3 cell line had abnormalities. There was a gene rearrangement or minor deletion of the p16INK4 gene in the SK-OV-3 cell line, while the p15INK4B gene was deleted in this cell line. In the SK-OV-3 cell line no mRNAs of p16INK4 and p15INK4B were expressed. At the point of Rb gene inactivation, we can explain five cell lines of six: four cell lines had abnormalities in the Rb gene itself, which is another mechanism by which the Rb gene is inactivated, while one cell line (SK-OV-3) had abnormalities in CDK4 inhibitor genes, another of the inactivation mechanisms of the Rb gene. These data suggest that abnormalities of Rb and CDK4 inhibitor genes (p16INK4, p15INK4B) may be involved in human ovarian carcinogenesis.

摘要

在本研究中,我们使用分子生物学技术分析了人卵巢癌细胞系中肿瘤抑制基因Rb(视网膜母细胞瘤)以及细胞周期蛋白依赖性激酶4(CDK4)抑制基因(p16INK4和p15INK4B)的异常情况。对于Rb基因,在所有六个细胞系(PA - 1、Caov - 3和 - 4、OVCAR - 3、SK - OV - 3以及Kuramochi)中,使用Southern印迹法未检测到Rb基因异常。在Caov - 3细胞系中,通过Northern印迹法或聚合酶链反应均未检测到转录本。Rb基因整个编码区的序列分析显示,Caov - 4细胞系中存在点突变(AAC突变为GAC),导致密码子123(Asn变为Asp)发生改变。在PA - 1细胞系中,野生型Rb和突变型Rb(密码子798:CGG变为TGG)均有表达,在OVCAR - 3细胞系中,野生型Rb和突变型Rb(密码子704:ATG变为GTG)均有表达。在六个卵巢癌细胞系中的四个中检测到了Rb基因异常。对于p16INK4和p15INK4B基因,只有SK - OV - 3细胞系存在异常。在SK - OV - 3细胞系中,p16INK4基因发生了基因重排或小片段缺失,而该细胞系中的p15INK4B基因缺失。在SK - OV - 3细胞系中,未表达p16INK4和p15INK4B的mRNA。在Rb基因失活方面,我们可以解释六个细胞系中的五个:四个细胞系的Rb基因本身存在异常,这是Rb基因失活的另一种机制,而一个细胞系(SK - OV - 3)的CDK4抑制基因存在异常,这是Rb基因失活的另一种机制。这些数据表明,Rb和CDK4抑制基因(p16INK4、p15INK4B)的异常可能与人卵巢癌的发生有关。

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