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神经母细胞瘤中DCC、DPC4和MADR2/JV18-1基因的表达及突变分析

Expression and mutational analysis of the DCC, DPC4, and MADR2/JV18-1 genes in neuroblastoma.

作者信息

Kong X T, Choi S H, Inoue A, Xu F, Chen T, Takita J, Yokota J, Bessho F, Yanagisawa M, Hanada R, Yamamoto K, Hayashi Y

机构信息

Department of Pediatrics, Faculty of Medicine, University of Tokyo, Japan.

出版信息

Cancer Res. 1997 Sep 1;57(17):3772-8.

PMID:9288786
Abstract

Loss of heterozygosity (LOH) on chromosome 18q21 is found frequently in various human cancers. Three candidate tumor suppressor genes, DCC (deleted in colorectal carcinomas), DPC4 (deleted in pancreatic carcinomas, locus 4), and MADR2/JV18-1 (MAD-related gene 2), have been cloned and identified from this chromosome region. We have reported recently that LOH on chromosome 18q is observed frequently in neuroblastoma. Alterations of DCC are involved in many human tumors. DPC4 and MADR2/JV18-1 are recently demonstrated to be altered in pancreatic and colorectal cancers, respectively. To confirm if inactivation of the DCC, DPC4, and MADR2/JV18-1 genes is involved in the pathogenesis of neuroblastoma and to clarify the mechanism of inactivation, we analyzed the expression of DCC, DPC4, and MADR2/JV18-1 in neuroblastoma cell lines and primary tumors by reverse transcription-PCR and investigated the mutations in the coding regions of these genes by PCR/reverse transcription-PCR single-strand conformation polymorphism. We found that 12 of 25 (48%) cell lines and 14 of 32 (44%) primary tumors, including 3 with 18q LOH, had absent or reduced expression of DCC mRNA. Expression was more likely to be reduced in advanced (67%) than in early stage neuroblastomas (24%) (P = 0.036), suggesting that inactivation of the DCC gene plays an important role in the progression of neuroblastoma. Altered expression of DPC4 was found in six (24%) cell lines and six (19%) tumors. MADR2/JV18-1 expression was reduced or absent only in four (16%) cell lines and three (9%) tumors. Mutations of the DCC genes were examined in 25 of 29 exons in neuroblastoma cell lines, and those exons in which mutations were found were further examined in primary tumors. We found missense mutations of AAC (Asn) to AGC (Ser) at DCC codon 176 in one cell line and ACC (Thr) to ATC (Ile) at codon 1105 in one cell line and tumor, respectively; polymorphisms of CGA (Arg) to GGA (Gly) at codon 201 and TTT (Phe) to TTG (Leu) at codon 951 in most of the cell lines and tumors; and a silent mutation of GAG (Glu) to GAA (Glu) at codon 118 in four cell lines and five primary tumors. We did not identify any mutations in the DPC4 and MADR2/JV18-1 genes in neuroblastoma. Our results suggested that mutations of the DCC gene may be involved in the pathogenesis of neuroblastomas but failed to account for the relatively high frequency of the altered expression, implying that other mechanisms are responsible for the inactivation of the DCC gene in neuroblastoma. Low frequency of reduced or absent mRNA expression and lack of mutations in DPC4 and MADR2/JV18-1 genes suggested a limited role for these two genes in neuroblastoma.

摘要

18号染色体长臂21区杂合性缺失(LOH)在多种人类癌症中频繁出现。从该染色体区域已克隆并鉴定出三个候选抑癌基因,即结直肠癌缺失基因(DCC)、胰腺癌缺失基因4(DPC4)和MAD相关基因2(MADR2/JV18-1)。我们最近报道,神经母细胞瘤中常观察到18号染色体长臂的LOH。DCC的改变与许多人类肿瘤有关。最近分别证实DPC4和MADR2/JV18-1在胰腺癌和结直肠癌中发生改变。为了确定DCC、DPC4和MADR2/JV18-1基因的失活是否与神经母细胞瘤的发病机制有关,并阐明失活机制,我们通过逆转录聚合酶链反应(RT-PCR)分析了神经母细胞瘤细胞系和原发性肿瘤中DCC、DPC4和MADR2/JV18-1的表达,并通过PCR/逆转录-PCR单链构象多态性研究了这些基因编码区的突变。我们发现,25个细胞系中的12个(48%)以及32个原发性肿瘤中的14个(44%),包括3个存在18号染色体长臂LOH的肿瘤,DCC mRNA表达缺失或降低。晚期神经母细胞瘤(67%)中表达降低的可能性高于早期神经母细胞瘤(24%)(P = 0.036),这表明DCC基因的失活在神经母细胞瘤进展中起重要作用。在6个(24%)细胞系和6个(19%)肿瘤中发现了DPC4表达改变。MADR2/JV18-1表达仅在4个(16%)细胞系和3个(9%)肿瘤中降低或缺失。在神经母细胞瘤细胞系的29个外显子中的25个中检测了DCC基因的突变,在原发性肿瘤中进一步检测了发现突变的那些外显子。我们在一个细胞系中发现DCC密码子176处的AAC(天冬酰胺)突变为AGC(丝氨酸),在一个细胞系和一个肿瘤中分别发现密码子1105处的ACC(苏氨酸)突变为ATC(异亮氨酸);在大多数细胞系和肿瘤中,密码子201处的CGA(精氨酸)突变为GGA(甘氨酸)以及密码子951处的TTT(苯丙氨酸)突变为TTG(亮氨酸);在4个细胞系和5个原发性肿瘤中发现密码子118处的GAG(谷氨酸)突变为GAA(谷氨酸)的沉默突变。我们在神经母细胞瘤中未鉴定出DPC4和MADR2/JV18-1基因的任何突变。我们的结果表明,DCC基因的突变可能参与神经母细胞瘤的发病机制,但无法解释表达改变的相对高频率,这意味着其他机制导致神经母细胞瘤中DCC基因的失活。DPC4和MADR2/JV18-1基因mRNA表达降低或缺失的频率较低且未发现突变,表明这两个基因在神经母细胞瘤中的作用有限。

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