Mori N, Yokota J, Akiyama T, Sameshima Y, Okamoto A, Mizoguchi H, Toyoshima K, Sugimura T, Terada M
National Cancer Center Research Institute, Tokyo, Japan.
Oncogene. 1990 Nov;5(11):1713-7.
Loss of heterozygosity for chromosome 13q including the RB locus is a common genetic alteration in small-cell lung carcinoma (SCLC) as well as in retinoblastoma. We examined the RB cDNA sequences of exon 13 to 18 and exon 19 to 23 in 9 SCLC cell lines to detect mutations which cause inactivation of the remaining allele of the RB gene. Internal deletions of RB cDNA were observed in 3 of the 9 SCLC cell lines. In the Lu-24 cell line, a 114 base pairs (bp) deletion corresponding to exon 22 was due to abnormal splicing, which probably resulted from a two-base mutation within genomic exon 22, and aberrant 105 kilodaltons RB protein was detected by immunoprecipitation analysis. A base pair deletion within exon 20 in the Lu-135 cell line and a 1 bp deletion within exon 23 in the Lu-141 cell line were due to the deletions of the corresponding genomic DNA, and each deletion resulted in formation of a premature termination codon. These results indicate that both alleles of the RB genes are inactivated in SCLC by several different mechanisms, including small deletion, mutation and chromosomal loss.
13号染色体长臂包括RB基因座的杂合性缺失是小细胞肺癌(SCLC)以及视网膜母细胞瘤中常见的基因改变。我们检测了9个SCLC细胞系中RB基因第13至18外显子以及第19至23外显子的cDNA序列,以检测导致RB基因剩余等位基因失活的突变。在9个SCLC细胞系中的3个中观察到了RB cDNA的内部缺失。在Lu-24细胞系中,对应于第22外显子的114个碱基对(bp)缺失是由于异常剪接,这可能是由基因组第22外显子内的两个碱基突变导致的,并且通过免疫沉淀分析检测到了异常的105千道尔顿RB蛋白。Lu-135细胞系中第20外显子内的一个碱基对缺失以及Lu-141细胞系中第23外显子内的一个1 bp缺失是由于相应基因组DNA的缺失,并且每个缺失都导致了提前终止密码子的形成。这些结果表明,SCLC中RB基因的两个等位基因通过几种不同的机制失活,包括小缺失、突变和染色体丢失。