分子生物学
生物
外显子
基因复制
基因
串联外显子复制
南方斑点
聚合酶链反应
多重连接依赖探针扩增
内含子
反聚合酶链反应
基因组DNA
序列分析
遗传学
多重聚合酶链反应
作者
Dolores Arjona,M. Josefa Bello,M. Eva Alonso,Cinthia Amiñoso,Alberto Isla,José M. de Campos,José Luis Andrès Sarasa,Manuel Gutiérrez,Antonio Villalobo,Juan A. Rey
标识
DOI:10.1111/j.1365-2990.2005.00653.x
摘要
The epidermal growth factor receptor (EGFR) is a transmembrane glycoprotein with tyrosine kinase activity. This report investigates the presence of mutations, amplification and/or over‐expression of the EGFR gene in 86 glial tumours including 44 glioblastomas, 21 anaplastic astrocytomas, and 21 WHO grade II astrocytomas, using polymerase chain reaction/single‐strand conformation polymorphism, semiquantitative reverse‐transcription‐polymerase chain reaction (RT‐PCR) and Southern Blot techniques. Gene amplification values were found in 34 tumours. Amplification levels were not uniform, as the transmembrane region presented lower amplification rates than extra‐ and intracellular domains. For the 19 samples with sufficient available tumour tissue we found over‐expression in 11, and no EGFR mRNA expression in three. Ten cases showed deletion transcripts, and EGFR VIII was identified in all of these cases. One of the cases with EGFR vIII also presented a truncated form, C‐958, while another showed an in frame tandem duplication of exons 18–25. We found 14 cases with sequence/structure gene alterations, including seven on which genomic novel DNA changes were identified: a missense mutation (1052C > T/Ala265Val), an insertion (InsCCC2498/Ins Pro748), three intronic changes (E6 + 72delG, E22–14C > G and E18–109T > C), a new polymorphic variant E12 + 22A > T, and one case that presented a 190 bp insertion, that was produced by the intron‐7–exon‐8 duplication and generated a truncated EGFR with intact exons 1–8 followed by an additional amino acidic sequence: Val‐Ile‐Met‐Trp. These findings corroborate that EGFR is non‐randomly involved in malignant glioma development and that different mutant forms participate in aberrant activation of tyrosine kinase pathways.
科研通智能强力驱动
Strongly Powered by AbleSci AI