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应用实时荧光定量 RT-PCR 检测肺癌中 ALK 转录本的 5' 和 3' 部分以检测 ALK 重排。

The use of quantitative real-time reverse transcriptase PCR for 5' and 3' portions of ALK transcripts to detect ALK rearrangements in lung cancers.

机构信息

Department of Thoracic Surgery, Fudan University Shanghai Cancer Center, 270 Dong-An Road, Shanghai 200032, China.

出版信息

Clin Cancer Res. 2012 Sep 1;18(17):4725-32. doi: 10.1158/1078-0432.CCR-12-0677. Epub 2012 Jul 12.

Abstract

PURPOSE

Approximately 3% to 7% of non-small cell lung cancers (NSCLC) harbor an ALK fusion gene, thus defining a tumor group that may be responsive to targeted therapy. The breakpoint in ALK consistently occurs at exon 20 and EML4 or other fusion partners, thus driving a strong expression of ALK kinase domain and resulting in an unbalanced expression in 5' and 3' portions of ALK transcripts. We have developed a rapid and accurate method by simultaneously detecting the expression in 5' and 3' portions of ALK mRNA.

EXPERIMENTAL DESIGN

Quantitative real-time reverse transcriptase PCR (qRT-PCR) was used to examine expression levels of the 5' and 3' portions of ALK transcripts in177 NSCLCs, in which EGFR, KRAS, HER2, and BRAF mutations were absent. If unbalanced ALK mRNA expression was seen, ALK rearrangement was assumed to exist. ALK FISH was used to confirm the accuracy of qRT-PCR. RT-PCR and 5' RACE coupling sequencing identified the fusion variants.

RESULTS

Real-time RT-PCR showed excellent sensitivity and specificity (100% and 100%, respectively) for detection of ALK rearrangements in resected specimens. In addition, six novel ALK fusion variants were identified, including one KIF5B-ALK (E17;A20) and five EML4-ALK variants (E6a;A19, E6a/b ins 18;A20, E17b ins 39;A20, E10a/b, E13;A20, and E17 ins 65;A20).

CONCLUSIONS

Real-time RT-PCR is a rapid and accurate method for diagnosing ALK-rearranged lung cancers. Coupling of 5' RACE to this method should further facilitate rapid identification of novel ALK fusion genes.

摘要

目的

大约 3%至 7%的非小细胞肺癌(NSCLC)携带 ALK 融合基因,从而定义了一组可能对靶向治疗有反应的肿瘤。ALK 的断点始终发生在外显子 20 与 EML4 或其他融合伙伴,从而驱动 ALK 激酶结构域的强烈表达,并导致 ALK 转录物的 5'和 3'部分的不平衡表达。我们已经开发了一种通过同时检测 ALK mRNA 的 5'和 3'部分的表达来快速准确的方法。

实验设计

定量实时逆转录 PCR(qRT-PCR)用于检查 177 例 NSCLC 中 ALK 转录物的 5'和 3'部分的表达水平,其中不存在 EGFR、KRAS、HER2 和 BRAF 突变。如果观察到不平衡的 ALK mRNA 表达,则假定存在 ALK 重排。ALK FISH 用于确认 qRT-PCR 的准确性。RT-PCR 和 5'RACE 测序结合鉴定融合变体。

结果

实时 RT-PCR 对切除标本中 ALK 重排的检测具有出色的灵敏度和特异性(分别为 100%和 100%)。此外,还鉴定了六个新的 ALK 融合变体,包括一个 KIF5B-ALK(E17;A20)和五个 EML4-ALK 变体(E6a;A19,E6a/b ins 18;A20,E17b ins 39;A20,E10a/b,E13;A20,和 E17 ins 65;A20)。

结论

实时 RT-PCR 是一种快速准确的诊断 ALK 重排肺癌的方法。将 5'RACE 与该方法结合使用应进一步促进新的 ALK 融合基因的快速鉴定。

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