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Application of a BRAF Pyrosequencing Assay for Mutation Detection and Copy Number Analysis in Malignant Melanoma

机译:BRAF焦测序技术在恶性黑色素瘤突变检测和拷贝数分析中的应用

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摘要

Mutations in the BRAF gene are found in the majority of cutaneous malignant melanomas and subsets of other tumors. These mutations lead to constitutive activation of BRAF with increased downstream ERK (extracellular signal-regulated kinase) signaling; therefore, the development of RAF kinase inhibitors for targeted therapy is being actively pursued. A methodology that allows sensitive, cost-effective, high-throughput analysis of BRAF mutations will be needed to triage patients for specific molecular-based therapies. Pyrosequencing is a high-throughput, sequencing-by-synthesis method that is particularly useful for analysis of single nucleotide polymorphisms or hotspot mutations. Mutational analysis of BRAF is highly amenable to pyrosequencing because the majority of mutations in this gene localize to codons 600 and 601 and consist of single or dinucleotide substitutions. In this study, DNAs from a panel of melanocyte cell lines, melanoma cell lines, and melanoma tumors were used to validate a pyrosequencing assay to detect BRAF mutations. The assay demonstrates high accuracy and precision for detecting common and variant exon 15 BRAF mutations. Further, comparison of pyrosequencing data with 100K single nucleotide polymorphism microarray data allows characterization of BRAF amplification events that may accompany BRAF mutation. Pyro-sequencing serves as an excellent platform for BRAF genotyping of tumors from patients entering clinical trial.
机译:在大多数皮肤恶性黑色素瘤和其他肿瘤的亚群中发现了BRAF基因的突变。这些突变导致BRAF的组成性激活,下游ERK(细胞外信号调节激酶)信号传导增加;因此,正在积极地开发用于靶向治疗的RAF激酶抑制剂。需要一种能够对BRAF突变进行灵敏,经济高效,高通量分析的方法,以对患者进行分类以进行特定的基于分子的治疗。焦磷酸测序是一种高通量的合成测序方法,对于分析单核苷酸多态性或热点突变特别有用。 BRAF的突变分析非常适合焦磷酸测序,因为该基因中的大多数突变位于600和601密码子,并且由单核苷酸或二核苷酸取代组成。在这项研究中,使用了一组黑色素细胞系,黑色素瘤细胞系和黑色素瘤肿瘤的DNA来验证焦磷酸测序法以检测BRAF突变。该检测方法显示出检测常见和变异外显子15 BRAF突变的高精度和高精度。此外,焦磷酸测序数据与100K单核苷酸多态性微阵列数据的比较可以表征可能伴随BRAF突变的BRAF扩增事件。热释测序为BRAF基因分型提供了一个很好的平台,可以对进入临床试验的患者进行肿瘤基因分型。

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