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多重聚合酶链反应扩增及同源序列直接测序:ras基因的点突变分析

Multiplex polymerase chain reaction amplification and direct sequencing of homologous sequences: point mutation analysis of the ras genes.

作者信息

Manam S, Nichols W W

机构信息

Merck Sharp and Dohme Research Laboratories, West Point, Pennsylvania 19486.

出版信息

Anal Biochem. 1991 Nov 15;199(1):106-11. doi: 10.1016/0003-2697(91)90276-y.

Abstract

ras proto-oncogenes are activated by point mutation in a wide variety of human and animal tumors, making ras gene analysis a major area of clinical and basic cancer research. Activating point mutations, in each of the three ras genes (Ha-, Ki-, or N-ras), usually occur in one of three specific codons (12, 13, or 61). Thus, an adequate assessment of activating ras gene mutations should include the analysis of at least nine codons. We have developed a rapid method for point mutation analysis of the ras genes, which involves simultaneous (multiplex) PCR amplification of all three homologous ras genes (in the regions surrounding codons 12-13 and codon 61) in a single reaction starting with only 1 microgram of genomic DNA. Although multiplex PCR has been previously used for unrelated sequences, we demonstrate here that multiplex PCR can also be used for highly homologous sequences. Importantly, after coamplification, each of the homologous ras genes can be individually and specifically sequenced even though the other two closely related genes are present in the same template mixture, by using high-stringency conditions permitted by Taq DNA polymerase. An automated multicycle DNA sequencing procedure is used to allow the double-stranded PCR products to be sequenced directly without the need to generate single-stranded templates, further simplifying the protocol. Our multiplex PCR amplification and direct DNA sequencing procedures should greatly facilitate more complete analyses of activating ras gene point mutations, particularly in studies involving many tumor samples.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

Ras原癌基因在多种人类和动物肿瘤中通过点突变被激活,这使得Ras基因分析成为临床和基础癌症研究的一个主要领域。三种Ras基因(Ha-Ras、Ki-Ras或N-Ras)中的每一种发生激活点突变时,通常发生在三个特定密码子(12、13或61)之一。因此,对激活型Ras基因突变进行充分评估应包括对至少九个密码子的分析。我们开发了一种Ras基因点突变分析的快速方法,该方法涉及在仅以1微克基因组DNA起始的单个反应中对所有三个同源Ras基因(密码子12 - 13周围区域和密码子61)进行同时(多重)PCR扩增。虽然多重PCR先前已用于不相关序列,但我们在此证明多重PCR也可用于高度同源序列。重要的是,共扩增后,即使其他两个密切相关的基因存在于同一模板混合物中,通过使用Taq DNA聚合酶允许的高严格条件,每个同源Ras基因也可单独且特异性地进行测序。使用自动多循环DNA测序程序可直接对双链PCR产物进行测序,无需生成单链模板,进一步简化了实验方案。我们的多重PCR扩增和直接DNA测序程序应极大地促进对激活型Ras基因点突变更全面的分析,特别是在涉及许多肿瘤样本的研究中。

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