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Analysis of RAS gene mutations in acute myeloid leukemia by polymerase chain reaction and oligonucleotide probes.

机译:聚合酶链反应和寡核苷酸探针分析急性髓性白血病中的RAS基因突变。

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摘要

In vitro DNA amplification followed by oligonucleotide dot blot analysis were used to study RAS gene mutations in acute myeloid leukemia (AML). Fifty-two presentation AML DNAs were screened for mutations in codons 12, 13, and 61 of NRAS and in codons 12 and 61 of KRAS and HRAS. Fourteen (27%) contained mutations--all in NRAS and predominantly in codon 12. The most common amino acid substitution identified was of glycine by aspartic acid at codon 12 (7/18), with a G----A transition being the most common base change (11/18). No particular correlation was observed between disease subtype and the incidence or type of NRAS mutation. In DNA samples from four patients, 2 NRAS mutations were found to coexist. NIH 3T3 focus-formation assays revealed that in each case the mutations were present in different NRAS alleles. We also report the absence of a mutated RAS gene in relapse DNAs of four patients in which a RAS oncogene had been detected at presentation. These observations suggest that RAS mutations arise as part of the evolution of neoplastic transformation.
机译:体外DNA扩增,然后进行寡核苷酸斑点印迹分析,用于研究急性髓细胞性白血病(AML)中的RAS基因突变。筛选了五十二个呈现AML DNA的NRAS密码子12、13和61以及KRAS和HRAS密码子12和61中的突变。十四个突变(占27%)包含突变-全部位于NRAS中,主要位于12号密码子中。鉴定出的最常见的氨基酸替代是12号密码子(7/18)处的天冬氨酸对甘氨酸的取代,其中存在G ---- A过渡最常见的基本更改(11/18)。在疾病亚型与NRAS突变的发生率或类型之间未观察到特别的相关性。在来自四名患者的DNA样本中,发现2个NRAS突变共存。 NIH 3T3聚焦形成测定法表明,每种情况下突变都存在于不同的NRAS等位基因中。我们还报告了在演讲中检测到RAS致癌基因的四名患者的复发DNA中没有突变的RAS基因。这些观察结果表明,RAS突变是肿瘤转化过程的一部分。

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