首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Biotinylated Probe Isolation of Targeted Gene Region Improves Detection of T790M Epidermal Growth Factor Receptor Mutation via Peptide Nucleic Acid–Enriched Real-Time PCR
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Biotinylated Probe Isolation of Targeted Gene Region Improves Detection of T790M Epidermal Growth Factor Receptor Mutation via Peptide Nucleic Acid–Enriched Real-Time PCR

机译:靶向基因区域的生物素化探针分离可通过肽核酸富集的实时PCR改善T790M表皮生长因子受体突变的检测

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BACKGROUND: The presence of the EGFR (epidermal growth factor receptor) T790M mutation in tumor tissue or body fluids from patients treated with EGFR tyrosine kinase inhibitors may indicate the onset of resistance to treatment. It is important to identify this mutation as early as possible so that treatment can be modified accordingly or potential side effects of further treatment can be avoided. This requirement calls for high detection sensitivity. Peptide nucleic acids (PNAs) are used as PCR clamps to inhibit amplification of wild-type DNA during PCR cycling, thereby enriching for rare mutations such as T790M. We describe a modification that improves the detection limit of PNA-clamp methods by at least 20-fold.METHODS: We enriched the target by exposing genomic DNA to an EGFR exon 20–specific biotinylated oligonucleotide, followed by binding to streptavidin beads. We then prepared serial dilutions of the isolated target DNA containing the T790M mutation by mixing with wild-type DNA and then performed PNA clamp–based, real-time TaqMan PCR. For comparison, we performed PNA clamp–based PCR directly on genomic DNA.RESULTS: Whereas the detection limit for PNA clamp–based PCR performed directly on genomic DNA is 1 mutant allele in 1000 wild-type alleles, conducting the assay with biotinylated oligonucleotide–enriched target DNA improved the detection limit to 1 mutant allele in 40 000 wild-type alleles. A possible explanation for the improvement in detection is that biotin-based target isolation efficiently eliminates wild-type DNA; therefore, fewer erroneous amplifications of wild-type DNA can occur early during the PCR.CONCLUSIONS: Combining target molecule isolation via a biotinylated probe with PNA-enriched TaqMan real-time PCR provides a major improvement for detecting the EGFR T790M resistance mutation.
机译:背景:EGFR酪氨酸激酶抑制剂治疗的患者的肿瘤组织或体液中存在EGFR(表皮生长因子受体)T790M突变,可能表明对治疗产生抗药性。重要的是尽早识别这种突变,以便可以相应地修改治疗方法,或者可以避免进一步治疗的潜在副作用。该要求要求高检测灵敏度。肽核酸(PNA)用作PCR钳,可抑制PCR循环过程中野生型DNA的扩增,从而富集罕见突变,例如T790M。我们描述了一种将PNA钳夹方法的检测限提高至少20倍的修饰。方法:我们通过将基因组DNA暴露于EGFR外显子20特异性生物素化寡核苷酸,然后与链霉亲和素珠结合来富集靶标。然后,我们通过与野生型DNA混合制备包含T790M突变的分离的靶DNA的系列稀释液,然后进行基于PNA钳位的实时TaqMan PCR。为了进行比较,我们直接在基因组DNA上进行了基于PNA钳位的PCR。结果:尽管直接在基因组DNA上进行基于PNA钳位的PCR的检测限为1000个野生型等位基因中的1个突变等位基因,但使用生物素化寡核苷酸进行了分析–富集的靶DNA提高了40,000种野生型等位基因中1个突变等位基因的检测限。改进检测的一种可能解释是基于生物素的靶标分离有效消除了野生型DNA。结论:通过生物素化探针与富含PNA的TaqMan实时PCR结合靶分子分离,可为检测EGFR T790M耐药性突变提供重大改进。

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