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本文引用的文献

1
Multiplex amplicon genotyping by high-resolution melting.基于高分辨率熔解曲线的多重扩增子基因分型
J Biomol Tech. 2009 Jul;20(3):160-4.
2
The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments.MIQE指南:实时定量PCR实验发表的最低信息要求
Clin Chem. 2009 Apr;55(4):611-22. doi: 10.1373/clinchem.2008.112797. Epub 2009 Feb 26.
3
DNA sequencing by denaturation: principle and thermodynamic simulations.变性法DNA测序:原理及热力学模拟
Anal Biochem. 2009 Jan 1;384(1):170-9. doi: 10.1016/j.ab.2008.09.048. Epub 2008 Oct 7.
4
Snapback primer genotyping with saturating DNA dye and melting analysis.使用饱和DNA染料和熔解分析的回拉引物基因分型
Clin Chem. 2008 Oct;54(10):1648-56. doi: 10.1373/clinchem.2008.107615. Epub 2008 Aug 1.
5
A novel SNaPshot assay to detect the mdx mutation.一种用于检测mdx突变的新型SNaPshot检测法。
Muscle Nerve. 2008 Jun;37(6):731-5. doi: 10.1002/mus.21027.
6
Single nucleotide polymorphisms of IGFBP-3 gene and lung cancer risk in a Korean population.韩国人群中IGFBP - 3基因单核苷酸多态性与肺癌风险
Lung Cancer. 2008 Nov;62(2):152-61. doi: 10.1016/j.lungcan.2008.03.017. Epub 2008 May 2.
7
Base-pair neutral homozygotes can be discriminated by calibrated high-resolution melting of small amplicons.碱基对中性纯合子可通过对小扩增子进行校准的高分辨率熔解分析来鉴别。
Nucleic Acids Res. 2008 Jun;36(10):3401-8. doi: 10.1093/nar/gkn204. Epub 2008 Apr 29.
8
Closed-tube genotyping of apolipoprotein E by isolated-probe PCR with multiple unlabeled probes and high-resolution DNA melting analysis.
Biotechniques. 2007 Jul;43(1):87-91. doi: 10.2144/000112459.
9
Unlabeled oligonucleotides as internal temperature controls for genotyping by amplicon melting.未标记的寡核苷酸作为通过扩增子熔解进行基因分型的内部温度对照。
J Mol Diagn. 2007 Jul;9(3):284-9. doi: 10.2353/jmoldx.2007.060136.
10
Single-nucleotide polymorphisms: analysis by mass spectrometry.单核苷酸多态性:质谱分析
Nat Protoc. 2006;1(4):1761-71. doi: 10.1038/nprot.2006.257.

高分辨率熔解核苷酸延伸基因分型。

Nucleotide extension genotyping by high-resolution melting.

机构信息

Associated Regional and University Pathologists (ARUP) Institute for Clinical and Experimental Pathology, 500 Chipeta Way, Salt Lake City, UT 84108-1221, USA.

出版信息

J Mol Diagn. 2010 Nov;12(6):731-8. doi: 10.2353/jmoldx.2010.090149. Epub 2010 Sep 16.

DOI:10.2353/jmoldx.2010.090149
PMID:20847280
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2963919/
Abstract

One limitation of small amplicon melting is the inability to genotype certain nearest-neighbor symmetric variations without manipulating the sample. We have developed a method for these exceptions: a high-resolution melting single nucleotide extension assay. Single nucleotide extension was performed in a new instrument, the LightScanner 32 (LS32), which uses capillary reaction tubes and is capable of real-time PCR and sequential high-resolution melting of 32 samples. Asymmetric PCR used Platinum Taq and LC Green Plus in the master mix for target amplification. Dideoxynucleotides and extension oligonucleotides were sequestered in the tube cap and added post-PCR, maintaining a closed system. One dideoxynucleotides was used per capillary tube. Samples were cycled five times to incorporate dideoxynucleotides into the extension products using ThermoSequenase, followed by high-resolution melting. Single nucleotide polymorphisms from the RET proto-oncogene (n = 7), hemochromatosis (HFE, n = 30), coagulation factor 2 (F2, n = 29), coagulation factor 5 (F5, n = 30), and methylenetetrahydrofolate reductase (MTHFR, n = 60) genes were genotyped. The DNA melting profiles identified the target single nucleotide polymorphisms by the lowest melting temperature transition. All genotypes had a distinctive melting pattern. The method was 100% concordant with samples previously genotyped at HFE, MTHFR, and F2 and 90% concordant with F5. F5 discordants were genotyped correctly by redesigning the assay. Our results demonstrate that although single nucleotide polymorphisms can be successfully differentiated using this methodology, the method requires careful optimization.

摘要

小扩增子熔解的一个限制是,无法在不操作样本的情况下对某些最近邻对称变异进行基因分型。我们已经开发出一种针对这些例外情况的方法:高分辨率熔解单核苷酸延伸测定法。单核苷酸延伸在新仪器 LightScanner 32(LS32)中进行,该仪器使用毛细管反应管,能够进行实时 PCR 和 32 个样本的连续高分辨率熔解。不对称 PCR 在主混合物中使用 Platinum Taq 和 LC Green Plus 进行靶扩增。双脱氧核苷酸和延伸寡核苷酸被封闭在管盖中,并在 PCR 后添加,保持封闭系统。每个毛细管管使用一个双脱氧核苷酸。使用 ThermoSequenase 将双脱氧核苷酸循环五次整合到延伸产物中,然后进行高分辨率熔解。从 RET 原癌基因(n = 7)、血色病(HFE,n = 30)、凝血因子 2(F2,n = 29)、凝血因子 5(F5,n = 30)和亚甲基四氢叶酸还原酶(MTHFR,n = 60)基因中鉴定出单核苷酸多态性。通过最低熔解温度转变来鉴定目标单核苷酸多态性的 DNA 熔解曲线。所有基因型都有独特的熔解模式。该方法与先前在 HFE、MTHFR 和 F2 上进行基因分型的样本完全一致,与 F5 的一致性为 90%。通过重新设计检测方法,正确地对 F5 不一致的样本进行了基因分型。我们的结果表明,尽管可以使用该方法成功区分单核苷酸多态性,但该方法需要仔细优化。