Biomolecular Engineering, University of California Santa Cruz, Santa Cruz, CA, USA.
Electrophoresis. 2010 Apr;31(8):1322-9. doi: 10.1002/elps.200900631.
Measurement of the length of DNA fragments plays a pivotal role in genetic mapping, disease diagnostics, human identification and forensic applications. PCR followed by electrophoresis is used for DNA length measurement of STRs, a process that requires labeled primers and allelic ladders as standards to avoid machine error. Sequencing-based approaches can be used for STR analysis to eliminate the requirement of labeled primers and allelic ladder. However, the limiting factor with this approach is unsynchronized polymerization in heterozygous sample analysis, in which alleles with different lengths can lead to imbalanced heterozygote peak height ratios. We have developed a rapid DNA length measurement method using peptide nucleic acid and dideoxy dNTPs to "tailor" DNA templates for accurate sequencing to overcome this hurdle. We also devised an accelerated "dyad" pyrosequencing strategy, such that the combined approach can be used as a faster, more accurate alternative to de novo sequencing. Dyad sequencing interrogates two bases at a time by allowing the polymerase to incorporate two nucleotides to DNA template, cutting the analysis time in half. In addition, for the first time, we show the effect of peptide nucleic acid as a blocking probe to stop polymerization, which is essential to analyze the heterozygous samples by sequencing. This approach provides a new platform for rapid and cost-effective DNA length measurement for STRs and resequencing of small DNA fragments.
测量 DNA 片段的长度在遗传图谱构建、疾病诊断、人类鉴定和法医学应用中起着至关重要的作用。PCR 结合电泳用于 STR 的 DNA 长度测量,这一过程需要标记的引物和等位基因梯作为标准,以避免机器误差。基于测序的方法可用于 STR 分析,以消除对标记引物和等位基因梯的需求。然而,这种方法的限制因素是杂合样本分析中聚合酶的不同步,其中不同长度的等位基因可能导致杂合峰高度比不平衡。我们已经开发了一种使用肽核酸和双脱氧 dNTP 来“定制”DNA 模板以进行准确测序的快速 DNA 长度测量方法,以克服这一障碍。我们还设计了一种加速的“对偶”焦磷酸测序策略,使得这种组合方法可以作为一种更快、更准确的替代从头测序的方法。对偶测序通过允许聚合酶将两个核苷酸掺入 DNA 模板中来一次检测两个碱基,将分析时间缩短一半。此外,我们首次展示了肽核酸作为阻断探针的作用,以停止聚合,这对于通过测序分析杂合样本至关重要。该方法为 STR 的快速、经济高效的 DNA 长度测量和小 DNA 片段的重测序提供了一个新的平台。