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Progress towards single-molecule sequencing: enzymatic synthesis of nucleotide-specifically labeled DNA

机译:单分子测序的进展:核苷酸特异性标记的DNA的酶促合成

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The enzymatic incorporation of modified dNTPs into a growing DNA strand has intensively been studied. Modifications were detectable reporter groups such as digoxigenin or biotin, fluorochromes or aliphatic side chains covalently attached to the base. Incorporation efficiencies were determined with several DNA polymerases using linear primer-extension reactions followed by denaturing PAGE as a high-resolution detection system. We describe the enzymatic synthesis of DNA consisting of modified nucleotides exclusively. A defined template-primer system allows us to trace incorporation: (1) in up to 18 neighboring positions for several dUTP-derivatives; or (2) in stretches of DNA of up to 40 bases in length with complete substitution of all four natural dNTPs by differently modified counterparts. Synthesized DNA molecules are shown to particularly exhibit dramatically altered physico-chemical properties by contrast with native DNA. These results provide a fundamental data set for probe generation in single-molecule DNA sequencing (SMS).
机译:深入研究了将修饰的dNTPs酶法掺入到生长的DNA链中的方法。修饰是可检测的报告基团,例如洋地黄毒苷或生物素,荧光染料或共价附于碱基的脂族侧链。使用线性引物延伸反应,然后变性PAGE作为高分辨率检测系统,用几种DNA聚合酶测定掺入效率。我们描述了专门由修饰的核苷酸组成的DNA的酶促合成。定义好的模板引物系统使我们可以追踪掺入:(1)在几种不同的dUTP衍生物的多达18个相邻位置中; (2)延伸多达40个碱基的DNA片段,并用不同修饰的对应物完全取代所有四个天然dNTP。与天然DNA相比,合成的DNA分子特别表现出显着改变的理化性质。这些结果为单分子DNA测序(SMS)中的探针生成提供了基础数据集。

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