Le Binh Huy, Koo Ja Choon, Joo Han Na, Seo Young Jun
Department of Bioactive Material Sciences, Chonbuk National University, Jeonju 54896, South Korea.
Division of Science Education and Institute of Fusion Science, Chonbuk National University, Jeonju 54896, South Korea.
Bioorg Med Chem. 2017 Jul 15;25(14):3591-3596. doi: 10.1016/j.bmc.2017.03.045. Epub 2017 Mar 23.
We have prepared a series of size-diverse unnatural nucleotides containing fluorescent (dApyrTP, dUpyrTP, dUantTP, dUthiTP) and quencher (dUazoTP) units, as well as nucleotides presenting small functional groups (dAethTP, dAoctTP, dUethTP, dUiodTP), all based on deoxyadenosine and deoxyuridine, and examined their suitability for use in enzymatic incorporation and extension into DNA. We observed a size-dependence of the incorporation and extension capability (following the order dUiodTP=dUethTP=dUthiTP>dUazoTP>dUpyrTP>dUantTP) during primer extension. This result was supported by circular dichroism (CD) spectra, which revealed a trend in the different B-form DNA structures depending on the size of the unit at the 5-position of the deoxyuridine (dUiodTP>dUethTP>dUthiTP>dUpyrTP), obtained from the PCR products. Interestingly, dUthiTP could be incorporated and extended into long DNA strands during primer extension and even PCR amplification, with CD spectroscopy confirming a stable secondary B-form duplex DNA structure. We observed full-length extension products even when combining dUthiTP with a template containing 24 continuous dA units during the primer extension. Thus, we believe that dUthiTP is a promising fluorescent nucleotide for a diverse range of biological applications requiring multiple incorporation and extension directly without disruption of B-form DNA structures.
我们制备了一系列大小各异的非天然核苷酸,其中包含荧光(dApyrTP、dUpyrTP、dUantTP、dUthiTP)和猝灭剂(dUazoTP)单元,以及带有小功能基团的核苷酸(dAethTP、dAoctTP、dUethTP、dUiodTP),所有这些均基于脱氧腺苷和脱氧尿苷,并研究了它们在酶促掺入和延伸到DNA中的适用性。我们观察到在引物延伸过程中掺入和延伸能力存在大小依赖性(顺序为dUiodTP = dUethTP = dUthiTP> dUazoTP> dUpyrTP> dUantTP)。这一结果得到了圆二色性(CD)光谱的支持,该光谱揭示了取决于脱氧尿苷5位上单元大小的不同B型DNA结构的趋势(dUiodTP> dUethTP> dUthiTP> dUpyrTP),这是从PCR产物中获得的。有趣的是,在引物延伸甚至PCR扩增过程中,dUthiTP可以掺入并延伸成长DNA链,CD光谱证实了稳定的二级B型双链DNA结构。在引物延伸过程中,即使将dUthiTP与含有24个连续dA单元的模板结合,我们也观察到了全长延伸产物。因此,我们认为dUthiTP是一种有前途的荧光核苷酸,可用于多种需要直接多次掺入和延伸而不破坏B型DNA结构的生物学应用。