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异鸟嘌呤和 8-氮杂-7-脱氮异鸟嘌呤与 5-甲基胞嘧啶碱基对作为 DNA 功能化的靶点。

The Base Pairs of Isoguanine and 8-Aza-7-deazaisoguanine with 5-Methylisocytosine as Targets for DNA Functionalization.

机构信息

Laboratory of Bioorganic Chemistry and Chemical Biology, Center for Nanotechnology, Heisenbergstrasse 11, 48149 Münster, Germany.

Laboratorium für Organische und Bioorganische Chemie, Institut für Chemie neuer Materialien, Universität Osnabrück, Barbarastrasse 7, 49069 Osnabrück, Germany.

出版信息

Bioconjug Chem. 2023 Feb 15;34(2):422-432. doi: 10.1021/acs.bioconjchem.2c00584. Epub 2023 Feb 3.

Abstract

The isoguanine-isocytosine base pair (isoG-isoC) represents an important expansion of the DNA coding system. The base pair is more stable than the canonical adenine-thymine or guanine-cytosine pairs. However, nothing is known on the functionalization of the noncanonical isoG-isoC pair at the isoguanine site. In this work, functionalization of the isoG-isoC and the isosteric base pair that contains 8-aza-7-deazaisoguanine in place of isoguanine is studied. Short ethynyl, more space demanding octadiynyl, and dendritic tripropargylamine residues attached to the isoG-isoC base pairs were introduced to oligonucleotides. 12-mer duplexes were formed by hybridization with single base pair modification. The use of the two modified nucleobases gave us the freedom to shift nucleobase substituents within the major groove of double helical DNA. Clickable side chains at position-7 stabilize the base pair, whereas 8-substituents reduce its stability strongly. The weak isoguanine-thymine or 8-aza-7-deazaisoguanine-thymine base pairs show a similar sensitivity to the position of nucleobase functionalization as base pair matches formed with 5-methylisocytosine. CD spectra of all modified duplexes display the typical shape of a B-DNA with only marginal changes. Fluorescent pyrene labeled DNA with long, short, and branched linkers was generated using click chemistry. Pyrene click adducts with long linkers are essential to maintain or to increase base pair stability. Labeled duplexes are more fluorescent than corresponding single strands. For the dendritic linker excimer emission was observed for single strands but only monomer emission in duplexes.

摘要

异鸟嘌呤-异胞嘧啶碱基对(isoG-isoC)代表了 DNA 编码系统的重要扩展。该碱基对比经典的腺嘌呤-胸腺嘧啶或鸟嘌呤-胞嘧啶对更稳定。然而,对于异鸟嘌呤位点中非经典的 isoG-isoC 碱基对的功能化,目前还一无所知。在这项工作中,研究了异鸟嘌呤-异胞嘧啶和包含 8-氮杂-7-脱氮异鸟嘌呤代替异鸟嘌呤的等排碱基对的功能化。短乙炔基、空间要求更高的辛二炔基和树枝状三丙炔胺残基被连接到寡核苷酸上。通过单碱基修饰的杂交形成 12 -mer 双链体。使用这两种修饰碱基赋予了我们在双链 DNA 大沟内移动碱基取代物的自由度。位于 7 位的可点击侧链稳定碱基对,而 8 位取代基则强烈降低其稳定性。弱的异鸟嘌呤-胸腺嘧啶或 8-氮杂-7-脱氮异鸟嘌呤-胸腺嘧啶碱基对对碱基取代物位置的敏感性与与 5-甲基异胞嘧啶形成的碱基对匹配相似。所有修饰双链体的 CD 光谱仅显示出 B-DNA 的典型形状,只有微小的变化。使用点击化学生成带有长、短和支化接头的荧光芘标记 DNA。带有长接头的芘点击加合物对于维持或增加碱基对稳定性是必不可少的。标记的双链体比相应的单链更荧光。对于树枝状接头,单链观察到激基缔合物发射,但双链体中仅观察到单体发射。

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