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指导醌甲基化物依赖的烷基化和季铵盐与核酸的交联。

Directing Quinone Methide-Dependent Alkylation and Cross-Linking of Nucleic Acids with Quaternary Amines.

出版信息

Bioconjug Chem. 2020 May 20;31(5):1486-1496. doi: 10.1021/acs.bioconjchem.0c00166. Epub 2020 Apr 23.

DOI:10.1021/acs.bioconjchem.0c00166
PMID:32298588
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7242154/
Abstract

Polyamine and polyammonium ion conjugates are often used to direct reagents to nucleic acids based on their strong electrostatic attraction to the phosphoribose backbone. Such nonspecific interactions do not typically alter the specificity of the attached reagent, but polyammonium ions dramatically redirected the specificity of a series of quinone methide precursors. Replacement of a relatively nonspecific intercalator based on acridine with a series of polyammonium ions resulted in a surprising change of DNA products. Piperidine stable adducts were generated in duplex DNA that lacked the ability to support a dynamic cross-linking observed previously with acridine conjugates. Minor reaction at guanine N7, the site of reversible reaction, was retained by a monofunctional quinone methide-polyammonium ion conjugate, but a bisfunctional analogue designed for tandem quinone methide formation modified guanine N7 in only single-stranded DNA. The resulting intrastrand cross-links were sufficiently dynamic to rearrange to interstrand cross-links. However, no further transfer of adducts was observed in duplex DNA. An alternative design that spatially and temporally decoupled the two quinone methide equivalents neither restored the dynamic reaction nor cross-linked DNA efficiently. While di- and triammonium ion conjugates successfully enhanced the yields of cross-linking by a bisquinone methide relative to a monoammonium equivalent, alternative ligands will be necessary to facilitate the migration of cross-linking and its potential application to disrupt DNA repair.

摘要

多胺和聚铵离子缀合物通常用于基于其与磷酸核糖骨架的强静电吸引力将试剂导向核酸。这种非特异性相互作用通常不会改变附着试剂的特异性,但聚铵离子显著改变了一系列醌亚甲醚前体的特异性。用一系列聚铵离子替代基于吖啶的相对非特异性嵌入剂,导致 DNA 产物的特异性发生了惊人的变化。在双链 DNA 中生成了哌啶稳定的加合物,该加合物缺乏先前与吖啶缀合物观察到的动态交联的能力。单功能醌亚甲醚-聚铵离子缀合物保留了在可逆反应部位鸟嘌呤 N7 上的小反应,但设计用于串联醌亚甲醚形成的双功能类似物仅在单链 DNA 中修饰鸟嘌呤 N7。由此产生的链内交联足够动态,可以重排为链间交联。然而,在双链 DNA 中没有观察到进一步的加合物转移。一种替代设计,空间和时间上解耦了两个醌亚甲醚当量,既没有恢复动态反应,也没有有效地交联 DNA。虽然二铵和三铵离子缀合物相对于单铵当量成功地提高了双醌亚甲醚交联的产率,但需要替代配体来促进交联的迁移及其在破坏 DNA 修复中的潜在应用。

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