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Functionalized 2′-Amino-α-L-LNA - Directed Positioning of Intercalators for DNA Targeting

机译:功能化的2-氨基-α-L-LNA-DNA靶向插入剂的直接定位

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摘要

Chemically modified oligonucleotides are increasingly applied in nucleic acid based therapeutics and diagnostics. LNA (Locked Nucleic Acid) and its diastereomer α-L-LNA are two promising examples hereof that exhibit increased thermal and enzymatic stability. Herein, the synthesis, biophysical characterization and molecular modeling of N2′-functionalized 2′-amino-α-L-LNA is described. Chemoselective N2′-functionalization of protected amino alcohol >1 followed by phosphitylation afforded a structurally varied set of target phosphoramidites, which were incorporated into oligodeoxyribonucleotides. Incorporation of pyrene-functionalized building blocks such as 2′-N-(pyren-1-yl)carbonyl-2′-amino-α-L-LNA (monomer >X) led to extraordinary increases in thermal affinity of up to +19.5 °C per modification against DNA targets in particular. In contrast, incorporation of building blocks with small non-aromatic N2′-functionalities such as 2′-N-acetyl-2′-amino-α-L-LNA (monomer >V) had detrimental effects on thermal affinity toward DNA/RNA complements with decreases of as much as −16.5 °C per modification. Extensive thermal DNA selectivity, favorable entropic contributions upon duplex formation, hybridization-induced bathochromic shifts of pyrene absorption maxima and increases of circular dichroism signals, and molecular modeling studies suggest that pyrene functionalized 2′-amino-α-L-LNA monomers >W-Y having short linkers between the bicyclic skeleton and the pyrene moiety, allow high-affinity hybridization with DNA complements and precise positioning of intercalators in nucleic acid duplexes. This rigorous positional control has been utilized for the development probes for emerging therapeutic and diagnostic applications focusing on DNA-targeting.
机译:化学修饰的寡核苷酸越来越多地应用于基于核酸的治疗和诊断中。 LNA(锁核酸)及其非对映异构体α-L-LNA是其显示出增加的热和酶稳定性的两个有希望的例子。在此,描述了N2'-官能化的2'-氨基-α-L-LNA的合成,生物物理表征和分子模型。对受保护的氨基醇> 1 进行化学选择性N2'-官能化,然后进行磷酸化,得到了结构上不同的目标亚磷酰胺,将其掺入寡脱氧核糖核苷酸中。掺入pyr功能化的结构单元,例如2'-N-(pyren-1-yl)羰基-2'-氨基-α-L-LNA(单体> X ),导致热的异常增加每次修饰对DNA靶标的亲和力最高为+19.5°C。相反,掺入具有小的非芳族N2'功能的结构单元,例如2'-N-乙酰基-2'-氨基-α-L-LNA(单体> V ),会对每个修饰对DNA / RNA的热亲和力可降低-16.5°C。广泛的热DNA选择性,形成双链体时的有利熵、,诱导的of吸收最大值的红移和圆二色性信号的增加,以及分子模型研究表明pyr官能化的2'-氨基-α-L-LNA单体> WY 在双环骨架和the部分之间具有短连接子,可以与DNA补体进行高亲和力杂交,并可以在核酸双链体中精确插入分子。这种严格的位置控制已被用于针对DNA靶向的新兴治疗和诊断应用的开发探针。

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