首页> 外文期刊>The Journal of Organic Chemistry >Nucleic acid structural engineering using pyrene-functionalized 2'-amino-alpha-L-LNA monomers and abasic sites
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Nucleic acid structural engineering using pyrene-functionalized 2'-amino-alpha-L-LNA monomers and abasic sites

机译:使用pyr官能化的2'-氨基-α-L-LNA单体和无碱基位点的核酸结构工程

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摘要

Oligonucleotides (ONs) modified with a 2'-N-(pyren-1-yl)acetyl-2'-amino-alpha-L-LNA thymine monomer Y flanked on the 3'-side by an abasic site Phi (i.e., Y Phi)-unit) exhibit unprecedented increases in thermal affinity (Delta T-m values) toward target strands containing abasic sites (Delta T-m per Y Phi unit >+33.0 degrees C in 9-mer duplexes relative to unmodified ONs). Biophysical studies along with force field calculations suggest that the conformationally locked 2-oxo-5-azabicyclo[2.2.1]heptane skeleton of monomer Y, in concert with the short rigid acetyl linker, efficiently forces the thymine and pyrene moieties to adopt an interplanar distance of similar to 3.4 angstrom. This precisely positions the pyrene moiety in the duplex core void formed by abasic sites (Phi:Phi pair) for optimal pi-pi overlap. Duplexes with multiple Y Phi:A Phi units separated by one base pair are tolerated extraordinarily well, as exemplified by a 13-mer duplex containing four separated Y Phi: A Phi units (8 abasic sites distributed over 13 "base pairs"), which exhibit a thermal denaturation temperature of 60.5 degrees C. The Y Phi probes display up to 16-fold increases in fluorescence intensity at 380 nm upon hybridization with abasic target strands, whereby self-assembly of these complex architectures can be easily monitored. This study underlines the potential of N2'-functionalized 2'-amino-alpha-L-LNA as building blocks in nucleic acid based diagnostics and nanomaterial engineering.
机译:被2'-N-(吡喃-1-基)乙酰基2'-氨基-α-L-LNA胸腺嘧啶单体Y修饰的寡核苷酸(ONs)在3'侧侧接无碱基位点Phi(即Y对含有无碱基位点的靶链表现出前所未有的热亲和力(ΔTm值)增加(相对于未修饰的ON,9-mer双链体中每个Y Phi单元的ΔTm> +33.0摄氏度)。生物物理研究和力场计算表明,单体Y的构象锁定的2-氧代-5-氮杂双环[2.2.1]庚烷骨架与短的刚性乙酰基连接基一起有效地迫使胸腺嘧啶和pyr部分采用平面距离类似于3.4埃。这将the部分精确地定位在由无碱基位点(Phi:Phi对)形成的双链核空隙中,以实现最佳的pi-pi重叠。具有一个碱基对分隔的多个Y Phi:A Phi单元的双链体具有极好的耐受性,例如包含四个分隔的Y Phi:A Phi单元(分布在13个“碱基对”上的8个碱基位点)的13-mer双链体。表现出60.5摄氏度的热变性温度。YPhi探针与无碱基靶链杂交后,在380 nm处的荧光强度最多提高16倍,从而可以轻松监控这些复杂结构的自组装。这项研究强调了N2'功能化的2'-氨基-α-L-LNA在基于核酸的诊断和纳米材料工程中作为构建基块的潜力。

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