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Pyrrolidinyl peptide nucleic acid with α/β-peptide backbone: A conformationally constrained PNA with unusual hybridization properties

机译:具有α/β肽骨架的吡咯烷基肽核酸:具有异常杂交特性的构象受限PNA

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摘要

We describe herein a new conformationally constrained analog of PNA carrying an alternating α/β amino acid backbone consisting of (2′R,4′R)-nucleobase-subtituted proline and (1S,2S)-2-aminocyclopentanecarboxylic acid (acpcPNA). The acpcPNA has been synthesized and evaluated for DNA, RNA and self-pairing properties by thermal denaturation experiments. It can form antiparallel hybrids with complementary DNA with high affinity and sequence specificity. Unlike other PNA systems, the thermal stability of acpcPNA·DNA hybrid is largely independent of G+C contents, and is generally higher than that of acpcPNA·RNA hybrid with the same sequence. Thermodynamic parameters analysis suggest that the A·T base pairs in the acpcPNA·DNA hybrids are enthalpically stabilized over G·C pairs. The acpcPNA also shows a hitherto unreported behavior, namely the inability to form self-pairing hybrids. These unusual properties should make the new acpcPNA a potentially useful candidate for various applications including microarray probes and antigene agents.
机译:我们在本文中描述了一种新的构象受约束的PNA,其带有由(2'R,4'R)-核碱基取代的脯氨酸和(1S,2S)-2-氨基环戊烷羧酸(acpcPNA)组成的交替α/β氨基酸骨架。已经合成了acpcPNA,并通过热变性实验评估了DNA,RNA和自配对特性。它可以与互补DNA形成高亲和力和序列特异性的反平行杂交体。与其他PNA系统不同,acpcPNA·DNA杂种的热稳定性在很大程度上不受G + C含量的影响,通常比具有相同序列的acpcPNA·RNA杂种的热稳定性更高。热力学参数分析表明,acpcPNA·DNA杂种中的A·T碱基对在G·C对上是焓稳定的。 acpcPNA还显示了迄今为止未报告的行为,即无法形成自配对杂种。这些不寻常的特性将使新的acpcPNA成为包括微阵列探针和抗原剂在内的各种应用的潜在有用候选物。

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