Roviello Giovanni N, Musumeci Domenica
CNR , Istituto di Biostrutture e Bioimmagini , Via Mezzocannone 16 , 80134 Napoli , Italy . Email:
Università di Napoli "Federico II" , Dipartimento di Scienze Chimiche , 80126 Napoli , Italy . Email:
RSC Adv. 2016 Jul 16;6(68):63578-63585. doi: 10.1039/c6ra08765e. Epub 2016 Jun 29.
In this article we describe two solid-phase synthetic routes to obtain a nucleo-oligolysine α-peptide containing all four natural nucleobases. The first one is based on the oligomerization of the nucleobase-containing monomers, easily synthesized as herein described. The second strategy has the advantage of avoiding the solution synthesis of the monomeric building blocks, leading to the final nucleopeptide by direct solid-phase couplings of the suitably protected nucleobases with the free amino groups on the growing peptide chain still anchored to the resin. Both strategies are general and can be applied to the synthesis of nucleopeptides having backbones formed by any other diamino acid moiety decorated with the four nucleobases. We also report the CD and UV studies on the hybridization properties of the obtained nucleopeptide, containing all four nucleobases on alternate lysines in the sequence, towards complementary DNA and RNA strands. The nucleo-oligolysine with a mixed-base sequence did not prove to bind complementary DNA, but was able to recognize the complementary RNA forming a complex with a higher melting temperature than that of the corresponding RNA/RNA natural duplex and comparable with that of the analogous PNA/RNA system.
在本文中,我们描述了两种固相合成路线,以获得一种包含所有四种天然核碱基的核寡聚赖氨酸α肽。第一种方法基于含核碱基单体的寡聚反应,这些单体可按本文所述轻松合成。第二种策略的优点是避免了单体构建块的溶液合成,通过将适当保护的核碱基与仍锚定在树脂上的生长肽链上的游离氨基直接进行固相偶联,从而得到最终的核肽。这两种策略都是通用的,可应用于合成具有由任何其他用四种核碱基修饰的二氨基酸部分形成主链的核肽。我们还报告了对所得核肽杂交特性的圆二色光谱(CD)和紫外(UV)研究,该核肽在序列中交替的赖氨酸上含有所有四种核碱基,用于与互补的DNA和RNA链杂交。具有混合碱基序列的核寡聚赖氨酸并未证明能与互补DNA结合,但能够识别互补RNA,形成一种复合物,其解链温度高于相应的RNA/RNA天然双链体,与类似的肽核酸(PNA)/RNA系统相当。