(α,α-二甲基)甘酰基(dmg) PNAs:相对于同序RNA,与cDNA形成更强杂交的非手性PNA类似物。

Aland Gourishankar, Krishna N Ganesh
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引用次数: 9

摘要

介绍了甘氨酸双甲基取代PNA的新型立体约束类似物(dmg-PNA-T)的设计和简便合成。由单体6和单体12合成的PNA低聚物[氨基乙基二甲基甘酰基(aedmg)和氨基丙基二甲基甘酰基(apdmg)]对同型胸腺嘧啶epna(2):同型腺嘌呤DNA/RNA三联体和与靶cDNA或RNA混合的碱基序列双联体具有显著的稳定性。与同序RNA相比,它们与DNA的结合程度更高。这可能是空间刚性的宝石二甲基的结构结果,施加有利于与cDNA形成复合物的预组织构象。该结果补充了我们之前的工作,即与cDNA相比,环己基PNAs更倾向于与cRNA结合,并暗示PNAs的生物物理和结构特性可以通过在无手性的PNA主干中引入适当的刚性来指导。这种通过在PNA主链上安装宝石二甲基取代来调整PNA结构结合选择性的方法,可以扩展到通过在氨基乙基段上进行类似的取代来进一步微调,也可以单独或与目前的取代一起进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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(α,α-dimethyl)glycyl (dmg) PNAs: achiral PNA analogs that form stronger hybrids with cDNA relative to isosequential RNA.

The design and facile synthesis of sterically constrained new analogs of PNA having gem-dimethyl substitutions on glycine (dmg-PNA-T) is presented. The PNA oligomers [aminoethyl dimethylglycyl (aedmg) and aminopropyl dimethylglycyl (apdmg)] synthesized from the monomers 6 and 12) effected remarkable stabilization of homothyminePNA(2):homoadenine DNA/RNA triplexes and mixed base sequence duplexes with target cDNA or RNA. They show a higher binding to DNA relative to that with isosequential RNA. This may be a structural consequence of the sterically rigid gem-dimethyl group, imposing a pre-organized conformation favorable for complex formation with cDNA. The results complement our previous work that had demonstrated that cyclohexanyl-PNAs favor binding with cRNA compared with cDNA and imply that the biophysical and structural properties of PNAs can be directed by introduction of the right rigidity in PNA backbone devoid of chirality. This approach of tweaking selectivity in binding of PNA constructs by installing gem-dimethyl substitution in PNA backbone can be extended to further fine-tuning by similar substitution in the aminoethyl segment as well either individually or in conjunction with present substitution.

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