Kaura Mamta, Kumar Pawan, Hrdlicka Patrick J
Department of Chemistry, University of Idaho , Moscow, Idaho 83844-2343, United States.
J Org Chem. 2014 Jul 3;79(13):6256-68. doi: 10.1021/jo500994c. Epub 2014 Jun 24.
Conformationally restricted nucleotides such as locked nucleic acid (LNA) are very popular as affinity-, specificity-, and stability-enhancing modifications in oligonucleotide chemistry to produce probes for nucleic acid targeting applications in molecular biology, biotechnology, and medicinal chemistry. Considerable efforts have been devoted in recent years to optimize the biophysical properties of LNA through additional modification of the sugar skeleton. We recently introduced C5-functionalization of LNA uridines as an alternative and synthetically more straightforward approach to improve the biophysical properties of LNA. In the present work, we set out to test the generality of this concept by studying the characteristics of oligonucleotides modified with four different C5-functionalized LNA cytidine and C8-functionalized LNA adenosine monomers. The results strongly suggest that C5-functionalization of LNA pyrimidines is indeed a viable approach for improving the binding affinity, target specificity, and/or enzymatic stability of LNA-modified ONs, whereas C8-functionalization of LNA adenosines is detrimental to binding affinity and specificity. These insights will impact the future design of conformationally restricted nucleotides for nucleic acid targeting applications.
构象受限的核苷酸,如锁核酸(LNA),在寡核苷酸化学中作为增强亲和力、特异性和稳定性的修饰非常受欢迎,可用于生产分子生物学、生物技术和药物化学中核酸靶向应用的探针。近年来,人们致力于通过对糖骨架进行额外修饰来优化LNA的生物物理性质。我们最近引入了LNA尿苷的C5官能化,作为一种替代且合成上更直接的方法来改善LNA的生物物理性质。在本工作中,我们通过研究用四种不同的C5官能化LNA胞嘧啶和C8官能化LNA腺嘌呤单体修饰的寡核苷酸的特性,来测试这一概念的普遍性。结果强烈表明,LNA嘧啶的C5官能化确实是提高LNA修饰的寡核苷酸结合亲和力、靶标特异性和/或酶稳定性的可行方法,而LNA腺嘌呤的C8官能化则对结合亲和力和特异性有害。这些见解将影响未来用于核酸靶向应用的构象受限核苷酸的设计。