Kandimalla E R, Manning A, Zhao Q, Shaw D R, Byrn R A, Sasisekharan V, Agrawal S
Hybridon Inc., One Innovation Drive, Worcester, MA 01605, USA.
Nucleic Acids Res. 1997 Jan 15;25(2):370-8. doi: 10.1093/nar/25.2.370.
We have designed and synthesized mixed backbone oligonucleotides (MBOs) containing 2'-5'-ribo- and 3'-5'-deoxyribonucleotide segments. Thermal melting studies of the phosphodiester MBOs (three 2'-5'linkages at each end) with the complementary 3'-5'-DNA and -RNA target strands suggest that 2'-5'-ribonucleoside incorporation into 3'-5'-oligodeoxyribonucleotides reduces binding to the target strands compared with an all 3'-5'-oligodeoxyribonucleotide of the same sequence and length. Increasing the number of 2'-5'linkages (from six to nine) further reduces binding to the DNA target strand more than the RNA target strand [Kandimalla,E.R. and Agrawal,S. (1996)Nucleic Acids Symp. Ser., 35, 125-126]. Phosphorothioate (PS) analogs of MBOs destabilize the duplex with the DNA target strand more than the duplex with the RNA target strand. Circular dichroism studies indicate that the duplexes of MBOs with the DNA and RNA target strands have spectral characteristics of both A- and B-type conformations. Compared with the control oligonucleotide, MBOs exhibit moderately higher stability against snake venom phosphodiesterase, S1 nuclease and in fetal calf serum. Although 2'-5'modification does not evoke RNase H activity, this modification does not effect the RNase H activation property of the 3'-5'-deoxyribonucleotide segment adjacent to the modification. In vitro studies with MBOs suggest that they have lesser effects on cell proliferation, clotting prolongation and hemolytic complement lysis than do control PS oligodeoxyribonucleotides. PS analogs of MBOs show HIV-1 inhibition comparable with that of a control PS oligodeoxyribonucleotide with all 3'-5'linkages. The current results suggest that a limited number of 2'-5'linkages could be used in conjunction with PS oligonucleotides to further modulate the properties of antisense oligonucleotides as therapeutic agents.
我们设计并合成了包含2'-5'-核糖核苷酸和3'-5'-脱氧核糖核苷酸片段的混合骨架寡核苷酸(MBO)。对含有磷酸二酯键的MBO(两端各有三个2'-5'连接)与互补的3'-5'-DNA和-RNA靶链进行热变性研究表明,与相同序列和长度的全3'-5'-寡脱氧核糖核苷酸相比,将2'-5'-核糖核苷掺入3'-5'-寡脱氧核糖核苷酸会降低与靶链的结合。增加2'-5'连接的数量(从六个增加到九个)会进一步降低与DNA靶链的结合,对RNA靶链的影响则相对较小[坎迪马拉,E.R.和阿格拉瓦尔,S.(1996年)《核酸研讨会系列》,35,125 - 126]。MBO的硫代磷酸酯(PS)类似物与DNA靶链形成的双链体比与RNA靶链形成的双链体更不稳定。圆二色性研究表明,MBO与DNA和RNA靶链形成的双链体具有A型和B型构象的光谱特征。与对照寡核苷酸相比,MBO对蛇毒磷酸二酯酶、S1核酸酶和胎牛血清具有适度更高的稳定性。虽然2'-5'修饰不会引发RNase H活性,但这种修饰不会影响与修饰相邻的3'-5'-脱氧核糖核苷酸片段的RNase H激活特性。对MBO的体外研究表明,与对照PS寡脱氧核糖核苷酸相比,它们对细胞增殖、凝血延长和溶血补体裂解的影响较小。MBO的PS类似物显示出与具有全3'-5'连接的对照PS寡脱氧核糖核苷酸相当的HIV - 1抑制作用。目前的结果表明,有限数量的2'-5'连接可与PS寡核苷酸结合使用,以进一步调节反义寡核苷酸作为治疗剂的特性。