Bishop J S, Guy-Caffey J K, Ojwang J O, Smith S R, Hogan M E, Cossum P A, Rando R F, Chaudhary N
Aronex Pharmaceuticals, Inc., The Woodlands, Texas 77381, USA.
J Biol Chem. 1996 Mar 8;271(10):5698-703. doi: 10.1074/jbc.271.10.5698.
We have identified a potentially therapeutic anti-human immunodeficiency virus (HIV)-1 oligonucleotide composed entirely of deoxyguanosines and thymidines (T30177, also known as AR177: 5'-g.tggtgggtgggtggg.t-3', where asterisk indicates phosphorothioate linkage). In acute assay systems using human T-cells, T30177 and its total phosphodiester homologue T30175 inhibited HIV-1-induced syncytium production by 50% at 0.15 and 0.3 microM, respectively. Under physiological conditions, the sequence and composition of the 17-mer favors the formation of a compact, intramolecularly folded structure dominated by two stacked guanine quartet motifs that are connected by three loops of TGs. The molecule is stabilized by the coordination of a potassium ion between the two stacked quartets. We now show that these guanine quartet-containing oligonucleotides are highly resistant to serum nucleases, with t1/2 of 5 h and >4 days for T30175 and T30177, respectively. Both oligonucleotides were internalized efficiently by cells, with intracellular concentrations reaching 5-10-fold above the extracellular levels after 24 h of incubation. In contrast, single-base mutated variants or random sequence control oligonucleotides that could not form the compactly folded structure had markedly reduced half-lives (t1/2 from approximately 3 to 7 min), low cellular uptake, and no sequence-specific anti-HIV-1 activity. These data suggest that the tertiary structure of an oligonucleotide is a key determinant of its nuclease resistance, cellular uptake kinetics, and biological efficacy.
我们鉴定出一种潜在具有治疗作用的抗人类免疫缺陷病毒(HIV)-1寡核苷酸,其完全由脱氧鸟苷和胸苷组成(T30177,也称为AR177:5'-g.tggtgggtgggtggg.t-3',其中星号表示硫代磷酸酯键)。在使用人T细胞的急性检测系统中,T30177及其全磷酸二酯同源物T30175分别在0.15和0.3微摩尔浓度时抑制HIV-1诱导的合胞体形成达50%。在生理条件下,17聚体的序列和组成有利于形成一种紧密的、分子内折叠结构,该结构由两个堆叠的鸟嘌呤四重体基序主导,它们由三个TG环连接。该分子通过两个堆叠四重体之间钾离子的配位作用而稳定。我们现在表明,这些含鸟嘌呤四重体的寡核苷酸对血清核酸酶具有高度抗性,T30175和T30177的半衰期分别为5小时和超过4天。两种寡核苷酸都能被细胞有效内化,孵育24小时后细胞内浓度比细胞外水平高5至10倍。相比之下,不能形成紧密折叠结构的单碱基突变变体或随机序列对照寡核苷酸半衰期明显缩短(半衰期约为3至7分钟),细胞摄取率低,且没有序列特异性抗HIV-1活性。这些数据表明,寡核苷酸的三级结构是其核酸酶抗性、细胞摄取动力学和生物学功效的关键决定因素。