Puri N, Majumdar A, Cuenoud B, Natt F, Martin P, Boyd A, Miller P S, Seidman M M
NIA, National Institutes of Health, Baltimore, Maryland 21224, USA.
J Biol Chem. 2001 Aug 3;276(31):28991-8. doi: 10.1074/jbc.M103409200. Epub 2001 Jun 1.
Triplex forming oligonucleotides (TFOs) are of interest because of their potential for facile gene targeting. However, the failure of TFOs to bind target sequences at physiological pH and Mg(2+) concentration has limited their biological applications. Recently, pyrimidine TFOs with 2'-O-aminoethyl (AE) substitutions were shown to have enhanced kinetics and stability of triplex formation (Cuenoud, B., Casset, F., Husken, D., Natt, F., Wolf, R. M., Altmann, K. H., Martin, P., and Moser H. E. (1998) Angew. Chem. Int. Ed. 37, 1288--1291). We have prepared psoralen-linked TFOs with varying amounts of the AE-modified residues, and have characterized them in biochemical assays in vitro, and in stability and HPRT gene knockout assays in vivo. The AE TFOs showed higher affinity for the target in vitro than a TFO with uniform 2'-OMe substitution, with relatively little loss of affinity when the assay was performed in reduced Mg(2+). Once formed they were also more stable in "physiological" buffer, with the greatest affinity and stability displayed by the TFO with all but one residue in the AE format. However, TFOs with lesser amounts of the AE modification formed the most stable triplexes in vivo, and showed the highest HPRT gene knockout activity. We conclude that the AE modification can enhance the biological activity of pyrimidine TFOs, but that extensive substitution is deleterious.
三链形成寡核苷酸(TFOs)因其具有便捷的基因靶向潜力而备受关注。然而,TFOs在生理pH值和镁离子浓度下无法与靶序列结合,这限制了它们的生物学应用。最近,具有2'-O-氨乙基(AE)取代的嘧啶TFOs被证明具有增强的三链形成动力学和稳定性(Cuenoud, B., Casset, F., Husken, D., Natt, F., Wolf, R. M., Altmann, K. H., Martin, P., and Moser H. E. (1998) Angew. Chem. Int. Ed. 37, 1288--1291)。我们制备了具有不同数量AE修饰残基的补骨脂素连接的TFOs,并在体外生化测定、体内稳定性和HPRT基因敲除测定中对它们进行了表征。与具有均匀2'-OMe取代的TFO相比,AE TFOs在体外对靶标的亲和力更高,当在降低的镁离子浓度下进行测定时,亲和力损失相对较小。一旦形成,它们在“生理”缓冲液中也更稳定,具有AE形式的除一个残基外所有残基的TFO表现出最大的亲和力和稳定性。然而,具有较少AE修饰量的TFOs在体内形成了最稳定的三链体,并表现出最高的HPRT基因敲除活性。我们得出结论,AE修饰可以增强嘧啶TFOs的生物活性,但广泛取代是有害的。