Afonina I, Kutyavin I, Lukhtanov E, Meyer R B, Gamper H
Epoch Pharmaceuticals, Bothell, WA 98201, USA.
Proc Natl Acad Sci U S A. 1996 Apr 16;93(8):3199-204. doi: 10.1073/pnas.93.8.3199.
A minor groove binder (MGB) derivative (N-3-carbamoyl-1,2-dihydro-3H-pyrrolo[3,2-e]indole-7-carboxylate tripeptide; CDPI3) was covalently linked to the 5' or 3' end of several oligodeoxyribonucleotides (ODNs) totally complementary or possessing a single mismatch to M13mp19 single-stranded DNA. Absorption thermal denaturation and slot-blot hybridization studies showed that conjugation of CDPI3 to these ODNs increased both the specificity and the strength with which they hybridized. Primer extension of the same phage DNA by a modified form of phage T7 DNA polymerase (Sequenase) was physically blocked when a complementary 16-mer with a conjugated 5'-CDPI3 moiety was hybridized to a downstream site. Approximately 50% of the replicating complexes were arrested when the blocking ODN was equimolar to the phage DNA. Inhibition was unaffected by 3'-capping of the ODN with a hexanol group or by elimination of a preannealing step. Blockage was abolished when a single mismatch was introduced into the ODN or when the MGB was either removed or replaced by a 5'-acridine group. A 16-mer with a 3'-CDPI3 moiety failed to arrest primer extension, as did an unmodified 32-mer. We attribute the exceptional stability of hybrids formed by ODNs conjugated to a CDPI3 to the tethered tripeptide binding in the minor groove of the hybrid. When that group is linked to the 5' end of a hybridized ODN, it probably blocks DNA synthesis by inhibiting strand displacement. These ODNs conjugated to CDPI3 offer attractive features as diagnostic probes and antigene agents.
一种小沟结合剂(MGB)衍生物(N-3-氨基甲酰基-1,2-二氢-3H-吡咯并[3,2-e]吲哚-7-羧酸三肽;CDPI3)与几种与M13mp19单链DNA完全互补或存在单个错配的寡脱氧核糖核苷酸(ODN)的5'或3'末端共价连接。吸收热变性和狭缝印迹杂交研究表明,CDPI3与这些ODN的缀合增加了它们杂交的特异性和强度。当带有缀合的5'-CDPI3部分的互补16聚体与下游位点杂交时,经修饰形式的噬菌体T7 DNA聚合酶(测序酶)对同一噬菌体DNA的引物延伸在物理上被阻断。当阻断ODN与噬菌体DNA等摩尔时,约50%的复制复合物被阻滞。ODN的3'-己醇基团封端或消除预退火步骤均不影响抑制作用。当ODN中引入单个错配或MGB被去除或被5'-吖啶基团取代时,阻断作用消失。带有3'-CDPI3部分的16聚体未能阻滞引物延伸,未修饰的32聚体也是如此。我们将与CDPI3缀合的ODN形成的杂交体的异常稳定性归因于杂交体小沟中连接的三肽结合。当该基团连接到杂交ODN的5'末端时,它可能通过抑制链置换来阻断DNA合成。这些与CDPI3缀合的ODN作为诊断探针和反基因剂具有吸引人的特性。