Sobol R W, Fisher W L, Reichenbach N L, Kumar A, Beard W A, Wilson S H, Charubala R, Pfleiderer W, Suhadolnik R J
Department of Biochemistry, Temple University School of Medicine, Philadelphia, Pennsylvania 19140.
Biochemistry. 1993 Nov 16;32(45):12112-8. doi: 10.1021/bi00096a023.
2',5'-Oligoadenylates (2-5A) and derivatives are noncompetitive inhibitors of primer/HIV-1 reverse transcriptase complex formation. The mechanism and specificity of this inhibitory action of 2-5A and 2-5A derivatives have been evaluated with 2-5A molecules modified in ribosyl moiety, chain length, extent of 5'-phosphorylation, and 2',5'-phosphodiester linkage. UV covalent cross-linking of preformed complexes of p66/p66 homodimer or p66/p51 heterodimer recombinant HIV-1 reverse transcriptase and the primer analog pd(T)16 allowed analysis of the initial step in HIV-1 reverse transcriptase-catalyzed DNA synthesis. Utilizing this primer binding assay, it is demonstrated that 2-5A and 2-5A derivatives inhibit the binding of pd(T)16 to HIV-1 reverse transcriptase. This inhibition is specific for the 2',5'-internucleotide linkage in that the corresponding 3',5'-adenylate derivatives do not exhibit inhibitory activity. Enhanced inhibitory properties were observed following modifications of the 2-5A molecule which result in an increase in hydrophobicity. Replacement of the D-ribosyl moiety of 2-5A with the 3'-deoxyribosyl moiety increased the inhibition of primer/HIV-1 reverse transcriptase complex formation 15-20%. 2',5'-Phosphorothioate substitution yielded the most effective inhibitors, with Ki's of 7-13 microM. In all cases, inhibition of primer/HIV-1 reverse transcriptase complex formation showed a preference for the 5'-triphosphate moiety. Nonphosphorylated derivatives were not inhibitory; 5'-monophosphate derivatives exhibited little or no inhibition. The inhibition of primer binding to HIV-1 reverse transcriptase correlated well with the inhibition of DNA-directed DNA synthesis.(ABSTRACT TRUNCATED AT 250 WORDS)
2',5'-寡腺苷酸(2-5A)及其衍生物是引物/HIV-1逆转录酶复合物形成的非竞争性抑制剂。已使用在核糖部分、链长度、5'-磷酸化程度和2',5'-磷酸二酯键方面进行修饰的2-5A分子评估了2-5A和2-5A衍生物这种抑制作用的机制和特异性。p66/p66同二聚体或p66/p51异二聚体重组HIV-1逆转录酶与引物类似物pd(T)16的预形成复合物的紫外共价交联允许分析HIV-1逆转录酶催化的DNA合成的起始步骤。利用这种引物结合试验,证明2-5A和2-5A衍生物抑制pd(T)16与HIV-1逆转录酶的结合。这种抑制对2',5'-核苷酸间键具有特异性,因为相应的3',5'-腺苷酸衍生物不表现出抑制活性。在导致疏水性增加的2-5A分子修饰后观察到增强的抑制特性。用3'-脱氧核糖部分取代2-5A的D-核糖部分使引物/HIV-1逆转录酶复合物形成的抑制增加了15-20%。2',5'-硫代磷酸酯取代产生了最有效的抑制剂,其Ki值为7-13 microM。在所有情况下,引物/HIV-1逆转录酶复合物形成的抑制对5'-三磷酸部分表现出偏好。非磷酸化衍生物无抑制作用;5'-单磷酸衍生物表现出很少或没有抑制作用。引物与HIV-1逆转录酶结合的抑制与DNA指导的DNA合成的抑制密切相关。(摘要截短于250字)