Hang Julie Q, Li Yu, Yang Yanli, Cammack Nick, Mirzadegan Tara, Klumpp Klaus
Roche Palo Alto LLC, 3431 Hillview Avenue, Palo Alto, CA 94304, USA.
Biochem Biophys Res Commun. 2007 Jan 12;352(2):341-50. doi: 10.1016/j.bbrc.2006.11.018. Epub 2006 Nov 14.
HIV reverse transcriptase (HIV-RT) contains two distinct protein domains catalyzing DNA polymerase and RNase H activities. Non-nucleoside reverse transcriptase inhibitor (NNRTI) binding to HIV-RT can affect RNase H activity. The structurally diverse NNRTIs capravirine, efavirenz, GW8248, TMC-125, and nevirapine all inhibited 5'-RNA directed HIV RNase H activity as partial inhibitors with maximal inhibition of 40-65%. Potencies of RNase H inhibition correlated with the respective potencies of DNA polymerase inhibition. Mutations in the NNRTI binding site (K103N, Y181C, Y188L, and K103N/Y181C) reduced the potency of RNase H inhibition, similar to their effects on DNA polymerase activity. The NNRTIs did not affect the activity of the isolated HIV RNase H domain. In contrast, 3'-DNA directed RNase H activity of HIV-RT was mechanistically distinct from 5'-RNA directed RNase H activity and was stimulated rather than inhibited by NNRTI binding to HIV-RT. Therefore, NNRTI binding to the polymerase domain of HIV-RT interferes with RNase H activity through a long-range effect, which is affected by the structure of the RNA:DNA hybrid substrate, but is independent of NNRTI compound structure and nucleic acid substrate sequence.
HIV逆转录酶(HIV-RT)包含两个不同的蛋白质结构域,分别催化DNA聚合酶和核糖核酸酶H(RNase H)活性。非核苷类逆转录酶抑制剂(NNRTI)与HIV-RT结合会影响RNase H活性。结构多样的NNRTI类药物卡普瑞韦、依非韦伦、GW8248、TMC-125和奈韦拉平均作为部分抑制剂抑制5'-RNA导向的HIV RNase H活性,最大抑制率为40%-65%。RNase H抑制效力与各自的DNA聚合酶抑制效力相关。NNRTI结合位点的突变(K103N、Y181C、Y188L和K103N/Y181C)降低了RNase H抑制效力,类似于它们对DNA聚合酶活性的影响。NNRTI不影响分离的HIV RNase H结构域的活性。相反,HIV-RT的3'-DNA导向的RNase H活性在机制上与5'-RNA导向的RNase H活性不同,并且被NNRTI与HIV-RT的结合所刺激而非抑制。因此,NNRTI与HIV-RT的聚合酶结构域结合通过远程效应干扰RNase H活性,这种远程效应受RNA:DNA杂交底物结构的影响,但与NNRTI化合物结构和核酸底物序列无关。