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Purine analog substitution of the HIV-1 polypurine tract primer defines regions controlling initiation of plus-strand DNA synthesis

机译:HIV-1多嘌呤束引物的嘌呤类似物取代定义了控制正链DNA合成起始的区域

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摘要

Despite extensive study, the mechanism by which retroviral reverse transciptases (RTs) specifically utilize polypurine tract (PPT) RNA for initiation of plus-strand DNA synthesis remains unclear. Three sequence motifs within or adjacent to the purine-rich elements are highly conserved, namely, a rU:dA tract region immediately 5′ to the PPT, an rA:dT-rich sequence constituting the upstream portion of the PPT and a downstream rG:dC tract. Using an in vitro HIV-1 model system, we determined that the former two elements define the 5′ terminus of the (+)-strand primer, whereas the rG:dC tract serves as the primary determinant of initiation specificity. Subsequent analysis demonstrated that G→A or A→G substitution at PPT positions −2, −4 and +1 (relative to the scissile phosphate) substantially reduces (+)-strand priming. We explored this observation further using PPT substrates substituted with a variety of nucleoside analogs [inosine (I), purine riboside (PR), 2-aminopurine (2-AP), 2,6-diaminopurine (2,6-DAP), isoguanine (iG)], or one of the naturally occurring bases at these positions. Our results demonstrate that for PPT positions −2 or +1, substituting position 2 of the purine was an important determinant of cleavage specificity. In addition, cleavage specificity was greatly affected by substituting −4G with an analog containing a 6-NH2 moiety.
机译:尽管进行了广泛的研究,逆转录病毒逆转录酶(RTs)专门利用多嘌呤束(PPT)RNA引发正链DNA合成的机制仍不清楚。富含嘌呤的元件内部或附近的三个序列基序是高度保守的,即紧接PPT的rU:dA区域,构成ppt上游部分的富含rA:dT序列和下游rG: dC道。使用体外HIV-1模型系统,我们确定了前两个元素定义了(+)链引物的5'末端,而rG:dC束则是起始特异性的主要决定因素。随后的分析表明,在PPT位置-2,-4和+1(相对于易磷酸酯)上的G→A或A→G取代大大降低了(+)链引发。我们进一步用取代了各种核苷类似物[肌苷(I),嘌呤核糖苷(PR),2-氨基嘌呤(2-AP),2,6-二氨基嘌呤(2,6-DAP),异鸟嘌呤的PPT底物探索了这一观察(iG)],或这些位置的自然碱基之一。我们的结果表明,对于PPT位置-2或+1,取代嘌呤的位置2是裂解特异性的重要决定因素。另外,通过用含有6-NH 2部分的类似物代替-4G极大地影响了切割特异性。

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