首页> 美国卫生研究院文献>Nucleic Acids Research >Stereospecificity of human DNA polymerases alpha beta gamma delta and epsilon HIV-reverse transcriptase HSV-1 DNA polymerase calf thymus terminal transferase and Escherichia coli DNA polymerase I in recognizing D- and L-thymidine 5-triphosphate as substrate.
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Stereospecificity of human DNA polymerases alpha beta gamma delta and epsilon HIV-reverse transcriptase HSV-1 DNA polymerase calf thymus terminal transferase and Escherichia coli DNA polymerase I in recognizing D- and L-thymidine 5-triphosphate as substrate.

机译:人类DNA聚合酶αβγδ和εHIV逆转录酶HSV-1 DNA聚合酶小牛胸腺末端转移酶和大肠杆菌DNA聚合酶I的立体特异性以D-和L-胸苷5-三磷酸为底物。

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摘要

L-beta-Deoxythymidine (L-dT), the optical enantiomer of D-beta-deoxythymidine (D-dT), and L-enantiomers of nucleoside analogs, such as 5-iodo-2'-deoxy-L-uridine (L-IdU) and E-5-(2-bromovinyl)-2'-deoxy-L-uridine (L-BVdU), are not recognized in vitro by human cytosolic thymidine kinase (TK), but are phosphorylated by herpes simplex virus type 1 (HSV-1) TK and inhibit HSV-1 proliferation in infected cells. Here we report that: (i) L-dT is selectively phosphorylated in vivo to L-dTMP by HSV-1 TK and L-dTMP is further phosphorylated to the di- and triphosphate forms by non-stereospecific cellular kinases; (ii) L-dTTP not only inhibits HSV-1 DNA polymerase in vitro, but also human DNA polymerase alpha, gamma, delta and epsilon, human immunodeficiency virus reverse transcriptase (HIV-1 RT), Escherichia coli DNA polymerase 1 and calf thymus terminal transferase, although DNA polymerase beta was resistant; (iii) whereas DNA polymerase beta, gamma, delta and epsilon are unable to utilize L-dTTP as a substrate, the other DNA polymerases clearly incorporate at least one L-dTMP residue, with DNA polymerase alpha and HIV-1 RT able to further elongate the DNA chain by catalyzing the formation of the phosphodiester bond between the incorporated L-dTMP and an incoming L-dTTP; (iv) incorporated L-nucleotides at the 3'-OH terminus make DNA more resistant to 3'-->5' exonucleases. In conclusion, our results suggest a possible mechanism for the inhibition of viral proliferation by L-nucleosides.
机译:L-β-脱氧胸苷(L-dT),D-β-脱氧胸苷的光学对映体(D-dT)和核苷类似物的L-对映体,例如5-碘-2'-脱氧-L-尿苷(L -IdU)和E-5-(2-溴乙烯基)-2'-脱氧-L-尿苷(L-BVdU)在体外无法被人胞浆胸苷激酶(TK)识别,但是会被单纯疱疹病毒类型磷酸化1(HSV-1)TK和抑制HSV-1在感染细胞中的增殖。在这里,我们报道:(i)L-dT在体内被HSV-1 TK选择性地磷酸化为L-dTMP,L-dTMP被非立体特异性细胞激酶进一步磷酸化为二磷酸和三磷酸形式; (ii)L-dTTP不仅在体外抑制HSV-1 DNA聚合酶,而且抑制人DNA聚合酶α,γ,δ和ε,人免疫缺陷病毒逆转录酶(HIV-1 RT),大肠杆菌DNA聚合酶1和小牛胸腺末端转移酶,尽管DNA聚合酶β具有抗性; (iii)尽管DNA聚合酶beta,γ,δ和ε无法利用L-dTTP作为底物,但其他DNA聚合酶显然掺入了至少一个L-dTMP残基,而DNA聚合酶α和HIV-1 RT能够进一步通过催化掺入的L-dTMP和进入的L-dTTP之间的磷酸二酯键的形成来延长DNA链; (iv)在3'-OH末端掺入L-核苷酸使DNA对3'-> 5'核酸外切酶更具抗性。总之,我们的研究结果提示了L-核苷抑制病毒增殖的可能机制。

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