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Lack of stereospecificity of some cellular and viral enzymes involved in the synthesis of deoxyribonucleotides and DNA: Molecular basis for the antiviral activity of unnatural L-β-nucleosides

机译:脱氧核糖核苷酸和DNA合成中涉及的某些细胞和病毒酶缺乏立体定向性:非天然L-β-核苷抗病毒活性的分子基础

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摘要

Among enzymes involved in the synthesis of nucleotides and DNA, some exceptions have recently been found to the universal rule that enzymes act only on one enantiomer of a chiral substrate and that only one of the enantiomeric forms of chiral molecules may bind effectively at the catalytic site, displaying biological activity. The exceptions include: herpes virus thymidine kinases, cellular deoxycytidine kinase and deoxynucloside mono- and diphosphate kinases, cellular and viral DNA polymerases, such as DNA polymerase α, terminal transferase and HIV-1 reverse transcriptase. The ability of these enzymes to utilize unnatural L-β-nucleosides or -nucleotides as substrate may be exploited from the chemotherapeutic point of view.
机译:在涉及核苷酸和DNA合成的酶中,最近发现一些普遍规则的例外情况,即酶仅作用于手性底物的一种对映异构体,而手性分子的仅一种对映体形式可以在催化位点有效结合,显示出生物活性。例外包括:疱疹病毒胸苷激酶,细胞脱氧胞苷激酶和脱氧核苷单磷酸和二磷酸激酶,细胞和病毒DNA聚合酶,例如DNA聚合酶α,末端转移酶和HIV-1逆转录酶。从化学治疗的观点来看,可以利用这些酶利用非天然的L-β-核苷或-核苷酸作为底物的能力。

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