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2
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Enzymatic properties of the unnatural beta-L-enantiomers of 2',3'-dideoxyadenosine and 2',3'-didehydro-2',3'-dideoxyadenosine.
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Chiral discrimination of 2'-deoxy-L-cytidine and L-nucleotides by mouse deoxycytidine kinase: low stereospecificities for substrates and effectors.小鼠脱氧胞苷激酶对2'-脱氧-L-胞苷和L-核苷酸的手性识别:对底物和效应物的低立体特异性
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10
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-beta-nucleosides.参与脱氧核糖核苷酸和DNA合成的某些细胞酶和病毒酶缺乏立体特异性:非天然L-β-核苷抗病毒活性的分子基础。
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L-ATP被一些细胞酶和病毒酶所识别:是偶然性驱动酶的对映体选择性吗?

L-ATP is recognized by some cellular and viral enzymes: does chance drive enzymic enantioselectivity?

作者信息

Verri A, Montecucco A, Gosselin G, Boudou V, Imbach J L, Spadari S, Focher F

机构信息

Istituto di Genetica Biochimica ed Evoluzionistica, CNR, Via Abbiategrasso 207, I-27100 Pavia, Italy.

出版信息

Biochem J. 1999 Feb 1;337 ( Pt 3)(Pt 3):585-90.

PMID:9895305
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1220013/
Abstract

We demonstrate that l-ATP is recognized by some enzymes that are involved in the synthesis of nucleotides and nucleic acids. l-ATP, as well as its natural d-enantiomer, acts as a phosphate donor in the reaction catalysed by human deoxycytidine kinase, whereas it is not recognized by either enantioselective human thymidine kinase or non-enantioselective herpes virus thymidine kinase. l-ATP strongly inhibits (Ki 80 microM) the synthesis of RNA primers catalysed by DNA primase associated with human DNA polymerase alpha, whereas RNA synthesis catalysed by Escherichia coli RNA polymerase is completely unaffected. Moreover, l-ATP competitively inhibits ATP-dependent T4 DNA ligase (Ki 25 microM), suggesting that it interacts with the ATP-binding site of the enzyme. Kinetic studies demonstrated that l-ATP cannot be used as a cofactor in the ligase-catalysed joining reaction. On the other hand, l-AMP is used by T4 DNA ligase to catalyse the reverse reaction, even though a high level of intermediate circular nicked DNA molecules accumulates. Our results suggest that a lack of enantioselectivity of enzymes is more common than was believed a few years ago, and, given the absence of selective constraints against l-nucleosides in Nature, this may depend on chance more than on evolutionary strategy.

摘要

我们证明,L-ATP可被一些参与核苷酸和核酸合成的酶识别。L-ATP及其天然的D-对映体在人脱氧胞苷激酶催化的反应中作为磷酸供体,而对映体选择性的人胸苷激酶或非对映体选择性的疱疹病毒胸苷激酶均不识别它。L-ATP强烈抑制(Ki为80微摩尔)与人DNA聚合酶α相关的DNA引物酶催化的RNA引物合成,而大肠杆菌RNA聚合酶催化的RNA合成则完全不受影响。此外,L-ATP竞争性抑制ATP依赖性的T4 DNA连接酶(Ki为25微摩尔),这表明它与该酶的ATP结合位点相互作用。动力学研究表明,L-ATP不能用作连接酶催化的连接反应中的辅因子。另一方面,T4 DNA连接酶可利用L-AMP催化逆反应,尽管会积累高水平的中间环状带切口DNA分子。我们的结果表明,酶缺乏对映体选择性比几年前所认为的更为普遍,而且鉴于自然界中不存在针对L-核苷的选择性限制,这可能更多地取决于偶然性而非进化策略。