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5-叠氮基-2'-脱氧尿苷5'-三磷酸的合成及其生物学特性,一种适用于制备光敏DNA的光活性核苷酸。

Synthesis and biological properties of 5-azido-2'-deoxyuridine 5'-triphosphate, a photoactive nucleotide suitable for making light-sensitive DNA.

作者信息

Evans R K, Haley B E

出版信息

Biochemistry. 1987 Jan 13;26(1):269-76. doi: 10.1021/bi00375a037.

Abstract

A photoactive nucleotide analogue of dUTP, 5-azido-2'-deoxyuridine 5'-triphosphate (5-N3dUTP), was synthesized from dUMP in five steps. The key reaction in the synthesis of 5-N3dUTP is the nitration of dUMP in 98% yield in 5 min at 25 degrees C using an excess of nitrosonium tetrafluoroborate in anhydrous dimethylformamide. Reduction of the resulting 5-nitro compound with zinc and 20 mM HCl gave 5-aminodeoxyuridine monophosphate (5-NH2dUMP). Diazotization of 5-NH2dUMP with HNO2 followed by the addition of NaN3 to the acidic diazonium salt solution gave a photoactive nucleotide derivative in 80-90% yield. The monophosphate product was identified as 5-N3dUMP by proton NMR, UV, IR, and chromatographic analysis as well as by the mode of synthesis and its photosensitivity. After formation of 5-N3dUTP through a chemical coupling of pyrophosphate to 5-N3dUMP, the triphosphate form of the nucleotide was found to support DNA synthesis by Escherichia coli DNA polymerase I at a rate indistinguishable from that supported by dTTP. When UMP was used as the starting compound, 5-N3UTP was formed in an analogous fashion with similar yields and produced a photoactive nucleotide which is a substrate for E. coli RNA polymerase. To prepare [gamma-32P]-5-N3dUTP for use as an active-site-directed photoaffinity labeling reagent, a simple method of preparing gamma-32P-labeled pyrimidine nucleotides was developed. [gamma-32P]-5-N3dUTP is an effective photoaffinity labeling reagent for DNA polymerase I and was found to bind to the active site with a 2-fold higher affinity than dTTP.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

一种dUTP的光活性核苷酸类似物,5-叠氮基-2'-脱氧尿苷5'-三磷酸(5-N3dUTP),由dUMP分五步合成。5-N3dUTP合成中的关键反应是在25℃下,于无水二甲基甲酰胺中使用过量的四氟硼酸硝鎓,在5分钟内以98%的产率对dUMP进行硝化。用锌和20 mM盐酸还原所得的5-硝基化合物,得到5-氨基脱氧尿苷单磷酸(5-NH2dUMP)。用HNO2对5-NH2dUMP进行重氮化,然后向酸性重氮盐溶液中加入NaN3,得到产率为80-90%的光活性核苷酸衍生物。通过质子核磁共振、紫外、红外和色谱分析以及合成方式及其光敏性,将单磷酸产物鉴定为5-N3dUMP。通过焦磷酸与5-N3dUMP的化学偶联形成5-N3dUTP后,发现该核苷酸的三磷酸形式能以与dTTP支持的速率无明显差异的速率支持大肠杆菌DNA聚合酶I的DNA合成。当UMP用作起始化合物时,5-N3UTP以类似方式形成,产率相似,并产生一种光活性核苷酸,它是大肠杆菌RNA聚合酶的底物。为制备用作活性位点定向光亲和标记试剂的[γ-32P]-5-N3dUTP,开发了一种制备γ-32P标记嘧啶核苷酸的简单方法。[γ-32P]-5-N3dUTP是一种用于DNA聚合酶I的有效光亲和标记试剂,发现它与活性位点的结合亲和力比dTTP高2倍。(摘要截短于250字)

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