Sylvers L A, Wower J, Hixson S S, Zimmermann R A
Department of Biochemistry, University of Massachusetts, Amherst 01003.
FEBS Lett. 1989 Mar 13;245(1-2):9-13. doi: 10.1016/0014-5793(89)80180-2.
2-Azidoadenosine was synthesized from 2-chloroadenosine by sequential reaction with hydrazine and nitrous acid and then bisphosphorylated with pyrophosphoryl chloride to form 2-azidoadenosine 3',5'-bisphosphate. The bisphosphate was labeled in the 5'-position using the exchange reaction catalyzed by T4 polynucleotide kinase in the presence of [gamma-32P]ATP. Polynucleotide kinase from a T4 mutant which lacks 3'-phosphatase activity (ATP:5'-dephosphopolynucleotide 5'-phosphotransferase, EC 2.7.1.78) was required to facilitate this reaction. 2-Azidoadenosine 3',5'-[5'-32P]bisphosphate can serve as an efficient donor in the T4 RNA ligase reaction and can replace the 3'-terminal adenosine of yeast tRNAPhe with little effect on the amino acid acceptor activity of the tRNA. In addition, we show that the modified tRNAPhe derivative can be photochemically cross-linked to the Escherichia coli ribosome.
2-叠氮腺苷由2-氯腺苷依次与肼和亚硝酸反应合成,然后用焦磷酰氯进行双磷酸化反应生成2-叠氮腺苷3',5'-双磷酸。利用T4多核苷酸激酶在[γ-32P]ATP存在下催化的交换反应,对双磷酸在5'-位进行标记。需要使用来自缺乏3'-磷酸酶活性的T4突变体的多核苷酸激酶(ATP:5'-去磷酸多核苷酸5'-磷酸转移酶,EC 2.7.1.78)来促进该反应。2-叠氮腺苷3',5'-[5'-32P]双磷酸在T4 RNA连接酶反应中可作为有效的供体,并且可以取代酵母苯丙氨酸tRNA的3'-末端腺苷,而对tRNA的氨基酸接受活性影响很小。此外,我们表明修饰后的苯丙氨酸tRNA衍生物可以与大肠杆菌核糖体进行光化学交联。