Havron A, Sperling J, Elad D
Nucleic Acids Res. 1976 Jul;3(7):1715-25. doi: 10.1093/nar/3.7.1715.
Photoalkylation reactions with 2-propanol, initiated with di-tert-butyl peroxide, of a variety of purine and pyrimidine mononucleotides and dinucleoside monophosphates lead to the substitution of an alpha-hydroxyisopropyl group for the H-8 atom of adenosine and the addition of the alcohol across the 5,6-double bond of the pyrimidines. Adenosine moieties blocked at their 3'-hydroxyl group are alkylated faster than those blocked at their 5'-hydroxyl. The reactivity of the uridine moieties of 3'-UMP, 5'-UMP, and uridylyl-(3',5')-uridine is not affected by the location of the phosphate group. However, the uridine moiety of uridylyl-(3',5')-adenosine is modified faster than that of adenylyl-(3',5')-uridine. It is suggested that steric hindrance imposed by the phosphate group determines the reactivity of adenosine moieties, while base stacking involving adenosine determines the reactivity of uridine moieties. These two effects play a major role in controlling the nature and degree of the selectivity of these photoalkylation reactions for either adenosine or uridine. Cytidine has been found to be inert in these reactions.
以二叔丁基过氧化物引发的、与2-丙醇发生的光烷基化反应,作用于多种嘌呤和嘧啶单核苷酸以及二核苷单磷酸,会导致腺苷的H-8原子被α-羟基异丙基取代,并且醇会加成到嘧啶的5,6-双键上。3'-羟基被封闭的腺苷部分比5'-羟基被封闭的腺苷部分烷基化速度更快。3'-UMP、5'-UMP和尿苷酰-(3',5')-尿苷中尿苷部分的反应活性不受磷酸基团位置的影响。然而,尿苷酰-(3',5')-腺苷中尿苷部分的修饰速度比腺苷酰-(3',5')-尿苷中尿苷部分的修饰速度快。有人提出,磷酸基团造成的空间位阻决定了腺苷部分的反应活性,而涉及腺苷的碱基堆积决定了尿苷部分的反应活性。这两种效应在控制这些光烷基化反应对腺苷或尿苷的选择性的性质和程度方面起主要作用。已发现胞苷在这些反应中呈惰性。