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使用溴化氰进行寡聚腺苷酸的模板导向聚合反应。

Template-directed polymerization of oligoadenylates using cyanogen bromide.

作者信息

Kanaya E, Yanagawa H

出版信息

Biochemistry. 1986 Nov 18;25(23):7423-30. doi: 10.1021/bi00371a026.

DOI:10.1021/bi00371a026
PMID:3801421
Abstract

Cyanogen bromide (BrCN) condensed oligoadenylates [oligo(A)] on a poly(uridylic acid) [poly(U)] template in an aqueous solution. Imidazole and divalent metal ions such as Mn2+, Co2+, Ni2+, Cu2+, Zn2+, Mg2+, and Fe2+ were required for the condensation. Chain length of oligo(A) and reaction temperature affected the coupling yield. Hexaadenylate [(pA)6] was converted to (pA)12, (pA)18, (pA)24, (pA)30, (pA)36, (pA)42, and (pA)48 in a 68% overall yield for 20 h at 25 degrees C. The coupling yield increased with increase in the poly(U) concentration. Five- to sevenfold molar excess of uridylyl residues of poly(U) to adenylyl residues of oligo(A) gave the best yield (68%). Metal ions affected the formation of linkage isomers of the phosphate bonds: The 2',5'- and 3',5'-phosphodiester bonds were predominant in the presence of Co2+, Zn2+, and Ni2+ and the 5',5'-pyrophosphate bond was predominant in the presence of Mn2+. In particular, Ni2+ gave the highest ratio of the 3',5'-phosphodiester bond (30%). N-Cyanoimidazole (1), N,N'-iminodiimidazole (2), and N-carboxamidoimidazole (3) were formed in a reaction of imidazole with BrCN in an aqueous solution. 1 and 2 had much the same condensing activity for the polymerization of adenylates as BrCN. A reaction pathway was proposed in which 1 and 2 are not only intermediates for the production of 3 but also the true condensing agent in the coupling reaction of oligo(A). Phosphorimidazolide derivative was detected in a reaction of 5'-AMP with either 1 or 2. The condensation would proceed by way of N-cyanoimidazole-phosphate adduct, the phosphorimidazolide derivative, or both.

摘要

溴化氰(BrCN)在水溶液中于聚(尿苷酸)[poly(U)]模板上缩合寡聚腺苷酸[oligo(A)]。缩合反应需要咪唑和二价金属离子,如Mn2+、Co2+、Ni2+、Cu2+、Zn2+、Mg2+和Fe2+。寡聚腺苷酸的链长和反应温度会影响偶联产率。在25℃下反应20小时,六腺苷酸[(pA)6]以68%的总产率转化为(pA)12、(pA)18、(pA)24、(pA)30、(pA)36、(pA)42和(pA)48。偶联产率随聚(U)浓度的增加而提高。聚(U)的尿苷酰残基相对于寡聚腺苷酸的腺苷酰残基有5至7倍的摩尔过量时,产率最佳(68%)。金属离子影响磷酸酯键连接异构体的形成:在Co2+、Zn2+和Ni2+存在下,2',5'-和3',5'-磷酸二酯键占主导,而在Mn2+存在下,5',5'-焦磷酸键占主导。特别是,Ni2+产生的3',5'-磷酸二酯键比例最高(30%)。N-氰基咪唑(1)、N,N'-亚氨基二咪唑(2)和N-羧酰胺基咪唑(3)是咪唑与溴化氰在水溶液中反应生成的。1和2对腺苷酸聚合的缩合活性与溴化氰大致相同。提出了一种反应途径,其中1和2不仅是生成3的中间体,也是寡聚腺苷酸偶联反应中的真正缩合剂。在5'-AMP与1或2的反应中检测到了磷酰咪唑衍生物。缩合反应将通过N-氰基咪唑-磷酸加合物、磷酰咪唑衍生物或两者进行。

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