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侧翼G.C碱基对对短核糖核酸双链体内的内部沃森-克里克碱基对、G.U碱基对和非键合碱基对的影响。

Effects of flanking G . C base pairs on internal Watson-Crick, G . U, and nonbonded base pairs within a short ribonucleic acid duplex.

作者信息

Alkema D, Hader P A, Bell R A, Neilson T

出版信息

Biochemistry. 1982 Apr 27;21(9):2109-17. doi: 10.1021/bi00538a020.

Abstract

A series of pentaribonucleotides, ApGpXpGpU (where X identical to A, G, C, or U), was synthesized to investigate the effects of flanking G . C pairs on internal Watson-Crick, G . U, and nonbonded base pairs. Sequences ApGpApCpU (Tm = 26 degrees C) and ApGpCpCpU (Tm = 25 degrees C) were each found to form a duplex with non-base-paired internal residues that stacked with the rest of the sequence but were not looped out. ApGpGpCpU also forms a duplex (Tm = 30 degrees C) but with dangling terminal nonbonded adenosines rather than internal nonbonded guanosines. ApGpUpCpU prefers a stacked single-strand conformation. In addition, contribution to duplex stability from an internal A . U or G . C base pair is enhanced by 6 degrees C when flanked by G . C base pairs as compared to A . U base pairs. G . C base pairs flanking an internal G . U base pair were found to be more tolerant to the altered conformation of a G . U pair and result in an increase to stability comparable with that found for an internal A . U base pair.

摘要

合成了一系列戊核糖核苷酸ApGpXpGpU(其中X等同于A、G、C或U),以研究侧翼G.C碱基对 对内部沃森-克里克碱基对、G.U碱基对和非键合碱基对的影响。发现序列ApGpApCpU(Tm = 26℃)和ApGpCpCpU(Tm = 25℃)各自形成一种双链体,其内部残基未形成碱基对,这些残基与序列的其余部分堆积在一起,但未环出。ApGpGpCpU也形成一种双链体(Tm = 30℃),但带有悬垂的末端非键合腺苷而非内部非键合鸟苷。ApGpUpCpU倾向于形成堆积的单链构象。此外,与A.U碱基对相比,当内部A.U或G.C碱基对侧翼为G.C碱基对时,其对双链体稳定性的贡献提高6℃。发现内部G.U碱基对侧翼的G.C碱基对 对G.U碱基对改变的构象更具耐受性,并且导致稳定性增加,与内部A.U碱基对相当。

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