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关于特定胞苷残基与亚硫酸氢钠反应所得海拉细胞5.8S核糖体核糖核酸构象的证据。

Evidence on the conformation of HeLa-cell 5.8S ribosomal ribonucleic acid from the reaction of specific cytidine residues with sodium bisulphite.

作者信息

Kelly J M, Goddard J P, Maden E H

出版信息

Biochem J. 1978 Aug 1;173(2):521-32. doi: 10.1042/bj1730521.

Abstract

The reaction of HeLa-cell 5.8S rRNA with NaHSO3 under conditions in which exposed cytidine residues are deaminated to uridine was studied. It was possible to estimate the reactivities of most of the 46 cytidine residues in the nucleotide sequence by comparing 'fingerprints' of the bisulphite-treated RNA with those of untreated RNA. The findings were consistent with the main features of the secondary-structure model for mammalian 5.85S rRNA proposed by Nazar, Sitz, & Busch [J. Biol. Chem (1975) 250, 8591--8597]. Five out of six regions that are depicted in the model as single-stranded loops contain cytidine residues that are reactive towards bisulphite at 25 degrees C (the other loop contains no cytidine). The cytidine residue nearest to the 3'-terminus is also reactive. Several cytidines residues that are internally located within proposed double-helical regions show little or no reactivity towards bisulphite, but the cytidine residues of several C.G pairs at the ends of helical regions show some reactivity, and one of the proposed loops appears to contain six nucleotides, rather than the minimum of four suggested by the primary structure. Two cytidine residues that are thought to be 'looped out' by small helix imperfections also show some reactivity.

摘要

研究了在暴露的胞嘧啶残基脱氨基生成尿嘧啶的条件下,HeLa细胞5.8S rRNA与亚硫酸氢钠的反应。通过比较亚硫酸氢盐处理的RNA与未处理RNA的“指纹图谱”,可以估算出核苷酸序列中46个胞嘧啶残基中大多数的反应活性。这些发现与Nazar、Sitz和Busch提出的哺乳动物5.85S rRNA二级结构模型的主要特征一致[《生物化学杂志》(1975年)250, 8591 - 8597]。模型中描绘为单链环的六个区域中有五个含有在25℃下对亚硫酸氢盐有反应活性的胞嘧啶残基(另一个环不含胞嘧啶)。最靠近3’末端的胞嘧啶残基也具有反应活性。位于提议的双螺旋区域内部的几个胞嘧啶残基对亚硫酸氢盐几乎没有或没有反应活性,但螺旋区域末端几个C.G对的胞嘧啶残基有一些反应活性,并且提议的一个环似乎包含六个核苷酸,而不是一级结构所暗示的最少四个。两个被认为因小螺旋缺陷而“环出”的胞嘧啶残基也显示出一些反应活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3231/1185805/a5c22e0f3ca1/biochemj00482-0178-a.jpg

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