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一种影响RNA自溶加工反应的非连接磷酸二酯的鉴定。

Identification of a non-junction phosphodiester that influences an autolytic processing reaction of RNA.

作者信息

Buzayan J M, van Tol H, Feldstein P A, Bruening G

机构信息

Department of Plant Pathology, College of Agriculture and Environmental Sciences, University of California, Davis 95616.

出版信息

Nucleic Acids Res. 1990 Aug 11;18(15):4447-51. doi: 10.1093/nar/18.15.4447.

Abstract

Oligoribonucleotides with specific sequences derived from the satellite RNA of tobacco ringspot virus undergo autolytic cleavage at the CpA phosphodiester that is the junction between unit sequences of multimeric satellite RNA. Buzayan et al. (Nucleic Acids Res., 16, 4009-4023 (1988)) showed that an oligoribonucleotide with 97 satellite RNA-derived nucleotide residues self-cleaved with greatly reduced efficiency when it was synthesized in vitro from adenosine-5'-O-(1-thiotriphosphate) (abbreviated rATP alpha S) and three rNTPs. No other substitution of one rNTP by the corresponding rNTP alpha S had this effect, suggesting that a phosphorothioate CpA junction inhibits self-cleavage. Here, we replaced the usual CpA junction of a small self-cleaving oligoribonucleotide with a CpU junction. Self-cleavage of this molecule was reduced not only by rUTP alpha S-substitution, as expected, but also by partial and complete rATP alpha S-substitution. By analysis of the locations of rAMPS residues in cleavage products derived from partially rATP alpha S-substituted oligoribonucleotides, we identified A26 as the residue contributing the non-junction phosphorothioate diester that most strongly inhibited self-cleavage. Manganese ions strongly stimulated the self-cleavage of the rATP alpha S-substituted, CpU-junction oligoribonucleotide but was less effective when the junction was CpA.

摘要

源自烟草环斑病毒卫星RNA的具有特定序列的寡核糖核苷酸在多聚体卫星RNA的单位序列之间的连接点即CpA磷酸二酯处发生自裂解。布扎扬等人(《核酸研究》,16,4009 - 4023(1988))表明,一个具有97个源自卫星RNA的核苷酸残基的寡核糖核苷酸在体外由腺苷 - 5'-O -(1 - 硫代三磷酸)(缩写为rATPαS)和三种rNTP合成时,其自裂解效率大大降低。用相应的rNTPαS替换一种rNTP没有其他情况会产生这种效果,这表明硫代磷酸酯CpA连接抑制自裂解。在此,我们用CpU连接替换了一个小的自裂解寡核糖核苷酸的通常的CpA连接。该分子的自裂解不仅如预期那样因rUTPαS替换而降低,而且因部分和完全的rATPαS替换而降低。通过分析源自部分rATPαS替换的寡核糖核苷酸的裂解产物中rAMPS残基的位置,我们确定A26是贡献对自裂解抑制作用最强的非连接硫代磷酸酯二酯的残基。锰离子强烈刺激rATPαS替换的、CpU连接的寡核糖核苷酸的自裂解,但当连接是CpA时效果较差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c9e/331263/db9ac987c87b/nar00199-0135-a.jpg

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