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成熟的和体外合成的未修饰大肠杆菌苯丙氨酸转运核糖核酸(tRNAPhe)的镁离子结合与结构稳定性

Mg2+ binding and structural stability of mature and in vitro synthesized unmodified Escherichia coli tRNAPhe.

作者信息

Serebrov V, Vassilenko K, Kholod N, Gross H J, Kisselev L

机构信息

Engelhardt Institute of Molecular Biology, Moscow 117984, Russia.

出版信息

Nucleic Acids Res. 1998 Jun 1;26(11):2723-8. doi: 10.1093/nar/26.11.2723.

DOI:10.1093/nar/26.11.2723
PMID:9592160
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC147623/
Abstract

Mature tRNAPhe from Escherichia coli and the transcript of its gene lacking modified nucleotides were compared by a variety of physical techniques. Melting experiments revealed that at a low Mg2+level the transcript was partially denatured, while the mature tRNA possessed intact tertiary interactions. Mg2+binding to both tRNAs was studied by CD and UV techniques as well as by using the Mg2+-sensitive fluorescence indicator, 8-hydroxyquinoline 5-sulfonic acid. Both tRNA forms exhibited a single strong Mg2+-binding site, its dissociation constant was 10-fold higher for the transcript. Conformational changes in response to Mg2+ addition measured by CD and UV spectrometry revealed no difference for the estimated binding cooperativity and strong differences for affinities of Mg2+-binding sites for the two tRNA forms. Conformational transitions in mature and in in vitro synthesized tRNA required the binding of two Mg2+ ions per molecule and therefore should be associated not only with a single strong binding site. The Mg2+ dependence of Stokes radii measured by gel-filtration revealed insignificant differences between the overall sizes of the two tRNA forms at physiological Mg2+ levels (>1 mM). Taken together, these results suggest that modified nucleotides stabilize tertiary interactions and increase the structure stability without affecting the mechanism of Mg2+binding and overall folding of the tRNA molecule. This conclusion is supported by the known biological activity of the E. coli tRNAPhe gene transcript.

摘要

通过多种物理技术对来自大肠杆菌的成熟苯丙氨酸转运核糖核酸(tRNAPhe)及其缺乏修饰核苷酸的基因转录本进行了比较。熔解实验表明,在低镁离子水平下,转录本部分变性,而成熟的转运核糖核酸具有完整的三级相互作用。通过圆二色(CD)和紫外技术以及使用对镁离子敏感的荧光指示剂8-羟基喹啉-5-磺酸研究了镁离子与两种转运核糖核酸的结合。两种转运核糖核酸形式均表现出一个单一的强镁离子结合位点,其解离常数对于转录本来说要高10倍。通过CD和紫外光谱法测量的对添加镁离子的构象变化表明,两种转运核糖核酸形式在估计的结合协同性方面没有差异,而在镁离子结合位点的亲和力方面存在显著差异。成熟的和体外合成的转运核糖核酸中的构象转变每个分子需要结合两个镁离子,因此不应仅与一个单一的强结合位点相关。通过凝胶过滤测量的斯托克斯半径的镁离子依赖性表明,在生理镁离子水平(>1 mM)下,两种转运核糖核酸形式的总体大小之间差异不显著。综上所述,这些结果表明修饰核苷酸稳定三级相互作用并增加结构稳定性,而不影响镁离子结合机制和转运核糖核酸分子的整体折叠。大肠杆菌苯丙氨酸转运核糖核酸基因转录本的已知生物学活性支持了这一结论。