Suppr超能文献

发夹状核酶的结构映射。镁依赖型折叠以及核酶-底物复合物中三级相互作用的证据。

Structure-mapping of the hairpin ribozyme. Magnesium-dependent folding and evidence for tertiary interactions within the ribozyme-substrate complex.

作者信息

Butcher S E, Burke J M

机构信息

Department of Microbiology and Molecular Genetics, Markey Center for Molecular Genetics, University of Vermont, Burlington 05405.

出版信息

J Mol Biol. 1994 Nov 18;244(1):52-63. doi: 10.1006/jmbi.1994.1703.

Abstract

We have used chemical modification analysis to probe the solution structure of the hairpin ribozyme. The modifying reagents dimethylsulfate, 1-cyclohexyl-N'-[2-(N-methylmorpholino) ethyl-carbodiimide-p-toluenesulfonate, kethoxal, diethylpyrocarbonate and (2,12-dimethyl-3,7,11,17- tetraazabicyclo [11.3.1]heptadeca-1(17),2,11,13,15-pentaenato) nickel(II) perchlorate were used to probe functional groups that participate in Watson-Crick and non-canonical base-pairs. Our results confirm the existence of four short helices (3 to 6 bp) within the ribozyme-substrate complex, and demonstrate that one intramolecular helix (helix 4) is comprised of three base-pairs rather than the previously suggested five. In the absence of magnesium, the ribozyme is observed to fold into its secondary structure. Upon addition of magnesium, a striking difference in chemical modification is observed, particularly at sites within the ribozyme's large internal loop (loop B) that are essential for catalytic function (bases 21 to 26). Moreover, magnesium-dependent folding clearly destabilizes an A-U base-pair in a region where a proposed bend is required to juxtapose the catalytically essential loops A and B. Upon addition of substrate, no changes are observed in the structure of helix 3, loop B or helix 4. However, strong protection of bases in the substrate-binding domain is observed, including those located across internal loop A. The modification data are consistent with the formation of a previously proposed tertiary structure motif within loop B that includes non-canonical G-A, A-U and A-A base-pairs, and that is identical with those identified by NMR analysis of loop E of 5 S rRNA and the sarcin/ricin loop of 28 S rRNA. Our results indicate that the hairpin ribozyme adopts a stable magnesium-dependent tertiary structure to which the substrate binds without inducing major conformational changes, and that substrate recognition is likely to involve non-canonical base-pairs between the ribozyme and substrate sequences adjacent to the cleavage site.

摘要

我们利用化学修饰分析来探究发夹状核酶的溶液结构。使用修饰试剂硫酸二甲酯、1-环己基-N'-[2-(N-甲基吗啉基)乙基]碳二亚胺对甲苯磺酸盐、乙二醛、焦碳酸二乙酯和高氯酸(2,12-二甲基-3,7,11,17-四氮杂双环[11.3.1]十七碳-1(17),2,11,13,15-戊烯基)镍(II)来探测参与沃森-克里克碱基对和非经典碱基对的官能团。我们的结果证实了核酶-底物复合物中存在四个短螺旋(3至6个碱基对),并表明一个分子内螺旋(螺旋4)由三个碱基对组成,而非先前认为的五个。在没有镁的情况下,观察到核酶折叠成其二级结构。加入镁后,观察到化学修饰有显著差异,特别是在核酶大内环(环B)中对催化功能至关重要的位点(碱基21至26)。此外,镁依赖的折叠明显使一个A-U碱基对在一个区域不稳定,在该区域需要一个假定的弯曲来并列催化必需的环A和环B。加入底物后,螺旋3、环B或螺旋4的结构没有变化。然而,观察到底物结合结构域中的碱基受到强烈保护,包括位于内环A对面的那些碱基。修饰数据与环B中先前提出的三级结构基序的形成一致,该基序包括非经典的G-A、A-U和A-A碱基对,并且与通过对5S rRNA的环E和28S rRNA的肌动蛋白/蓖麻毒素环进行核磁共振分析鉴定的那些基序相同。我们的结果表明,发夹状核酶采用稳定的镁依赖三级结构,底物与之结合而不引起主要的构象变化,并且底物识别可能涉及核酶与切割位点相邻的底物序列之间的非经典碱基对。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验