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首页> 外文期刊>Journal of Molecular Biology >MULTIPLE TERTIARY INTERACTIONS INVOLVING DOMAIN II OF GROUP II SELF-SPLICING INTRONS
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MULTIPLE TERTIARY INTERACTIONS INVOLVING DOMAIN II OF GROUP II SELF-SPLICING INTRONS

机译:涉及II组自结合内含子的域II的多重三元相互作用

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摘要

The ribozyme core of group II introns is organized into six domains of secondary structure. Of these, domain II was long thought to be relatively unimportant for group II self-splicing. However, we now demonstrate the existence, in both major subdivisions of the group II family, of essential tertiary interactions involving domain II. theta-theta' is a novel tertiary interaction between the terminal loop of the IC1 stem of domain I and the basal stem of domain II. The theta-theta' interaction appears to stabilize the group II ribozyme core: it is essential for efficient self-splicing at elevated temperatures but, as shown by the use of a bimolecular reaction system, molecules with a defective theta-theta' contact are not affected in catalysis. An interaction, eta-eta', between domains II and VI of subgroup IIB introns was recently reported to mediate a conformational rearrangement between the two steps of the self-splicing reaction. We now show that domains II and VI of subgroup IIA introns also contact each other, although in a somewhat different way. Reinforcement of the eta-eta' interaction of a subgroup IIA intron prevents the use of a specific 2'-hydroxyl group in domain VI to initiate splicing by transesterification at the 5' splice site; the 5' intron-exon junction is hydrolyzed instead. Since disruption of eta-eta' has exactly opposite effects, and promotes reversal of the first transesterification step, it is concluded that formation of eta-eta' mediates a conformational change in subgroup IIA introns as well. Just like the eta-eta' interaction of subgroup IIB introns, the eta-eta' interaction of subgroup IIA introns (and the theta-theta' interaction) involves terminal loops of the GNRA family and their RNA receptors. Therefore, these motifs are used by nature not only to stabilize three-dimensional RNA architectures, but also in situations that require dynamic interactions. (C) 1997 Academic Press Limited. [References: 42]
机译:第二组内含子的核酶核心被组织成二级结构的六个结构域。在这些域中,长期以来,域II对于组II自我剪接相对不重要。但是,我们现在证明了在II类家族的两个主要分支中,都存在涉及域II的基本三级相互作用。 “ theta-theta”是结构域I的IC1茎的末端环和结构域II的基础茎之间的新型三级相互作用。 Theta-theta'相互作用似乎稳定了II类核酶核心:这对于在高温下有效自我裂解是必不可少的,但是,如使用双分子反应系统所示,theta-theta'接触不良的分子不会受催化影响。最近报道了IIB亚群内含子的域II和VI之间的相互作用eta-eta'介导了自剪接反应两个步骤之间的构象重排。我们现在显示,IIA亚组内含子的域II和VI也相互接触,尽管方式有所不同。 IIA亚组内含子的eta-eta'相互作用的增强阻止了结构域VI中特定的2'-羟基的使用,通过在5'剪接位点的酯交换反应来启动剪接;而是将5'内含子-外显子连接水解。由于破坏eta-eta'具有完全相反的作用,并促进第一步酯交换步骤的逆转,因此得出结论,eta-eta'的形成也介导了IIA亚组内含子的构象变化。就像亚组IIB内含子的eta-eta'相互作用一样,亚组IIA内含子的eta-eta'相互作用(和theta-theta'相互作用)涉及GNRA家族及其RNA受体的末端环。因此,这些基序不仅可以用于稳定三维RNA结构,还可以用于需要动态相互作用的情况。 (C)1997 Academic Press Limited。 [参考:42]

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