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A multi-axial RNA joint with a large range of motion promotes sampling of an active ribozyme conformation

机译:具有大范围运动的多轴RNA关节促进活性核酶构象的取样

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摘要

Investigating the dynamics of structural elements in functional RNAs is important to better understand their mechanism and for engineering RNAs with novel functions. Previously, we performed rational engineering studies with the Varkud satellite (VS) ribozyme and switched its specificity toward non-natural hairpin substrates through modification of a critical kissing-loop interaction (KLI). We identified functional VS ribozyme variants with surrogate KLIs (ribosomal RNA L88/L22 and human immunodeficiency virus-1 TAR/TAR*), but they displayed approximate to 100-fold lower cleavage activity. Here, we characterized the dynamics of KLIs to correlate dynamic properties with function and improve the activity of designer ribozymes. Using temperature replica exchange molecular dynamics, we determined that the natural KLI in the VS ribozyme supports conformational sampling of its closed and active state, whereas the surrogate KLIs display more restricted motions. Based on in vitro selection, the cleavage activity of a VS ribozyme variant with the TAR/TAR* KLI could be markedly improved by partly destabilizing the KLI but increasing conformation sampling. We formulated a mechanistic model for substrate binding in which the KLI dynamics contribute to formation of the active site. Our model supports the modular nature of RNA in which subdomain structure and dynamics contribute to define the thermodynamics and kinetics relevant to RNA function.
机译:调查功能性RNA中结构元素的动态对于更好地了解其机制和具有新功能的工程RNA是重要的。以前,我们通过临界接吻环相互作用(KLI)来进行Varkud卫星(VS)核酶的理性工程研究,并通过修改临界接吻环(KLI)来切换朝向非天然发夹基板的特异性。我们鉴定了用替代克洛斯(核糖体RNA L88 / L22和人免疫缺陷病毒-1焦油/焦油*)的功能性VS核酶变体,但它们呈现近似为100倍的裂解活性。这里,我们表征了KLI的动态,以将动态性能与功能相关并改善设计者核酶的活性。使用温度副本交换分子动力学,我们确定VS核酶中的天然KLI支持其闭合和活跃状态的构象采样,而代理Klis显示出更多的限制动作。基于体外选择,可以通过部分稳定地稳定KLI但增加构象取样,显着改善了与焦油/焦油* KLI的VS核酶变体的切割活性。我们制定了一种用于基板结合的机械模型,其中KLI动力学有助于形成活性位点。我们的模型支持RNA的模块化性质,其中子域结构和动力学有助于定义与RNA功能相关的热力学和动力学。

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  • 来源
    《Nucleic Acids Research》 |2019年第7期|共13页
  • 作者单位

    Univ Montreal Dept Biochim &

    Med Mol CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Montreal Dept Biochim &

    Med Mol CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Montreal Dept Biochim &

    Med Mol CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

    Univ Montreal Dept Biochim &

    Med Mol CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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