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首页> 外文期刊>Journal of Molecular Biology >Interaction of the Neurospora crassa mitochondrial tyrosyl-tRNA synthetase (CYT-18 protein) with the group I intron P4-P6 domain. Thermodynamic analysis and the role of metal ions
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Interaction of the Neurospora crassa mitochondrial tyrosyl-tRNA synthetase (CYT-18 protein) with the group I intron P4-P6 domain. Thermodynamic analysis and the role of metal ions

机译:景天孢子虫线粒体酪氨酰-tRNA合成酶(CYT-18蛋白)与第I组内含子P4-P6结构域的相互作用。热力学分析和金属离子的作用

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The Neurospora crassa mitochondrial tyrosyl-tRNA synthetase (CYT-18 protein) functions in splicing group I introns by promoting the formation of the catalytically active structure of the intron's catalytic core. Previous studies suggested a model in which the protein binds first to the intron's P4-P6 domain, and then makes additional contacts with the P3-P9 domain to stabilize the tw domains in the correct relative orientation to form the intron's active site. Here, we analyzed the interaction of CYT-18 with a small RNA (P4-P6 RNA) corresponding to the isolated P4-P6 domain of the N. crassa mitochondrial large subunit ribosomal RNA intron. RNA footprinting and modification-interference experiments showed that CYT-18 binds to this small RNA around the junction of the P4-P6 stacked helices on the side opposite the active-site cleft, as it does to the P4-P6 domain in the intact intron. The binding is inhibited by chemical modifications that disrupt base-pairing in P4, P6, and P6a, indicating that a partially folded structure of the P4-P6 domain is required. The temperature-dependence of binding indicates that the interaction is driven by a favorable enthalpy change, but is accompanied by an unfavorable entropy change. The latter may reflect entropically unfavorable conformational changes or decreased conformational flexibility in the complex. CYT-18 binding is inhibited at greater than or equal to 125 mM KCl, indicating a strong dependence on phosphodiester-backbone interactions. On the other hand, Mg2+ is absolutely required for CYT-18 binding, with titration experiments showing similar to1.5 magnesium ions bound per complex. Metal ion-cleavage experiments identified a divalent cation-binding site near the boundary of P6 and J6/6a, and chemical modification showed that Mg2+ binding induces RNA conformational changes in this region, as well as elsewhere, particularly in J4/5. Together, these findings suggest a model in which the binding of Mg2+ near J6/6a and possibly at one additional location in the P4-P6 RNA induces formation of a specific phosphodiester-backbone geometry that is required for CYT-18 binding. The binding of CYT-18 may then establish the correct structure at the junction of the P4/P6 stacked helices for assembly of the P3-P9 domain. The interaction of CYT-18 with the P4-P6 domain appears similar to the TyrRS interaction with the D-/anticodon arm stacked helices of tRNA(Tyr). (C) 2001 Academic Press. [References: 65]
机译:芥菜神经线粒体线粒体酪氨酰-tRNA合成酶(CYT-18蛋白)通过促进内含子催化核心催化活性结构的形成,在剪接I类内含子中起作用。先前的研究提出了一种模型,其中蛋白质首先结合内含子的P4-P6结构域,然后与P3-P9结构域进行其他接触,以正确的相对方向稳定tw结构域,从而形成内含子的活性位点。在这里,我们分析了CYT-18与小RNA(P4-P6 RNA)的相互作用,该小RNA(对应于N. crassa线粒体大亚基核糖体RNA内含子的分离的P4-P6域)。 RNA足迹和修饰干扰实验表明,CYT-18结合在与活性位点对侧的P4-P6堆积螺旋的交界处的这个小RNA上,就像它与完整内含子中的P4-P6结构域一样。结合被破坏P4,P6和P6a中碱基配对的化学修饰所抑制,这表明需要P4-P6域的部分折叠结构。结合的温度依赖性表明相互作用是由有利的焓变化驱动的,但伴随有不利的熵变化。后者可能反映了复合物中熵不利的构象变化或构象柔性降低。 CYT-18结合在大于或等于125 mM KCl时被抑制,表明对磷酸二酯-主链相互作用的强烈依赖性。另一方面,CYT-18结合绝对需要Mg2 +,滴定实验显示每个复合物结合了约1.5个镁离子。金属离子裂解实验在P6和J6 / 6a的边界附近发现了一个二价阳离子结合位点,化学修饰表明Mg2 +结合在该区域以及其他区域(特别是在J4 / 5中)诱导RNA构象变化。在一起,这些发现提出了一个模型,其中Mg2 +在J6 / 6a附近并且可能在P4-P6 RNA的另一个位置的结合诱导了CYT-18结合所需的特定磷酸二酯-主链几何结构的形成。然后,CYT-18的结合可以在P4 / P6堆叠螺旋的连接处建立正确的结构,以组装P3-P9域。 CYT-18与P4-P6结构域的相互作用似乎与TyrRS与tRNA(Tyr)的D- /反齿臂堆积螺旋的相互作用相似。 (C)2001学术出版社。 [参考:65]

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