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A map of the binding site for catalytic domain 5 in the core of a group II intron ribozyme.

机译:II组内含子核酶核心中催化结构域5的结合位点图。

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摘要

Group II introns are ribozymes with a complex tertiary architecture that is of great interest as a model for RNA folding. Domain 5 (D5) is a highly conserved region of the intron that is considered one of the most critical structures in the catalytic core. Despite its central importance, the means by which D5 interacts with other core elements is unclear. To obtain a map of potential interaction sites, dimethyl sulfate was used to footprint regions of the intron that are involved in D5 binding. These studies were complemented by measurements of D5 binding to a series of truncated intron derivatives. In this way, the minimal region of the intron required for strong D5 association was defined and the sites most likely to represent thermodynamically significant positions of tertiary contact were identified. These studies show that ground-state D5 binding is mediated by tertiary contacts to specific regions of D1, including a tetraloop receptor and an adjacent three-way junction. In contrast, D2 and D3 are not found to stabilize D5 association. These data highlight the significance of D1-D5 interactions and will facilitate the identification of specific tertiary contacts between them.
机译:II组内含子是具有复杂三级结构的核酶,作为RNA折叠的模型倍受关注。域5(D5)是内含子的高度保守区域,被认为是催化核心中最关键的结构之一。尽管具有中心重要性,但D5与其他核心元素交互的方式仍不清楚。为了获得潜在相互作用位点的图,将硫酸二甲酯用于内含子的D5结合区域。通过测量D5与一系列截短的内含子衍生物的结合来补充这些研究。通过这种方式,确定了强D5缔合所需的内含子最小区域,并确定了最有可能代表三级接触热力学重要位置的位点。这些研究表明,基态D5的结合是通过与D1的特定区域(包括四环受体和相邻的三向连接点)的三级接触来介导的。相反,未发现D2和D3稳定D5关联。这些数据突出了D1-D5相互作用的重要性,并将有助于识别它们之间特定的三级接触。

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