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首页> 外文期刊>Acta crystallographica. Section D, Structural biology. >Structure and conformational plasticity of the U6 small nuclear ribonucleoprotein core
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Structure and conformational plasticity of the U6 small nuclear ribonucleoprotein core

机译:结构和构象的可塑性U6小型核核糖核蛋白核心

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摘要

U6 small nuclear RNA (snRNA) is a key component of the active site of the spliceosome, a large ribonucleoprotein complex that catalyzes the splicing of precursor messenger RNA. Prior to its incorporation into the spliceosome, U6 is bound by the protein Prp24, which facilitates unwinding of the U6 internal stem‐loop (ISL) so that it can pair with U4 snRNA. A previously reported crystal structure of the `core' of the U6 small nuclear ribonucleoprotein (snRNP) contained an ISL‐stabilized A62G mutant of U6 bound to all four RNA‐recognition motif (RRM) domains of Prp24 [Montemayor et al. (2014), Nature Struct. Mol. Biol. 21 , 544–551]. The structure revealed a novel topology containing interlocked rings of protein and RNA that was not predicted by prior biochemical and genetic data. Here, the crystal structure of the U6 snRNP core with a wild‐type ISL is reported. This complex crystallized in a new space group, apparently owing in part to the presence of an intramolecular cross‐link in RRM1 that was not observed in the previously reported U6‐A62G structure. The structure exhibits the same protein–RNA interface and maintains the unique interlocked topology. However, the orientation of the wild‐type ISL is altered relative to the A62G mutant structure, suggesting inherent structural dynamics that may facilitate its pairing with U4. Consistent with their similar architectures in the crystalline state, the wild‐type and A62G variants of U6 exhibit similar Prp24‐binding affinities and electrophoretic mobilities when analyzed by gel‐shift assay.
机译:U6小核RNA(核内小RNA)是一个关键组成部分剪接体的活性部位,很大催化的核糖核蛋白复合体信使RNA前体的拼接。纳入剪接体,U6绑定的蛋白质Prp24有助于解除U6内部的阀杆循环(ISL),这样就可以一对U4核内小rna。结构的“核心”U6小核核糖核蛋白(snRNP)包含一个ISL量稳定A62G U6绑定到所有的突变四个RNA检测识别主题(RRM) Prp24域[Montemayor et al。(2014),自然结构。医学杂志21,544 - 551]。小说包含联锁的拓扑蛋白质和RNA没有之前的预测生化和基因数据。U6 snRNP核心与野生的结构类型ISL是报道。新空间群,显然是由于部分在RRM1存在一个分子内交叉链接之前报道中并没有观察到U6 A62G结构。同样protein-RNA接口和维护独特的交错拓扑。取向ISL型野生量的改变相对于A62G突变结构,建议可能促进的内在结构动力学与愉快的配对。类似的架构在结晶状态,野生型和A62G U6展览的变体类似Prp24绑定亲和力和电泳分析时的机动性发胶‐快捷assay .

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