首页> 美国卫生研究院文献>RNA >The coiled-coil domain of the Nop56/58 core protein is dispensable for sRNP assembly but is critical for archaeal box C/D sRNP-guided nucleotide methylation
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The coiled-coil domain of the Nop56/58 core protein is dispensable for sRNP assembly but is critical for archaeal box C/D sRNP-guided nucleotide methylation

机译:Nop56 / 58核心蛋白的卷曲螺旋结构域对于sRNP组装是必需的但对于古细菌盒C / D sRNP引导的核苷酸甲基化至关重要

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摘要

Archaeal box C/D sRNAs guide the methylation of specific nucleotides in archaeal ribosomal and tRNAs. Three Methanocaldococcus jannaschii sRNP core proteins (ribosomal protein L7, Nop56/58, and fibrillarin) bind the box C/D sRNAs to assemble the sRNP complex, and these core proteins are essential for nucleotide methylation. A distinguishing feature of the Nop56/58 core protein is the coiled-coil domain, established by α-helices 4 and 5, that facilitates Nop56/58 self-dimerization in vitro. The function of this coiled-coil domain has been assessed for box C/D sRNP assembly, sRNP structure, and sRNP-guided nucleotide methylation by mutating or deleting this protein domain. Protein pull-down experiments demonstrated that Nop56/58 self-dimerization and Nop56/58 dimerization with the core protein fibrillarin are mutually exclusive protein:protein interactions. Disruption of Nop56/58 homodimerization by alteration of specific amino acids or deletion of the entire coiled-coil domain had no obvious effect upon core protein binding and sRNP assembly. Site-directed mutation of the Nop56/58 homodimerization domain also had no apparent effect upon either box C/D RNP- or C′/D′ RNP-guided nucleotide modification. However, deletion of this domain disrupted guided methylation from both RNP complexes. Nuclease probing of the sRNP assembled with Nop56/58 proteins mutated in the coiled-coil domain indicated that while functional complexes were assembled, box C/D and C′/D′ RNPs were altered in structure. Collectively, these experiments revealed that the self-dimerization of the Nop56/58 coiled-coil domain is not required for assembly of a functional sRNP, but the coiled-coil domain is important for the establishment of wild-type box C/D and C′/D′ RNP structure essential for nucleotide methylation.
机译:古细菌盒C / D sRNA指导古细菌核糖体和tRNA中特定核苷酸的甲基化。三种詹氏甲烷球菌的sRNP核心蛋白(核糖体蛋白L7,Nop56 / 58和原纤维蛋白)结合框C / D sRNA组装sRNP复合物,这些核心蛋白对于核苷酸甲基化至关重要。 Nop56 / 58核心蛋白的一个显着特征是由α-螺旋4和5建立的卷曲螺旋结构域,可促进Nop56 / 58在体外的自我二聚化。已通过突变或缺失该蛋白质结构域来评估框C / D sRNP组装,sRNP结构和sRNP引导的核苷酸甲基化的卷曲螺旋结构域的功能。蛋白质下拉实验表明,Nop56 / 58自二聚化和Nop56 / 58与核心蛋白原纤维蛋白的二聚化是互斥的蛋白质:蛋白质相互作用。通过改变特定氨基酸或缺失整个卷曲螺旋结构域来破坏Nop56 / 58同型二聚体,对核心蛋白结合和sRNP组装没有明显影响。 Nop56 / 58均二聚结构域的定点突变对盒C / D RNP-或C'/ D'RNP指导的核苷酸修饰也没有明显影响。然而,该结构域的缺失破坏了两种RNP复合物的指导甲基化。对在螺旋螺旋结构域中突变的Nop56 / 58蛋白组装的sRNP的核酸酶探测表明,虽然组装了功能复合物,但框C / D和C'/ D'RNP的结构却发生了改变。总体而言,这些实验表明,功能性sRNP的组装不需要Nop56 / 58卷曲螺旋结构域的自二聚化,但是卷曲螺旋结构域对于建立野生型盒C / D和C核苷酸甲基化必不可少的'/ D'RNP结构。

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