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Specific sequences within arginine–glycine-rich domains affect mRNA-binding protein function

机译:富含精氨酸-甘氨酸的结构域内的特定序列影响mRNA结合蛋白的功能

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摘要

The discovery of roles for arginine methylation in intracellular transport and mRNA splicing has focused attention on the methylated arginine–glycine (RG)-rich domains found in many eukaryotic RNA-binding proteins. Sequence similarity among these highly repetitive RG domains, combined with interactions between RG-rich proteins, raises the question of whether these regions are general interaction motifs or whether there is specificity within these domains. Using the essential Saccharomyces cerevisiae mRNA-binding protein Npl3 (ScNpl3) as a model system, we first tested the importance of the RG domain for protein function. While Npl3 lacking the RG domain could not support growth of cells lacking Npl3, surprisingly, expression of the RG domain alone supported partial growth of these cells. To address the specificity of this domain, we created chimeric forms of ScNpl3 with RG-rich domains of S. cerevisiae nucleolar proteins, Gar1 and Nop1 (ScGar1, ScNop1), or of the Candida albicans Npl3 ortholog (CaNpl3). Whereas the CaNpl3 RG chimeric protein retained nearly wild-type function in S. cerevisiae, the ScGar1 and ScNop1 RG domains significantly reduced Npl3 function and self-association, indicating RG domain specificity. Nuclear localization of Npl3 also requires specific RG sequences, yet heterologous RG domains allow similar modulation of Npl3 transport by arginine methylation.
机译:精氨酸甲基化在细胞内转运和mRNA剪接中的作用的发现将注意力集中在许多真核RNA结合蛋白中发现的富含甲基化精氨酸-甘氨酸(RG)的域上。这些高度重复的RG域之间的序列相似性,与富含RG的蛋白质之间的相互作用结合在一起,提出了以下问题:这些区域是否是一般的相互作用基序,或者在这些域内是否存在特异性。使用必需的酿酒酵母mRNA结合蛋白Npl3(ScNpl3)作为模型系统,我们首先测试了RG结构域对蛋白质功能的重要性。虽然缺少RG结构域的Npl3不能支持缺少Npl3的细胞的生长,但是令人惊讶的是,仅RG结构域的表达支持了这些细胞的部分生长。为了解决此域的特异性,我们创建了具有啤酒酵母核仁蛋白,Gar1和Nop1(ScGar1,ScNop1)或白色念珠菌Npl3直系同源物(CaNpl3)富含RG的结构域的ScNpl3的嵌合形式。 CaNpl3 RG嵌合蛋白在酿酒酵母中几乎保留了野生型功能,而ScGar1和ScNop1 RG结构域则显着降低了Npl3功能和自缔合,表明RG域具有特异性。 Npl3的核定位也需要特定的RG序列,但异源RG域允许通过精氨酸甲基化对Npl3转运进行类似的调节。

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