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首页> 外文期刊>The Journal of biological chemistry >A Conserved Three-nucleotide Core Motif Defines Musashi RNA Binding Specificity
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A Conserved Three-nucleotide Core Motif Defines Musashi RNA Binding Specificity

机译:一个保守的三核苷酸核心基序限定了usashi RNA结合特异性

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摘要

Musashi (MSI) family proteins control cell proliferation and differentiation in many biological systems. They are overexpressed in tumors of several origins, and their expression level correlates with poor prognosis. MSI proteins control gene expression by binding RNA and regulating its translation. They contain two RNA recognition motif (RRM) domains, which recognize a defined sequence element. The relative contribution of each nucleotide to the binding affinity and specificity is unknown. We analyzed the binding specificity of three MSI family RRM domains using a quantitative fluorescence anisotropy assay. We found that the core element driving recognition is the sequence UAG. Nucleotides outside of this motif have a limited contribution to binding free energy. For mouse MSI1, recognition is determined by the first of the two RRM domains. The second RRM adds affinity but does not contribute to binding specificity. In contrast, the recognition element for Drosophila MSI is more extensive than the mouse homolog, suggesting functional divergence. The short nature of the binding determinant suggests that protein-RNA affinity alone is insufficient to drive target selection by MSI family proteins.
机译:Musashi(MSI)家庭蛋白质在许多生物系统中控制细胞增殖和分化。它们在若干起源的肿瘤中过度表达,它们的表达水平与预后差相相关。 MSI蛋白通过结合RNA来控制基因表达并调节其翻译。它们包含两个RNA识别主题(RRM)域,其识别定义的序列元素。每个核苷酸对结合亲和力和特异性的相对贡献是未知的。我们使用定量荧光各向异性测定分析了三种MSI系列RRM结构域的结合特异性。我们发现核心元素驾驶识别是序列uag。该基序之外的核苷酸对结合自由能具有有限的贡献。对于鼠标MSI1,识别由两个RRM域中的第一个确定。第二个RRM增加了亲和力,但没有促进具有约束力的特异性。相反,果蝇MSI的识别元素比小鼠同源物更广泛,表明功能性分歧。结合决定因素的短语表明,单独的蛋白质RNA亲和力不足以通过MSI家族蛋白促进靶选择。

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