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Arginines of the RGG box regulate FMRP association with polyribosomes and mRNA

机译:RGG盒的精氨酸调节FMRP与多核糖体和mRNA的结合

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摘要

Fragile X syndrome is caused by the loss of expression of the fragile X mental retardation protein, FMRP. FMRP is an RNA-binding protein that is highly expressed in neurons and undergoes multiple post-translational modifications including methylation on arginine. FMRP is methylated on the high-affinity RNA-binding motif, the RGG box, at positions 533, 538, 543 and 545 of murine FMRP. To identify the arginines important for FMRP function, we examined their role in polyribosome and mRNA association. We found that arginines 533 and 538 were required for normal FMRP polyribosome association whereas all four arginines played a role in RNA binding, depending on the identity of the RNA. The model G-quadruplex RNA sc1 required arginines 533 and 538 for normal association with FMRP, whereas AATYK mRNA did not. In vitro methylation of FMRP-bearing arginine substitutions inhibited sc1 binding but not AATYK binding. In addition, we found that PRMT1 co-immunoprecipitated with FMRP isolated from cells and that siRNAs directed against PRMT1 led to reduced FMRP methylation. Thus, two lines of experimentation demonstrate that PRMT1 acts on FMRP in cells. In summary, we provide evidence for the important role of the RGG box in polyribosome association. We also demonstrate for the first time that the different arginines of the RGG box are important for the binding of different RNAs. Finally, we show that PRMT1 methylates FMRP in cells, suggesting a model where methylation of the RGG box modulates either the quantity or the identity of the RNAs bound by FMRP.
机译:脆性X综合征是由脆性X智力低下蛋白FMRP的表达缺失引起的。 FMRP是一种RNA结合蛋白,在神经元中高度表达,并经过多种翻译后修饰,包括精氨酸上的甲基化。 FMRP在鼠FMRP的533、538、543和545位的高亲和力RNA结合基序RGG盒上甲基化。为了确定对FMRP功能重要的精氨酸,我们检查了它们在多核糖体和mRNA结合中的作用。我们发现,正常的FMRP多核糖体缔合需要精氨酸533和538,而所有四个精氨酸都在RNA结合中发挥作用,具体取决于RNA的身份。 G型四链体RNA sc1需要精氨酸533和538与FMRP正常结合,而ATYK mRNA则不需要。带有FMRP的精氨酸取代的体外甲基化抑制了sc1结合,但不抑制AATYK结合。此外,我们发现PRMT1与从细胞中分离出的FMRP共免疫沉淀,而针对PRMT1的siRNA导致FMRP甲基化降低。因此,两行实验证明PRMT1作用于细胞中的FMRP。总之,我们为RGG盒在多核糖体缔合中的重要作用提供了证据。我们还首次证明,RGG盒的不同精氨酸对于不同RNA的结合很重要。最后,我们显示PRMT1使细胞中的FMRP甲基化,这表明RGG盒的甲基化可调节FMRP结合的RNA的数量或身份。

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  • 来源
    《Human Molecular Genetics》 |2010年第7期|p.1314-1323|共10页
  • 作者

    Ernest Blackwell; Xing Zhang;

  • 作者单位

    Department of Cell and Developmental Biology, Neuroscience Program and College of Medicine, University of Illinois, 601 S. Goodwin Avenue, Urbana-Champaign, IL 61801, USA and;

    Department of Biochemistry, Emory University School of Medicine, 1510 Clifton Road, Atlanta, GA 30322, USA;

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