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磷酸化影响与脆性X智力低下蛋白(FMRP)相关的多核糖体的翻译状态。

Phosphorylation influences the translation state of FMRP-associated polyribosomes.

作者信息

Ceman Stephanie, O'Donnell William T, Reed Matt, Patton Stephana, Pohl Jan, Warren Stephen T

机构信息

Department of Human Genetics,Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Hum Mol Genet. 2003 Dec 15;12(24):3295-305. doi: 10.1093/hmg/ddg350. Epub 2003 Oct 21.

DOI:10.1093/hmg/ddg350
PMID:14570712
Abstract

Fragile X mental retardation protein, FMRP, is absent in patients with fragile X syndrome, a common form of mental retardation. FMRP is a nucleocytoplasmic RNA binding protein that is primarily associated with polyribosomes. FMRP is believed to be a translational repressor and may regulate the translation of certain mRNAs at the base of dendritic spines in neurons. However, little is known about the regulation of FMRP. Using mass spectrometry and site-directed mutagenesis, we show that FMRP is phosphorylated between residues 483 and 521, N-terminal to the RGG box, both in murine brain and in cultured cells. Primary phosphorylation occurs on the highly conserved serine 499, which triggers hierarchical phosphorylation of nearby serines. FMRP is phosphorylated within 2-4 h of synthesis, however, phosphorylation has no effect on the half-life of the protein. In contrast to the Drosophila ortholog dFxr, the phosphorylation status of mammalian FMRP does not influence its association with specific mRNAs in vivo. However, we find unphosphorylated FMRP associated with actively translating polyribosomes while a fraction of phosphorylated FMRP is associated with apparently stalled polyribosomes. Our data suggest that the phosphorylation may regulate FMRP and that the release of FMRP-induced translational suppression may involve a dephosphorylation signal.

摘要

脆性X智力低下蛋白(FMRP)在脆性X综合征患者中缺失,脆性X综合征是一种常见的智力低下形式。FMRP是一种核质RNA结合蛋白,主要与多核糖体相关。FMRP被认为是一种翻译抑制因子,可能在神经元树突棘基部调节某些mRNA的翻译。然而,关于FMRP的调节知之甚少。利用质谱和定点诱变,我们发现在小鼠脑和培养细胞中,FMRP在RGG框N端的483至521位残基之间被磷酸化。主要磷酸化发生在高度保守的丝氨酸499上,这会触发附近丝氨酸的分级磷酸化。FMRP在合成后2-4小时内被磷酸化,然而,磷酸化对该蛋白的半衰期没有影响。与果蝇同源物dFxr不同,哺乳动物FMRP的磷酸化状态在体内不影响其与特定mRNA的结合。然而,我们发现未磷酸化的FMRP与正在进行翻译的多核糖体相关,而一部分磷酸化的FMRP与明显停滞的多核糖体相关。我们的数据表明,磷酸化可能调节FMRP,并且FMRP诱导的翻译抑制的解除可能涉及去磷酸化信号。

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