Piazzon Nathalie, Rage Florence, Schlotter Florence, Moine Hervé, Branlant Christiane, Massenet Séverine
Laboratoire de Maturation des ARN et Enzymologie Moléculaire, UMR 7567 CNRS-UHP Nancy I, Faculté des Sciences, BP 239, 54506 Vandoeuvre-les-Nancy Cedex.
J Biol Chem. 2008 Feb 29;283(9):5598-610. doi: 10.1074/jbc.M707304200. Epub 2007 Dec 19.
Spinal muscular atrophy (SMA) is caused by reduced levels of the survival of motor neuron (SMN) protein. Although the SMN complex is essential for assembly of spliceosomal U small nuclear RNPs, it is still not understood why reduced levels of the SMN protein specifically cause motor neuron degeneration. SMN was recently proposed to have specific functions in mRNA transport and translation regulation in neuronal processes. The defective protein in Fragile X mental retardation syndrome (FMRP) also plays a role in transport of mRNPs and in their translation. Therefore, we examined possible relationships of SMN with FMRP. We observed granules containing both transiently expressed red fluorescent protein(RFP)-tagged SMN and green fluorescent protein(GFP)-tagged FMRP in cell bodies and processes of rat primary neurons of hypothalamus in culture. By immunoprecipitation experiments, we detected an association of FMRP with the SMN complex in human neuroblastoma SH-SY5Y cells and in murine motor neuron MN-1 cells. Then, by in vitro experiments, we demonstrated that the SMN protein is essential for this association. We showed that the COOH-terminal region of FMRP, as well as the conserved YG box and the region encoded by exon 7 of SMN, are required for the interaction. Our findings suggest a link between the SMN complex and FMRP in neuronal cells.
脊髓性肌萎缩症(SMA)是由运动神经元存活蛋白(SMN)水平降低引起的。尽管SMN复合物对于剪接体U小核核糖核蛋白的组装至关重要,但目前仍不清楚为什么SMN蛋白水平降低会特异性地导致运动神经元变性。最近有人提出SMN在神经元突起中的mRNA运输和翻译调控中具有特定功能。脆性X智力障碍综合征(FMRP)中的缺陷蛋白在mRNA颗粒的运输及其翻译中也起作用。因此,我们研究了SMN与FMRP之间可能的关系。我们在培养的大鼠下丘脑原代神经元的细胞体和突起中观察到了同时含有瞬时表达的红色荧光蛋白(RFP)标记的SMN和绿色荧光蛋白(GFP)标记的FMRP的颗粒。通过免疫沉淀实验,我们在人神经母细胞瘤SH-SY5Y细胞和小鼠运动神经元MN-1细胞中检测到FMRP与SMN复合物的关联。然后,通过体外实验,我们证明了SMN蛋白对于这种关联至关重要。我们表明,FMRP的COOH末端区域以及保守的YG框和SMN外显子7编码的区域是相互作用所必需的。我们的研究结果表明神经元细胞中SMN复合物与FMRP之间存在联系。