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Drosophila glutamate receptor mRNA expression and mRNP particles

机译:果蝇谷氨酸受体mRNA表达和mRNP颗粒

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The processes controlling glutamate receptor expression early in synaptogenesis are poorly understood. Here, we examine glutamate receptor (GluR) subunit mRNA expression and localization in Drosophila embryonic/larval neuromuscular junctions (NMJs). We show that postsynaptic GluR subunit gene expression is triggered by contact from the presynaptic nerve, approximately halfway through embryogenesis. After contact, GluRIIA and GluRIIB mRNA abundance rises quickly approximately 20-fold, then falls within a few hours back to very low levels. Protein abundance, however, gradually increases throughout development. At the same time that mRNA levels decrease following their initial spike, GluRIIA, GluRIIB and GluRIIC subunit mRNA aggregates become visible in the cytoplasm of postsynaptic muscle cells. These mRNA aggregates do not colocalize with eIF4E, but nevertheless presumably represent mRNP particles of unknown function. Multiplex FISH shows that different GluR subunit mRNAs are found in different mRNPs. GluRIIC mRNPs are most common, followed by GluRIIA and then GluRIIB mRNPs. GluR mRNP density is not increased near NMJs, for any subunit; if anything, GluR mRNP density is highest away from NMJs and near nuclei. These results reveal some of the earliest events in postsynaptic development and provide a foundation for future studies of GluR mRNA biology.
机译:在突触发生早期控制谷氨酸受体表达的过程知之甚少。在这里,我们检查了果蝇胚胎/幼虫神经肌肉接头(NMJs)中的谷氨酸受体(GluR)亚基mRNA表达和定位。我们表明,突触后GluR亚基基因表达是由来自突触前神经的接触触发的,大约通过胚胎发生的一半来触发。接触后,GluRIIA和GluRIIB mRNA的丰度迅速上升约20倍,然后在几小时内下降到非常低的水平。然而,蛋白质丰度在整个发育过程中逐渐增加。在mRNA水平在其初始峰值后下降的同时,GluRIIA,GluRIIB和GluRIIC亚基mRNA聚集体在突触后肌细胞的细胞质中可见。这些mRNA聚集体并不与eIF4E共定位,但是据推测可能代表功能未知的mRNP颗粒。多重FISH表明在不同的mRNPs中发现了不同的GluR亚基mRNA。 GluRIIC mRNP最常见,其次是GluRIIA,然后是GluRIIB mRNP。对于任何亚基,NMlu附近的GluR mRNP密度均未增加;如果有的话,GluR mRNP密度远离NMJ且靠近细胞核最高。这些结果揭示了突触后发育中的一些最早事件,并为将来的GluR mRNA生物学研究奠定了基础。

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