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果蝇 pumilio 突触靶点的鉴定。

Identification of synaptic targets of Drosophila pumilio.

作者信息

Chen Gengxin, Li Wanhe, Zhang Qing-Shuo, Regulski Michael, Sinha Nishi, Barditch Jody, Tully Tim, Krainer Adrian R, Zhang Michael Q, Dubnau Josh

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, USA.

出版信息

PLoS Comput Biol. 2008 Feb 29;4(2):e1000026. doi: 10.1371/journal.pcbi.1000026.

Abstract

Drosophila Pumilio (Pum) protein is a translational regulator involved in embryonic patterning and germline development. Recent findings demonstrate that Pum also plays an important role in the nervous system, both at the neuromuscular junction (NMJ) and in long-term memory formation. In neurons, Pum appears to play a role in homeostatic control of excitability via down regulation of para, a voltage gated sodium channel, and may more generally modulate local protein synthesis in neurons via translational repression of eIF-4E. Aside from these, the biologically relevant targets of Pum in the nervous system remain largely unknown. We hypothesized that Pum might play a role in regulating the local translation underlying synapse-specific modifications during memory formation. To identify relevant translational targets, we used an informatics approach to predict Pum targets among mRNAs whose products have synaptic localization. We then used both in vitro binding and two in vivo assays to functionally confirm the fidelity of this informatics screening method. We find that Pum strongly and specifically binds to RNA sequences in the 3'UTR of four of the predicted target genes, demonstrating the validity of our method. We then demonstrate that one of these predicted target sequences, in the 3'UTR of discs large (dlg1), the Drosophila PSD95 ortholog, can functionally substitute for a canonical NRE (Nanos response element) in vivo in a heterologous functional assay. Finally, we show that the endogenous dlg1 mRNA can be regulated by Pumilio in a neuronal context, the adult mushroom bodies (MB), which is an anatomical site of memory storage.

摘要

果蝇Pumilio(Pum)蛋白是一种参与胚胎模式形成和生殖系发育的翻译调节因子。最近的研究结果表明,Pum在神经系统中也起着重要作用,无论是在神经肌肉接头(NMJ)还是在长期记忆形成方面。在神经元中,Pum似乎通过下调电压门控钠通道para在兴奋性的稳态控制中发挥作用,并且可能更普遍地通过对eIF-4E的翻译抑制来调节神经元中的局部蛋白质合成。除此之外,Pum在神经系统中的生物学相关靶点在很大程度上仍然未知。我们假设Pum可能在调节记忆形成过程中突触特异性修饰的局部翻译中发挥作用。为了鉴定相关的翻译靶点,我们使用信息学方法在其产物具有突触定位的mRNA中预测Pum靶点。然后我们使用体外结合和两种体内试验来从功能上确认这种信息学筛选方法的准确性。我们发现Pum强烈且特异性地结合到四个预测靶基因3'UTR中的RNA序列上,证明了我们方法的有效性。然后我们证明其中一个预测的靶序列,即在果蝇PSD95同源物盘大(dlg1)的3'UTR中,在体内异源功能试验中可以在功能上替代经典的NRE(Nanos反应元件)。最后,我们表明内源性dlg1 mRNA可以在神经元环境即成年蘑菇体(MB)中受到Pumilio的调节,成年蘑菇体是记忆存储的解剖部位。

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