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Nova-1在发育中的脊髓神经元中对新型甘氨酸受体剪接变体alpha2N的调控作用。

Role of Nova-1 in regulating alpha2N, a novel glycine receptor splice variant, in developing spinal cord neurons.

作者信息

Kumar David V, Nighorn Alan, St John Paul A

机构信息

Department of Cell Biology & Anatomy, The University of Arizona, Tucson, Arizona 85724, USA.

出版信息

J Neurobiol. 2002 Aug;52(2):156-65. doi: 10.1002/neu.10072.

Abstract

Inhibitory glycine receptor (GlyR) subunits undergo developmental regulation, but the molecular mechanisms of GlyR regulation in developing neurons are little understood. Using RT-PCR, we investigated the regulation of GlyR alpha-subunit splice forms during the development of the spinal cord of the rat. Experiments to compare the amounts of mRNA for two known splice variants of the GlyR alpha2 subunit, alpha2A and alpha2B, in the developing rat spinal cord revealed the presence of an additional, novel variant that lacked any exon 3, herein named "alpha2N." Examination of the RNA from spinal cords of different-aged rats showed a dramatic down-regulation of alpha2N during prenatal development: alpha2N mRNA formed a significant portion of the alpha2 subunit pool at E14, but its relative level was reduced by 85% by birth and was undetectable in adults. Two proteins previously implicated in regulating the splicing of GlyR alpha2 pre-mRNA, the neurooncological ventral antigen-1 (Nova-1) and the brain isoform of the polypyrimidine tract binding protein (brPTB), underwent small changes over the same period that did not correlate directly with the changes in the level of alpha2N, calling into question their involvement in the developmental regulation of alpha2N. However, treatment of spinal cord neurons in culture with antisense oligonucleotides designed selectively to knock down one of three Nova-1 variants significantly altered the relative level of GlyR alpha2N, showing that Nova-1 isoforms can regulate GlyR alpha2 pre-mRNA splicing in developing neurons. These results provide evidence for a novel splice variant of the GlyR alpha2 subunit that undergoes dramatic developmental regulation, reveal the expression profiles of Nova-1 and brPTB in the developing spinal cord, and suggest that Nova-1 plays a role in regulating GlyR alpha2N in developing neurons.

摘要

抑制性甘氨酸受体(GlyR)亚基受到发育调控,但发育中神经元中GlyR调控的分子机制尚不清楚。我们利用逆转录聚合酶链反应(RT-PCR)研究了大鼠脊髓发育过程中GlyRα亚基剪接形式的调控。比较发育中大鼠脊髓中GlyRα2亚基的两种已知剪接变体α2A和α2B的mRNA量的实验,发现了另一种新的变体,该变体缺少任何外显子3,在此命名为“α2N”。对不同年龄大鼠脊髓RNA的检测显示,α2N在产前发育期间显著下调:α2N mRNA在胚胎第14天(E14)构成α2亚基池的很大一部分,但到出生时其相对水平降低了85%,在成年大鼠中无法检测到。先前与GlyRα2前体mRNA剪接调控有关的两种蛋白质,即神经肿瘤腹侧抗原-1(Nova-1)和多嘧啶序列结合蛋白的脑异构体(brPTB),在同一时期发生了微小变化,与α2N水平的变化没有直接关联,这使人质疑它们是否参与α2N的发育调控。然而,用选择性设计的反义寡核苷酸处理培养的脊髓神经元以敲低三种Nova-1变体之一,显著改变了GlyRα2N的相对水平,表明Nova-1异构体可以调节发育中神经元中GlyRα2前体mRNA的剪接。这些结果为GlyRα2亚基的一种新的剪接变体提供了证据,该变体受到显著的发育调控,揭示了Nova-1和brPTB在发育中的脊髓中的表达谱,并表明Nova-1在发育中神经元中GlyRα2N的调控中发挥作用。

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