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少突胶质细胞中的PLP/DM20比例受hnRNPH和F以及一种新型富含G的增强子调控。

PLP/DM20 ratio is regulated by hnRNPH and F and a novel G-rich enhancer in oligodendrocytes.

作者信息

Wang Erming, Dimova Neviana, Cambi Franca

机构信息

Department of Neurology, University of Kentucky, Lexington, KY, USA.

出版信息

Nucleic Acids Res. 2007;35(12):4164-78. doi: 10.1093/nar/gkm387. Epub 2007 Jun 12.

Abstract

Alternative splicing of competing 5' splice sites is regulated by enhancers and silencers in the spliced exon. We have characterized sequences and splicing factors that regulate alternative splicing of PLP and DM20, myelin proteins produced by oligodendrocytes (OLs) by selection of 5' splice sites in exon 3. We identify a G-rich enhancer (M2) of DM20 5' splice site in exon 3B and show that individual G triplets forming M2 are functionally distinct and the distal group plays a dominant role. G-rich M2 and a G-rich splicing enhancer (ISE) in intron 3 share similarities in function and protein binding. The G-rich sequences are necessary for binding of hnRNPs to both enhancers. Reduction in hnRNPH and F expression in differentiated OLs correlates temporally with increased PLP/DM20 ratio. Knock down of hnRNPH increased PLP/DM20 ratio, while hnRNPF did not. Silencing hnRNPH and F increased the PLP/DM20 ratio more than hnRNPH alone, demonstrating a novel synergistic effect. Mutation of M2, but not ISE reduced the synergistic effect. Replacement of M2 and all G runs in exon 3B abolished it almost completely. We conclude that developmental changes in hnRNPH/F associated with OLs differentiation synergistically regulate PLP alternative splicing and a G-rich enhancer participates in the regulation.

摘要

竞争性5'剪接位点的可变剪接受剪接外显子中的增强子和沉默子调控。我们通过选择外显子3中的5'剪接位点,对少突胶质细胞(OLs)产生的髓磷脂蛋白PLP和DM20的可变剪接调控序列及剪接因子进行了表征。我们在3B外显子中鉴定出DM20 5'剪接位点的富含G的增强子(M2),并表明构成M2的单个G三联体在功能上是不同的,且远端组起主导作用。3B外显子中富含G的M2和内含子3中的富含G的剪接增强子(ISE)在功能和蛋白质结合方面具有相似性。富含G的序列对于hnRNPs与这两个增强子的结合是必需的。分化的OLs中hnRNPH和F表达的降低与PLP/DM20比值的增加在时间上相关。敲低hnRNPH会增加PLP/DM20比值,而hnRNPF则不会。沉默hnRNPH和F比单独沉默hnRNPH更能增加PLP/DM20比值,表明存在一种新的协同效应。M2的突变而非ISE的突变降低了协同效应。替换3B外显子中的M2和所有G序列几乎完全消除了协同效应。我们得出结论,与OLs分化相关的hnRNPH/F的发育变化协同调节PLP的可变剪接,且一个富含G的增强子参与了该调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f174/1919487/bc5d87ed77ea/gkm387f1.jpg

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