首页> 外文OA文献 >Heterogeneous Nuclear Ribonucleoproteins H and F Regulate the Proteolipid Protein/DM20 Ratio by Recruiting U1 Small Nuclear Ribonucleoprotein through a Complex Array of G Runs*S⃞
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Heterogeneous Nuclear Ribonucleoproteins H and F Regulate the Proteolipid Protein/DM20 Ratio by Recruiting U1 Small Nuclear Ribonucleoprotein through a Complex Array of G Runs*S⃞

机译:异质核核糖核蛋白H和F调节蛋白脂 通过招募U1小核糖核蛋白的蛋白质/ DM20比 G的复数数组 运行*S⃞

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摘要

In this study, we sought to investigate the mechanism by which heterogeneous nuclear ribonucleoprotein (hnRNP) H and F regulate proteolipid protein (PLP)/DM20 alternative splicing. G-rich sequences in exon 3B, G1 and M2, are required for hnRNPH- and F-mediated regulation of the PLP/DM20 ratio and, when placed between competing 5′ splice sites in an α-globin minigene, direct hnRNPH/F-regulated alternative splicing. In contrast, the activity of the intronic splicing enhancer, which is necessary for PLP splicing, is only modestly reduced by removal of hnRNPH/F both in PLP and α-globin gene context. In vivo, hnRNPH reversed reduction of DM20 splicing induced by hnRNPH/F removal, whereas hnRNPF had little effect. Tethering of the MS2-hnRNPH fusion protein downstream of the DM20 5′ splice site increased DM20 splicing, whereas MS2-hnRNPF did not. Binding of U1 small nuclear ribonucleoprotein (U1snRNP) to DM20 is greatly impaired by mutation of G1 and M2 and depletion of hnRNPH and F. Reconstitution of hnRNPH/F-depleted extracts with either hnRNPH or F restored U1snRNP binding. We conclude that hnRNPH and F regulate DM20 splicing by recruiting U1snRNP and that hnRNPH plays a primary role in DM20 splice site selection in vivo. Decreased expression of hnRNPH/F in differentiated oligodendrocytes may regulate the PLP/DM20 ratio by reducing DM20 5′ splice site recognition by U1snRNP.
机译:在这项研究中,我们试图研究异质核糖核蛋白(hnRNP)H和F调节蛋白脂蛋白(PLP)/ DM20选择性剪接的机制。 hnRNPH和F介导的PLP / DM20比值调节需要外显子3B,G1和M2中富含G的序列,当置于α-珠蛋白小基因中竞争的5'剪接位点之间时,直接hnRNPH / F-规范的替代拼接。相反,PLP剪接所必需的内含子剪接增强子的活性只能通过在PLP和α-珠蛋白基因的背景下去除hnRNPH / F而适度降低。在体内,hnRNPH逆转了由hnRNPH / F去除引起的DM20剪接的减少,而hnRNPF的作用很小。 DM20 5'剪接位点下游的MS2-hnRNPH融合蛋白的束缚增加了DM20的剪接,而MS2-hnRNPF没有。 U1小核糖核蛋白(U1snRNP)与DM20的结合由于G1和M2的突变以及hnRNPH和F的消耗而大大受损。用hnRNPH或F重建hnRNPH / F耗尽的提取物可恢复U1snRNP的结合。我们得出结论,hnRNPH和F通过募集U1snRNP来调节DM20剪接,并且hnRNPH在体内DM20剪接位点选择中起主要作用。 hnRNPH / F在分化少突胶质细胞中的表达减少可能通过减少DM20 5'剪接位点被U1sn​​RNP识别来调节PLP / DM20比。

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  • 作者

    Wang, Erming; Cambi, Franca;

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  • 年度 2009
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  • 正文语种 en
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