Institute of Molecular Biology and Biophysics, ETH Zürich, Zürich, Switzerland.
Nat Struct Mol Biol. 2010 Jul;17(7):853-61. doi: 10.1038/nsmb.1814. Epub 2010 Jun 6.
The heterogeneous nuclear ribonucleoprotein (hnRNP) F is involved in the regulation of mRNA metabolism by specifically recognizing G-tract RNA sequences. We have determined the solution structures of the three quasi-RNA-recognition motifs (qRRMs) of hnRNP F in complex with G-tract RNA. These structures show that qRRMs bind RNA in a very unusual manner, with the G-tract 'encaged', making the qRRM a novel RNA binding domain. We defined a consensus signature sequence for qRRMs and identified other human qRRM-containing proteins that also specifically recognize G-tract RNAs. Our structures explain how qRRMs can sequester G-tracts, maintaining them in a single-stranded conformation. We also show that isolated qRRMs of hnRNP F are sufficient to regulate the alternative splicing of the Bcl-x pre-mRNA, suggesting that hnRNP F would act by remodeling RNA secondary and tertiary structures.
异质核核糖核蛋白(hnRNP)F 参与通过特异性识别 G-tract RNA 序列来调节 mRNA 代谢。我们已经确定了 hnRNP F 的三个准 RNA 识别基序(qRRMs)与 G-tract RNA 复合物的溶液结构。这些结构表明 qRRMs 以非常特殊的方式结合 RNA,G-tract 被“封闭”,使 qRRM 成为一个新的 RNA 结合域。我们定义了 qRRMs 的共识特征序列,并鉴定了其他也特异性识别 G-tract RNA 的人类 qRRM 蛋白。我们的结构解释了 qRRMs 如何隔离 G-tract,使它们保持在单链构象。我们还表明,hnRNP F 的分离 qRRMs 足以调节 Bcl-x 前体 mRNA 的选择性剪接,这表明 hnRNP F 将通过重塑 RNA 二级和三级结构来发挥作用。