Department of Biochemistry and Biophysics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104-6059, USA.
Biochem J. 2013 Jul 15;453(2):271-9. doi: 10.1042/BJ20130432.
Understanding functional distinctions between related splicing regulatory proteins is critical to deciphering tissue-specific control of alternative splicing. The hnRNP (heterogeneous nuclear ribonucleoprotein) L and hnRNP LL (hnRNP L-like) proteins are paralogues that have overlapping, but distinct, expression patterns and functional consequences. These two proteins share high sequence similarity in their RRMs (RNA-recognition motifs), but diverge in regions outside of the RRMs. In the present study, we use an MS2-tethering assay to delineate the minimal domains of hnRNP L and hnRNP LL which are required for repressing exon inclusion. We demonstrate that for both proteins, regions outside the RRMs, the N-terminal region, and a linker sequence between RRMs 2 and 3, are necessary for exon repression, but are only sufficient for repression in the case of hnRNP LL. In addition, both proteins require at least one RRM for maximal repression. Notably, we demonstrate that the region encompassing RRMs 1 and 2 of hnRNP LL imparts a second silencing activity not observed for hnRNP L. This additional functional component of hnRNP LL is consistent with the fact that the full-length hnRNP LL has a greater silencing activity than hnRNP L. Thus the results of the present study provide important insight into the functional and mechanistic variations that can exist between two highly related hnRNP proteins.
理解相关剪接调控蛋白之间的功能区别对于破译组织特异性的可变剪接调控至关重要。hnRNP(异质核核糖核蛋白)L 和 hnRNP LL(hnRNP L 样)蛋白是具有重叠但又不同的表达模式和功能后果的同源物。这两种蛋白质在其 RRMs(RNA 识别基序)中具有高度的序列相似性,但在 RRMs 之外的区域则存在差异。在本研究中,我们使用 MS2 连接测定法来描绘 hnRNP L 和 hnRNP LL 抑制外显子包含所必需的最小结构域。我们证明,对于这两种蛋白质,RRMs 之外的区域、N 端区域以及 RRMs 2 和 3 之间的连接序列对于外显子抑制是必需的,但对于 hnRNP LL 仅足以抑制。此外,两种蛋白质都需要至少一个 RRM 以达到最大抑制效果。值得注意的是,我们证明 hnRNP LL 的 RRMs 1 和 2 所包含的区域赋予了 hnRNP L 所没有观察到的第二种沉默活性。hnRNP LL 的这一额外功能成分与全长 hnRNP LL 具有比 hnRNP L 更强的沉默活性这一事实是一致的。因此,本研究的结果为两种高度相关的 hnRNP 蛋白之间可能存在的功能和机制变化提供了重要的见解。