Yu Jiankun, Hai Yan, Liu Guodong, Fang Tielan, Kung Sam K P, Xie Jiuyong
Department of Physiology and Immunology, Faculty of Medicine, University of Manitoba, Winnipeg, MB R3E 0J9, Canada.
J Biol Chem. 2009 Jan 16;284(3):1505-13. doi: 10.1074/jbc.M805113200. Epub 2008 Nov 18.
The regulation of gene expression through alternative pre-mRNA splicing is common in metazoans and is often controlled by intracellular signaling pathways that are important in cell physiology. We have shown that the alternative splicing of a number of genes is controlled by membrane depolarization and Ca2+/calmodulin-dependent protein kinase IV (CaMKIV) through CaMKIV-responsive RNA elements (CaRRE1 and CaRRE2); however, the trans-acting factors remain unknown. Here we show that the heterogeneous nuclear ribonucleoprotein (hnRNP) L is a CaRRE1 binding factor in nuclear extracts. An hnRNP L high affinity CA (cytidine-adenosine) repeat element is sufficient to mediate CaMKIV and hnRNP L repression of splicing in a location (3'-splice site proximity)-dependent way. Depletion of hnRNP L by RNA interference followed by rescue with coexpressed exogenous hnRNP L demonstrates that hnRNP L mediates the CaMKIV-regulated splicing through CA repeats in heterologous contexts. Depletion of hnRNP L also led to increased inclusion of the stress axis-regulated exon and a CA repeat-harboring exon under depolarization or with activated CaMKIV. Moreover, hnRNP L binding to CaRRE1 was increased by CaMKIV and, conversely, was reduced by pretreatments with protein phosphatases. Therefore, hnRNP L is an essential component of CaMKIV-regulated alternative splicing through CA repeats, with its phosphorylation likely playing a critical role.
通过可变前体mRNA剪接对基因表达进行调控在多细胞动物中很常见,且通常由细胞内信号通路控制,这些信号通路在细胞生理学中很重要。我们已经表明,许多基因的可变剪接受膜去极化和Ca2+/钙调蛋白依赖性蛋白激酶IV(CaMKIV)通过CaMKIV反应性RNA元件(CaRRE1和CaRRE2)的控制;然而,反式作用因子仍然未知。在这里,我们表明异质性核核糖核蛋白(hnRNP)L是核提取物中的一种CaRRE1结合因子。一个hnRNP L高亲和力CA(胞嘧啶-腺嘌呤)重复元件足以以位置(3'-剪接位点附近)依赖性方式介导CaMKIV和hnRNP L对剪接的抑制。通过RNA干扰耗尽hnRNP L,然后用共表达的外源hnRNP L进行拯救,表明hnRNP L在异源环境中通过CA重复介导CaMKIV调节的剪接。耗尽hnRNP L还导致在去极化或CaMKIV激活时,应激轴调节外显子和含有CA重复的外显子的包含增加。此外,CaMKIV增加了hnRNP L与CaRRE1的结合,相反,用蛋白磷酸酶预处理则降低了这种结合。因此,hnRNP L是通过CA重复进行CaMKIV调节的可变剪接的重要组成部分,其磷酸化可能起着关键作用。