From the Department of Quantitative Biology and Medicine and.
J Biol Chem. 2013 Nov 15;288(46):33292-302. doi: 10.1074/jbc.M113.500397. Epub 2013 Oct 7.
Wilms' tumor 1-associating protein (WTAP) is a putative splicing regulator that is thought to be required for cell cycle progression through the stabilization of cyclin A2 mRNA and mammalian early embryo development. To further understand how WTAP acts in the context of the cellular machinery, we identified its interacting proteins in human umbilical vein endothelial cells and HeLa cells using shotgun proteomics. Here we show that WTAP forms a novel protein complex including Hakai, Virilizer homolog, KIAA0853, RBM15, the arginine/serine-rich domain-containing proteins BCLAF1 and THRAP3, and certain general splicing regulators, most of which have reported roles in post-transcriptional regulation. The depletion of these respective components of the complex resulted in reduced cell proliferation along with G2/M accumulation. Double knockdown of the serine/arginine-rich (SR)-like proteins BCLAF1 and THRAP3 by siRNA resulted in a decrease in the nuclear speckle localization of WTAP, whereas the nuclear speckles were intact. Furthermore, we found that the WTAP complex regulates alternative splicing of the WTAP pre-mRNA by promoting the production of a truncated isoform, leading to a change in WTAP protein expression. Collectively, these findings show that the WTAP complex is a novel component of the RNA processing machinery, implying an important role in both posttranscriptional control and cell cycle regulation.
Wilms 瘤 1 相关蛋白 (WTAP) 是一种假定的剪接调控因子,被认为是通过稳定细胞周期蛋白 A2 mRNA 和哺乳动物早期胚胎发育而促进细胞周期进程所必需的。为了进一步了解 WTAP 在细胞机制中的作用方式,我们使用鸟枪法蛋白质组学鉴定了人脐静脉内皮细胞和 HeLa 细胞中 WTAP 的相互作用蛋白。在这里,我们显示 WTAP 形成一种新型蛋白质复合物,包括 Hakai、Virilizer 同源物、KIAA0853、RBM15、富含精氨酸/丝氨酸的结构域蛋白 BCLAF1 和 THRAP3,以及某些一般的剪接调控因子,其中大多数具有报道的转录后调控作用。该复合物的这些各自组分的耗竭导致细胞增殖减少,同时 G2/M 积累。用 siRNA 双重敲低丝氨酸/精氨酸富含 (SR) 样蛋白 BCLAF1 和 THRAP3 导致 WTAP 的核斑点定位减少,而核斑点保持完整。此外,我们发现 WTAP 复合物通过促进截断型异构体的产生来调节 WTAP 前体 mRNA 的可变剪接,导致 WTAP 蛋白表达的变化。总之,这些发现表明 WTAP 复合物是 RNA 加工机制的一个新组件,暗示其在转录后控制和细胞周期调控中具有重要作用。