Wang Fang, Soprano Kenneth J, Soprano Dianne Robert
Department of Biochemistry, Temple University School of Medicine, Philadelphia, PA.
J Cell Physiol. 2015 Apr;230(4):791-801. doi: 10.1002/jcp.24804.
Acinus-S' is a corepressor for retinoic acid receptor (RAR)-dependent gene transcription and has been suggested to be involved in RNA processing. In this study, the role of Acinus isoforms in regulating pre-mRNA splicing was explored using in vivo splicing assays. Both Acinus-L and Acinus-S', with the activity of Acinus-L higher than that of Acinus-S', increase the splicing of a retinoic acid (RA)-responsive minigene containing a weak 5' splice site but not a RA-responsive minigene containing a strong 5' splice site. RA treatment further enhances the splicing of the weak 5' splice site by Acinus in a dose- and time-dependent manner, suggesting a RA-dependent activity in addition to a RA-independent activity of Acinus. The RA-independent effect of Acinus occurs to varying degrees using minigene constructs containing several different promoters, while the RA-dependent splicing activity of Acinus is specific for transcripts derived from the minigene driven by a RA response element (RARE)-containing promoter. This suggests that the ligand-dependent splicing activity of Acinus is related to the RA-activated RAR bound to the RARE. The RRM domain is necessary for the RA-dependent splicing activity of Acinus and the RA-independent splicing activity of Acinus is repressed by RNPS1. Importantly, measurement of the splicing of endogenous human RARβ and Bcl-x in vivo demonstrates that Acinus stimulates the use of the weaker alternative 5' splice site of these two genes in a RA-dependent manner for RARβ and a RA-independent manner for Bcl-x. Taken together, these studies demonstrate that Acinus functions in both RAR-dependent splicing and RAR-dependent transcription.
Acinus-S'是视黄酸受体(RAR)依赖性基因转录的共抑制因子,并且已被认为参与RNA加工。在本研究中,使用体内剪接试验探索了Acinus同工型在调节前体mRNA剪接中的作用。Acinus-L和Acinus-S'均能增加含有弱5'剪接位点的视黄酸(RA)反应性小基因的剪接,而Acinus-L的活性高于Acinus-S',但对含有强5'剪接位点的RA反应性小基因则无此作用。RA处理以剂量和时间依赖性方式进一步增强了Acinus对弱5'剪接位点的剪接作用,这表明除了Acinus的RA非依赖性活性外,还存在RA依赖性活性。使用含有几种不同启动子的小基因构建体时,Acinus的RA非依赖性作用程度不同,而Acinus的RA依赖性剪接活性对源自由含视黄酸反应元件(RARE)的启动子驱动的小基因的转录本具有特异性。这表明Acinus的配体依赖性剪接活性与结合到RARE上的RA激活的RAR有关。RRM结构域对于Acinus的RA依赖性剪接活性是必需的,并且Acinus的RA非依赖性剪接活性被RNPS1抑制。重要的是,体内对人内源性RARβ和Bcl-x剪接的测量表明,Acinus以RA依赖性方式刺激这两个基因较弱的可变5'剪接位点的使用,对于RARβ是RA依赖性方式,对于Bcl-x是RA非依赖性方式。综上所述,这些研究表明Acinus在RAR依赖性剪接和RAR依赖性转录中均发挥作用。