McCracken Susan, Longman Dasa, Johnstone Iain L, Cáceres Javier F, Blencowe Benjamin J
Banting and Best Department of Medical Research, C. H. Best Institute, University of Toronto, Toronto, Ontario M5G 1L6, Canada.
J Biol Chem. 2003 Nov 7;278(45):44153-60. doi: 10.1074/jbc.M306856200. Epub 2003 Aug 27.
SRm160 (the SR-related nuclear matrix protein of 160 kDa) functions as a splicing coactivator and 3'-end cleavage-stimulatory factor. It is also a component of the splicing-dependent exon-junction complex (EJC), which has been implicated in coupling of pre-mRNA splicing with mRNA turnover and mRNA export. We have investigated whether the association of SRm160 with the EJC is important for efficient 3'-end cleavage. The EJC components RNPS1, REF, UAP56, and Y14 interact with SRm160. However, when these factors were tethered to transcripts, only SRm160 and RNPS1 stimulated 3'-end cleavage. Whereas SRm160 stimulated cleavage to a similar extent in the presence or absence of an active intron, stimulation of 3'-end cleavage by tethered RNPS1 is dependent on an active intron. Assembly of an EJC adjacent to the cleavage and polyadenylation signal in vitro did not significantly affect cleavage efficiency. These results suggest that SRm160 stimulates cleavage independently of its association with EJC components and that the cleavage-stimulatory activity of RNPS1 may be an indirect consequence of its ability to stimulate splicing. Using RNA interference (RNAi) in Caenorhabditis elegans, we determined whether interactions between SRm160 and the cleavage machinery are important in a whole organism context. Simultaneous RNAi of SRm160 and the cleavage factor CstF-50 (Cleavage stimulation factor 50-kDa subunit) resulted in late embryonic developmental arrest. In contrast, RNAi of CstF-50 in combination with RNPS1 or REFs did not result in an apparent phenotype. Our combined results provide evidence for an evolutionarily conserved interaction between SRm160 and the 3'-end cleavage machinery that functions independently of EJC formation.
SRm160(160千道尔顿的与SR相关的核基质蛋白)作为剪接共激活因子和3'端切割刺激因子发挥作用。它也是剪接依赖性外显子连接复合体(EJC)的一个组成部分,该复合体与前体mRNA剪接与mRNA周转及mRNA输出的偶联有关。我们研究了SRm160与EJC的结合对于高效3'端切割是否重要。EJC组分RNPS1、REF、UAP56和Y14与SRm160相互作用。然而,当这些因子与转录本相连时,只有SRm160和RNPS1刺激3'端切割。虽然在有或没有活性内含子的情况下,SRm160刺激切割的程度相似,但连接的RNPS1对3'端切割的刺激依赖于活性内含子。在体外靠近切割和聚腺苷酸化信号处组装EJC对切割效率没有显著影响。这些结果表明,SRm160独立于其与EJC组分的结合来刺激切割,并且RNPS1的切割刺激活性可能是其刺激剪接能力的间接结果。利用秀丽隐杆线虫中的RNA干扰(RNAi),我们确定了SRm160与切割机制之间的相互作用在整个生物体环境中是否重要。同时对SRm160和切割因子CstF - 50(50千道尔顿切割刺激因子亚基)进行RNAi导致胚胎后期发育停滞。相比之下,CstF - 50与RNPS1或REFs联合进行RNAi并未导致明显的表型。我们的综合结果为SRm160与3'端切割机制之间进化上保守的相互作用提供了证据,该相互作用独立于EJC形成发挥作用。