Department of Molecular Biosciences; The Wenner-Gren Institute; Stockholm University; Stockholm, Sweden.
RNA Biol. 2014;11(2):134-45. doi: 10.4161/rna.27866. Epub 2014 Feb 6.
The mod(mdg4) locus of Drosophila melanogaster contains several transcription units encoded on both DNA strands. The mod(mdg4) pre-mRNAs are alternatively spliced, and a very significant fraction of the mature mod(mdg4) mRNAs are formed by trans-splicing. We have studied the transcripts derived from one of the anti-sense regions within the mod(mdg4) locus in order to shed light on the expression of this complex locus. We have characterized the expression of anti-sense mod(mdg4) transcripts in S2 cells, mapped their transcription start sites and cleavage sites, identified and quantified alternatively spliced transcripts, and obtained insight into the regulation of the mod(mdg4) trans-splicing. In a previous study, we had shown that the alternative splicing of some mod(mdg4) transcripts was regulated by Brahma (BRM), the ATPase subunit of the SWI/SNF chromatin-remodeling complex. Here we show, using RNA interference and overexpression of recombinant BRM proteins, that the levels of BRM affect specifically the abundance of a trans-spliced mod(mdg4) mRNA isoform in both S2 cells and larvae. This specific effect on trans-splicing is accompanied by a local increase in the density of RNA polymerase II and by a change in the phosphorylation state of the C-terminal domain of the large subunit of RNA polymerase II. Interestingly, the regulation of the mod(mdg4) splicing by BRM is independent of the ATPase activity of BRM, which suggests that the mechanism by which BRM modulates trans-splicing is independent of its chromatin-remodeling activity.
果蝇 mod(mdg4) 基因座的 mod(mdg4) 基因包含两条 DNA 链上编码的几个转录单位。mod(mdg4) 前体 mRNA 是可变剪接的,成熟的 mod(mdg4) mRNA 的很大一部分是通过反式剪接形成的。我们研究了 mod(mdg4) 基因座内一个反义区域的转录本,以阐明这个复杂基因座的表达情况。我们已经描述了 S2 细胞中反义 mod(mdg4) 转录本的表达情况,确定了它们的转录起始位点和切割位点,鉴定并定量了可变剪接转录本,并深入了解了 mod(mdg4) 反式剪接的调控。在之前的一项研究中,我们已经表明,一些 mod(mdg4) 转录本的可变剪接受到 Brm(SWI/SNF 染色质重塑复合物的 ATP 酶亚基)的调控。在这里,我们使用 RNA 干扰和重组 Brm 蛋白的过表达表明,BRM 的水平会特异性地影响 S2 细胞和幼虫中反式剪接 mod(mdg4) mRNA 同工型的丰度。这种对反式剪接的特异性影响伴随着 RNA 聚合酶 II 密度的局部增加和 RNA 聚合酶 II 大亚基 C 末端结构域磷酸化状态的改变。有趣的是,BRM 对 mod(mdg4) 剪接的调节不依赖于 BRM 的 ATP 酶活性,这表明 BRM 调节反式剪接的机制独立于其染色质重塑活性。