Department of Molecular Cell and Developmental Biology, Center for Molecular Biology of RNA, University of California, Santa Cruz, California 95064, USA.
UCSC Genomics Institute, University of California, Santa Cruz, Santa Cruz, California 95064, USA.
RNA. 2024 Mar 18;30(4):404-417. doi: 10.1261/rna.079888.123.
RNA helicases drive necessary rearrangements and ensure fidelity during the pre-mRNA splicing cycle. DEAD-box helicase DDX41 has been linked to human disease and has recently been shown to interact with DEAH-box helicase PRP22 in the spliceosomal C* complex, yet its function in splicing remains unknown. Depletion of DDX41 homolog SACY-1 from somatic cells has been previously shown to lead to changes in alternative 3' splice site (3'ss) usage. Here, we show by transcriptomic analysis of published and novel data sets that SACY-1 perturbation causes a previously unreported pattern in alternative 3' splicing in introns with pairs of 3' splice sites ≤18 nt away from each other. We find that both SACY-1 depletion and the allele lead to a striking unidirectional increase in the usage of the proximal (upstream) 3'ss. We previously discovered a similar alternative splicing pattern between germline tissue and somatic tissue, in which there is a unidirectional increase in proximal 3'ss usage in the germline for ∼200 events; many of the somatic SACY-1 alternative 3' splicing events overlap with these developmentally regulated events. We generated targeted mutant alleles of the homolog of PRP22, in the region of MOG-5 that is predicted to interact with SACY-1 based on the human C* structure. These viable alleles, and a mimic of the myelodysplastic syndrome-associated allele DDX41(R525H), all promote the usage of proximal alternative adjacent 3' splice sites. We show that PRP22/MOG-5 and DDX41/SACY-1 have overlapping roles in proofreading the 3'ss.
RNA 解旋酶在 pre-mRNA 剪接循环中驱动必要的重排并确保保真度。DEAD 框解旋酶 DDX41 与人类疾病有关,并最近显示与剪接体 C* 复合物中的 DEAH 框解旋酶 PRP22 相互作用,但它在剪接中的功能仍不清楚。先前已经表明,体细胞中 DDX41 同源物 SACY-1 的耗竭会导致替代 3' 剪接位点 (3'ss) 使用的变化。在这里,我们通过对已发表和新数据集的转录组分析表明,SACY-1 扰动会导致以前未报道的模式,即在距离彼此≤18nt 的对 3' 剪接位点的内含子中发生替代 3' 剪接。我们发现,SACY-1 耗竭和等位基因都导致近端(上游)3'ss 使用的惊人单向增加。我们之前在生殖组织和体细胞组织之间发现了一种类似的选择性剪接模式,其中在生殖组织中近端 3'ss 的使用单向增加了约 200 个事件;许多体细胞 SACY-1 替代 3' 剪接事件与这些发育调节事件重叠。我们在 MOG-5 区域生成了 PRP22 的同源物的靶向突变等位基因,该区域基于人 C* 结构预测与 SACY-1 相互作用。这些有活力的等位基因,以及与骨髓增生异常综合征相关的等位基因 DDX41(R525H) 的模拟物,都促进了近端替代相邻 3' 剪接位点的使用。我们表明 PRP22/MOG-5 和 DDX41/SACY-1 在 3'ss 校对中具有重叠作用。