Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
RNA. 2023 Nov;29(11):1792-1802. doi: 10.1261/rna.079607.123. Epub 2023 Aug 25.
Precursor mRNA (pre-mRNA) splicing is an essential process for gene expression in eukaryotes catalyzed by the spliceosome in two transesterification steps. The spliceosome is a large, highly dynamic complex composed of five small nuclear RNAs and dozens of proteins, some of which are needed throughout the splicing reaction while others only act during specific stages. The human protein FAM192A was recently proposed to be a splicing factor that functions during the second transesterification step, exon ligation, based on analysis of cryo-electron microscopy (cryo-EM) density. It was also proposed that Fyv6 might be the functional and structural homolog of FAM192A; however, no biochemical or genetic data has been reported to support this hypothesis. Herein, we show that Fyv6 is a splicing factor and acts during exon ligation. Deletion of results in genetic interactions with the essential splicing factors Prp8, Prp16, and Prp22 and decreases splicing in vivo of reporter genes harboring intron substitutions that limit the rate of exon ligation. When splicing is assayed in vitro, whole-cell extracts lacking Fyv6 accumulate first-step products and exhibit a defect in exon ligation. Moreover, loss of Fyv6 causes a change in 3' splice site (SS) selection in both a reporter gene and the endogenous transcript in vivo. Together, these data suggest that Fyv6 is a component of the yeast spliceosome that influences 3' SS usage and the potential homolog of human FAM192A.
前体信使 RNA(pre-mRNA)剪接是真核生物基因表达的一个基本过程,由剪接体在两个转酯反应步骤中催化。剪接体是一个由五个小核 RNA 和几十种蛋白质组成的大型、高度动态的复合物,其中一些在整个剪接反应中都需要,而另一些则只在特定阶段起作用。最近,基于冷冻电镜(cryo-EM)密度分析,人类蛋白 FAM192A 被提议为一种剪接因子,在第二个转酯反应步骤,即外显子连接中发挥作用。还提出 Fyv6 可能是 FAM192A 的功能和结构同源物;然而,没有生化或遗传数据支持这一假说。本文中,我们证明了 Fyv6 是一种剪接因子,在剪接过程中起作用。缺失导致与必需剪接因子 Prp8、Prp16 和 Prp22 发生遗传相互作用,并降低了含有限制外显子连接速率的内含子替代的报告基因的体内剪接。当在体外进行剪接分析时,缺乏 Fyv6 的全细胞提取物会积累第一步产物,并在外显子连接中表现出缺陷。此外,Fyv6 的缺失会导致体内报告基因和内源性 转录物中 3' 剪接位点(SS)选择的改变。这些数据表明,Fyv6 是酵母剪接体的一个组成部分,影响 3' SS 的使用,并且是人类 FAM192A 的潜在同源物。