Department of Plant Biology, College of Biological Sciences, University of California, Davis, CA 95616, USA.
Department of Genetics, Evolution and Environment, University College London, London WC1E 6BT, UK.
Plant Physiol. 2023 Jul 3;192(3):2492-2506. doi: 10.1093/plphys/kiad193.
The circadian oscillator allows organisms to synchronize their cellular and physiological activities with diurnal environmental changes. In plants, the circadian clock is primarily composed of multiple transcriptional-translational feedback loops. Regulators of post-transcriptional events, such as precursor messenger RNAs (pre-mRNA) splicing factors, are also involved in controlling the pace of the clock. However, in most cases the underlying mechanisms remain unclear. We have previously identified XAP5 CIRCADIAN TIMEKEEPER (XCT) as an Arabidopsis thaliana circadian clock regulator with uncharacterized molecular functions. Here, we report that XCT physically interacts with components of the spliceosome, including members of the Nineteen Complex (NTC). PacBio Iso-Seq data show that xct mutants have transcriptome-wide pre-mRNA splicing defects, predominantly aberrant 3' splice site selection. Expression of a genomic copy of XCT fully rescues those splicing defects, demonstrating that functional XCT is important for splicing. Dawn-expressed genes are significantly enriched among those aberrantly spliced in xct mutants, suggesting that the splicing activity of XCT may be circadian regulated. Furthermore, we show that loss-of-function mutations in PRP19A or PRP19B, 2 homologous core NTC components, suppress the short circadian period phenotype of xct-2. However, we do not see rescue of the splicing defects of core clock genes in prp19 xct mutants. Therefore, our results suggest that XCT may regulate splicing and the clock function through genetically separable pathways.
生物钟振荡器使生物体能够将细胞和生理活动与昼夜环境变化同步。在植物中,生物钟主要由多个转录-翻译反馈环组成。转录后事件的调节剂,如前体信使 RNA(pre-mRNA)剪接因子,也参与控制生物钟的节奏。然而,在大多数情况下,潜在的机制仍不清楚。我们之前已经确定 XAP5 生物钟时间守护者(XCT)是拟南芥生物钟的调节剂,具有未被描述的分子功能。在这里,我们报告说 XCT 与剪接体的组件相互作用,包括十九复合物(NTC)的成员。PacBio Iso-Seq 数据显示,xct 突变体具有全转录组 pre-mRNA 剪接缺陷,主要是异常的 3'剪接位点选择。XCT 基因组拷贝的表达完全挽救了这些剪接缺陷,表明功能性 XCT 对于剪接很重要。黎明表达的基因在 xct 突变体中异常剪接的基因中显著富集,表明 XCT 的剪接活性可能受到生物钟的调节。此外,我们表明 PRP19A 或 PRP19B(2 个同源核心 NTC 成分)的功能丧失突变可抑制 xct-2 的短生物钟周期表型。然而,我们没有看到 prp19 xct 突变体中核心时钟基因剪接缺陷的挽救。因此,我们的结果表明 XCT 可能通过遗传上可分离的途径调节剪接和时钟功能。