Department of Biochemistry and Molecular Biology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA.
Department of Biochemistry and Molecular Biology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA
Mol Cell Biol. 2020 Mar 16;40(7). doi: 10.1128/MCB.00570-19.
Although an F-box protein, Mdm30, is found to regulate ubiquitylation of the Sub2 component of TREX (anscription-port) complex for proteasomal degradation in stimulation of mRNA export, it remains unknown whether such ubiquitin-proteasome system (UPS) regulation of Sub2 occurs cotranscriptionally via its interaction with Mdm30. Further, it is unclear whether impaired UPS regulation of Sub2 in the absence of Mdm30 alters mRNA export via splicing defects of export factors and/or mitochondrial dynamics/function, since Sub2 controls mRNA splicing and Mdm30 regulates mitochondrial aggregation. Here, we show that Mdm30 interacts with Sub2, and temporary shutdown of Mdm30 enhances Sub2's abundance and impairs mRNA export. Likewise, Sub2's abundance is increased following transcriptional inhibition. These results support Mdm30's direct role in regulation of Sub2's cellular abundance in a transcription-dependent manner. Consistently, the chromatin-bound Sub2 level is increased in the absence of Mdm30. Further, we find that Mdm30 does not facilitate splicing of export factors. Moreover, Mdm30 does not have a dramatic effect on mitochondrial respiration/function, and mRNA export occurs in the absence of Fzo1, which is required for mitochondrial dynamics/respiration. Collective results reveal that Mdm30 interacts with Sub2 for proteasomal degradation in a transcription-dependent manner to promote mRNA export independently of splicing or mitochondrial function, thus advancing our understanding of mRNA export.
尽管 F-box 蛋白 Mdm30 被发现可调节 TREX(转录出口)复合物 Sub2 组件的泛素化,从而促进其被蛋白酶体降解,以刺激 mRNA 输出,但目前尚不清楚这种泛素蛋白酶体系统 (UPS) 调节是否发生在 Sub2 与 Mdm30 相互作用的转录过程中。此外,由于 Sub2 控制 mRNA 剪接,Mdm30 调节线粒体聚集,在缺乏 Mdm30 时 UPS 对 Sub2 的调节受损是否会通过剪接缺陷的出口因子和/或线粒体动力学/功能改变 mRNA 输出尚不清楚。在这里,我们表明 Mdm30 与 Sub2 相互作用,并且 Mdm30 的临时关闭会增加 Sub2 的丰度并损害 mRNA 输出。同样,转录抑制后 Sub2 的丰度增加。这些结果支持 Mdm30 以依赖于转录的方式直接调节 Sub2 细胞丰度的作用。一致地,在缺乏 Mdm30 时,染色质结合的 Sub2 水平增加。此外,我们发现 Mdm30 不会促进出口因子的剪接。此外,Mdm30 对线粒体呼吸/功能没有显著影响,并且在需要线粒体动力学/呼吸的 Fzo1 缺失的情况下也会发生 mRNA 输出。集体结果表明,Mdm30 以依赖于转录的方式与 Sub2 相互作用以进行蛋白酶体降解,从而独立于剪接或线粒体功能促进 mRNA 输出,从而提高了我们对 mRNA 输出的理解。