Instituto Carlos Chagas, FIOCRUZ, Curitiba, Paraná, Brazil.
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland, USA.
Mol Cell Proteomics. 2022 Mar;21(3):100208. doi: 10.1016/j.mcpro.2022.100208. Epub 2022 Jan 26.
In trypanosomatids, transcription is polycistronic and all mRNAs are processed by trans-splicing, with export mediated by noncanonical mechanisms. Although mRNA export is central to gene regulation and expression, few orthologs of proteins involved in mRNA export in higher eukaryotes are detectable in trypanosome genomes, necessitating direct identification of protein components. We previously described conserved mRNA export pathway components in Trypanosoma cruzi, including orthologs of Sub2, a component of the TREX complex, and eIF4AIII (previously Hel45), a core component of the exon junction complex (EJC). Here, we searched for protein interactors of both proteins using cryomilling and mass spectrometry. Significant overlap between TcSub2 and TceIF4AIII-interacting protein cohorts suggests that both proteins associate with similar machinery. We identified several interactions with conserved core components of the EJC and multiple additional complexes, together with proteins specific to trypanosomatids. Additional immunoisolations of kinetoplastid-specific proteins both validated and extended the superinteractome, which is capable of supporting RNA processing from splicing through to nuclear export and cytoplasmic events. We also suggest that only proteomics is powerful enough to uncover the high connectivity between multiple aspects of mRNA metabolism and to uncover kinetoplastid-specific components that create a unique amalgam to support trypanosome mRNA maturation.
在动基体生物中,转录是多顺反子的,所有 mRNA 都通过反式剪接进行加工,通过非规范机制进行输出。尽管 mRNA 输出对基因调控和表达至关重要,但在动基体生物的基因组中,很少能检测到与高等真核生物中 mRNA 输出相关的蛋白质的同源物,因此需要直接鉴定蛋白质成分。我们之前在克氏锥虫中描述了保守的 mRNA 输出途径成分,包括 TREX 复合物的 Sub2 同源物和 eIF4AIII(以前称为 Hel45),这是外显子连接复合物(EJC)的核心成分。在这里,我们使用冷冻研磨和质谱法搜索这两种蛋白质的蛋白质相互作用体。TcSub2 和 TceIF4AIII 相互作用蛋白群体之间存在显著重叠,表明这两种蛋白质都与类似的机制相关联。我们鉴定了几个与 EJC 的保守核心成分以及多个其他复合物的相互作用,以及与动基体生物特异性的蛋白质的相互作用。对动基体生物特异性蛋白质的额外免疫分离既验证又扩展了超级相互作用组,该相互作用组能够支持从剪接到核输出和细胞质事件的 RNA 处理。我们还表明,只有蛋白质组学才足够强大,可以揭示 mRNA 代谢的多个方面之间的高度连接,并揭示动基体生物特有的成分,这些成分创造了独特的混合物,以支持锥虫 mRNA 的成熟。