Department of Cell and Developmental Biology, Institute for Biomedical Sciences, University of São Paulo, São Paulo 05508-000, Brazil.
Special Laboratory of Cell Cycle, Center of Toxins, Immune Response and Cell Signalling (CeTICS), Butantan Institute, São Paulo 05503-900, Brazil.
J Proteomics. 2020 Jul 15;223:103822. doi: 10.1016/j.jprot.2020.103822. Epub 2020 May 15.
The unicellular protists of the group Kinetoplastida include the genera Leishmania and Trypanosoma, which are pathogens of invertebrate and vertebrate animals. Despite their medical and economical importance, critical aspects of their biology such as specific molecular characteristics of gene expression regulation are just beginning to be deciphered. Gene expression regulation also depends on post-transcriptional processing steps, such as the trans-splicing process. Despite being widely used in trypanosomes, trans-splicing is a rare event in other eukaryotes. We sought to describe the protein composition of spliceosomes in epimastigotes of T. cruzi, the etiological agent of Chagas disease. We used two TAP-tagged proteins to affinity purify spliceosomes and analyzed their composition by mass spectrometry. Among the 115 identified proteins we detected conserved spliceosome components, as Sm and LSm proteins, RNA helicases, U2- and U5-snRNP specific proteins. Importantly, by comparing our data with proteomic data of human and T. brucei spliceosome complexes, we observed a core group of proteins common to all spliceosomes. By using amino acid sequence comparisons, we identified RNA-associated proteins that might be involved with splicing regulation in T. cruzi, namely the orthologous of WDR33, PABPCL1 and three different HNRNPs. Data are available via ProteomeXchange with identifier PXD018776.
动基体目原生动物包括利什曼原虫属和锥虫属,它们是无脊椎动物和脊椎动物的病原体。尽管它们在医学和经济上很重要,但它们生物学的关键方面,如基因表达调控的特定分子特征,才刚刚开始被破解。基因表达调控还依赖于转录后加工步骤,如转剪接过程。尽管转剪接在锥虫中被广泛应用,但在其他真核生物中却是罕见的事件。我们试图描述恰加斯病病原体克氏锥虫的前鞭毛体剪接体的蛋白质组成。我们使用两种 TAP 标记蛋白来亲和纯化剪接体,并通过质谱分析其组成。在鉴定的 115 种蛋白质中,我们检测到了保守的剪接体成分,如 Sm 和 LSm 蛋白、RNA 解旋酶、U2- 和 U5-snRNP 特异性蛋白。重要的是,通过将我们的数据与人类和 T. brucei 剪接体复合物的蛋白质组学数据进行比较,我们观察到所有剪接体共有的核心蛋白群。通过氨基酸序列比较,我们鉴定了可能参与克氏锥虫剪接调控的 RNA 相关蛋白,即 WDR33、PABPCL1 和三个不同的 HNRNPs 的同源物。数据可通过 ProteomeXchange 以标识符 PXD018776 获得。