Luzak Vanessa, Osses Esteban, Danese Anna, Odendaal Christoff, Cosentino Raúl O, Stricker Stefan H, Haanstra Jurgen R, Erhard Florian, Siegel T Nicolai
Division of Experimental Parasitology, Faculty of Veterinary Medicine, Ludwig-Maximilians-Universität München, Munich, Germany.
Biomedical Center Munich, Division of Physiological Chemistry, Faculty of Medicine, Ludwig-Maximilians-Universität München, Munich, Germany.
Nucleic Acids Res. 2025 Jan 24;53(3). doi: 10.1093/nar/gkae1203.
Gene expression is a multi-step process that converts DNA-encoded information into proteins, involving RNA transcription, maturation, degradation, and translation. While transcriptional control is a major regulator of protein levels, the role of post-transcriptional processes such as RNA processing and degradation is less well understood due to the challenge of measuring their contributions individually. To address this challenge, we investigated the control of gene expression in Trypanosoma brucei, a unicellular parasite assumed to lack transcriptional control. Instead, mRNA levels in T. brucei are controlled by post-transcriptional processes, which enabled us to disentangle the contribution of both processes to total mRNA levels. In this study, we developed an efficient metabolic RNA labeling approach and combined ultra-short metabolic labeling with transient transcriptome sequencing (TT-seq) to confirm the long-standing assumption that RNA polymerase II transcription is unregulated in T. brucei. In addition, we established thiol (SH)-linked alkylation for metabolic sequencing of RNA (SLAM-seq) to globally quantify RNA processing rates and half-lives. Our data, combined with scRNA-seq data, indicate that RNA processing and stability independently affect total mRNA levels and contribute to the variability seen between individual cells in African trypanosomes.
基因表达是一个多步骤过程,它将DNA编码的信息转化为蛋白质,涉及RNA转录、成熟、降解和翻译。虽然转录控制是蛋白质水平的主要调节因子,但由于单独测量RNA加工和降解等转录后过程的贡献具有挑战性,其作用尚未得到很好的理解。为了应对这一挑战,我们研究了布氏锥虫中的基因表达控制,布氏锥虫是一种单细胞寄生虫,被认为缺乏转录控制。相反,布氏锥虫中的mRNA水平由转录后过程控制,这使我们能够区分这两个过程对总mRNA水平的贡献。在本研究中,我们开发了一种高效的代谢RNA标记方法,并将超短代谢标记与瞬时转录组测序(TT-seq)相结合,以证实长期以来的假设,即布氏锥虫中的RNA聚合酶II转录不受调控。此外,我们建立了用于RNA代谢测序的硫醇(SH)连接烷基化(SLAM-seq),以全局量化RNA加工速率和半衰期。我们的数据与单细胞RNA测序(scRNA-seq)数据相结合,表明RNA加工和稳定性独立影响总mRNA水平,并导致非洲锥虫个体细胞之间的变异性。