在棘阿米巴castellanii程序性细胞死亡期间,选择性剪接驱动动态转录组反应。

IF 3.9 3区 生物学 Q2 CELL BIOLOGY
Microbial Cell Pub Date : 2025-08-26 eCollection Date: 2025-01-01 DOI:10.15698/mic2025.08.858
Jesús Gómez-Montalvo, Zisis Koutsogiannis, Sutherland K Maciver, Alvaro de Obeso Fernández Del Valle
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引用次数: 0

摘要

单细胞生物的程序性细胞死亡(PCD)尚未得到很好的表征。本研究研究了棘阿米巴(Acanthamoeba castellanii)对g418诱导的PCD的转录组反应,重点研究了选择性剪接(AS)的作用。RNA测序揭示了广泛的转录变化,在6小时的治疗中影响了大约70%的注释基因。该分析还强调了与细胞周期、蛋白质水解和RNA剪接相关的途径的显著改变。对AS事件的分析确定了18,748个差异剪接事件,主要是内含子保留(IR)。有趣的是,保留的内含子在未处理的细胞中表现出3'偏倚,这种模式在PCD期间在整个基因体中向均匀分布转变。此外,我们在滋养体阶段和变形虫的PCD期间表征了保留的内含子。相关分析显示IR与转录水平呈显著负相关,表明转录和转录后调控之间存在复杂的相互作用。IR的优势及其在PCD过程中的动态位置转移表明了一种新的调控机制。这些发现为PCD在该生物体内的分子机制提供了新的见解,有可能确定新的治疗靶点,并使我们更好地了解castellanii(兼性人类病原体)的这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alternative splicing drives a dynamic transcriptomic response during Acanthamoeba castellanii programmed cell death.

Programmed cell death (PCD) in unicellular organisms is not well characterized. This study investigated the transcriptomic response of Acanthamoeba castellanii to G418-induced PCD, focusing on the role of alternative splicing (AS). RNA sequencing revealed extensive transcriptional changes, affecting approximately 70% of annotated genes over six hours of treatment. This analysis also highlighted significant alterations in pathways related to cell cycle, proteolysis, and RNA splicing. Analysis of AS events identified 18,748 differentially spliced events, predominantly intron retention (IR). Interestingly, retained introns displayed a 3' bias in untreated cells, a pattern that shifted towards uniform distribution throughout the gene body during PCD. Additionally, we characterized retained introns during trophozoite stage and during PCD of the amoeba. Correlational analysis revealed a significant negative correlation between IR and transcript levels, suggesting a complex interplay between transcriptional and post-transcriptional regulation. The predominance of IR, coupled with its dynamic positional shift during PCD, points to a novel regulatory mechanism in A. castellanii PCD. These findings provide insights into the molecular mechanisms underlying PCD in this organism, potentially identifying new therapeutic targets and allowing us a better understanding of such process in A. castellanii, a facultative human pathogen.

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来源期刊
Microbial Cell
Microbial Cell Multiple-
CiteScore
6.40
自引率
0.00%
发文量
32
审稿时长
12 weeks
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