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氯细胞内通道敲低在果蝇中的转录组分析确定氧化还原功能可能是改变对乙醇镇静敏感性的机制。

Transcriptome analysis of chloride intracellular channel knockdown in Drosophila identifies oxidation-reduction function as possible mechanism of altered sensitivity to ethanol sedation.

机构信息

Department of Pharmacology and Toxicology, Virginia Commonwealth University, Richmond, Virginia, United States of America.

VCU Alcohol Research Center, Virginia Commonwealth University, Richmond, Virginia, United States of America.

出版信息

PLoS One. 2021 Jul 6;16(7):e0246224. doi: 10.1371/journal.pone.0246224. eCollection 2021.

Abstract

Chloride intracellular channels (CLICs) are a unique family of evolutionarily conserved metamorphic proteins, switching between stable conformations based on redox conditions. CLICs have been implicated in a wide variety biological processes including ion channel activity, apoptosis, membrane trafficking, and enzymatic oxidoreductase activity. Understanding the molecular mechanisms by which CLICs engage in these activities is an area of active research. Here, the sole Drosophila melanogaster ortholog, Clic, was targeted for RNAi knockdown to identify genes and biological processes associated with Clic expression. Clic knockdown had a substantial impact on global transcription, altering expression of over 7% of transcribed Drosophila genes. Overrepresentation analysis of differentially expressed genes identified enrichment of Gene Ontology terms including Cytoplasmic Translation, Oxidation-Reduction Process, Heme Binding, Membrane, Cell Junction, and Nucleolus. The top term, Cytoplasmic Translation, was enriched almost exclusively with downregulated genes. Drosophila Clic and vertebrate ortholog Clic4 have previously been tied to ethanol sensitivity and ethanol-regulated expression. Clic knockdown-responsive genes from the present study were found to overlap significantly with gene sets from 4 independently published studies related to ethanol exposure and sensitivity in Drosophila. Bioinformatic analysis of genes shared between these studies revealed an enrichment of genes related to amino acid metabolism, protein processing, oxidation-reduction processes, and lipid particles among others. To determine whether the modulation of ethanol sensitivity by Clic may be related to co-regulated oxidation-reduction processes, we evaluated the effect of hyperoxia on ethanol sedation in Clic knockdown flies. Consistent with previous findings, Clic knockdown reduced acute ethanol sedation sensitivity in flies housed under normoxia. However, this effect was reversed by exposure to hyperoxia, suggesting a common set of molecular-genetic mechanism may modulate each of these processes. This study suggests that Drosophila Clic has a major influence on regulation of oxidative stress signaling and that this function overlaps with the molecular mechanisms of acute ethanol sensitivity in the fly.

摘要

氯离子细胞内通道(CLICs)是一类独特的进化保守的变形蛋白家族,根据氧化还原条件在稳定构象之间切换。CLICs 参与了广泛的生物学过程,包括离子通道活性、细胞凋亡、膜运输和酶氧化还原酶活性。了解 CLIC 参与这些活动的分子机制是一个活跃的研究领域。在这里,靶向唯一的果蝇黑素体同源物 Clic 进行 RNAi 敲低,以鉴定与 Clic 表达相关的基因和生物学过程。Clic 敲低对全局转录有重大影响,改变了超过 7%的转录果蝇基因的表达。差异表达基因的过表达分析确定了富含基因本体论术语的富集,包括细胞质翻译、氧化还原过程、血红素结合、膜、细胞连接和核仁。最重要的术语细胞质翻译几乎完全被下调基因所富集。果蝇 Clic 和脊椎动物同源物 Clic4 以前与乙醇敏感性和乙醇调节表达有关。本研究中发现的 Clic 敲低响应基因与 4 个独立发表的与果蝇乙醇暴露和敏感性相关的研究中的基因集显著重叠。对这些研究中共享基因的生物信息学分析显示,与氨基酸代谢、蛋白质加工、氧化还原过程和脂质颗粒等相关的基因富集。为了确定 Clic 对乙醇敏感性的调节是否与共调节的氧化还原过程有关,我们评估了 Clic 敲低果蝇在高氧环境下对乙醇镇静作用的影响。与以前的发现一致,Clic 敲低降低了正常氧条件下果蝇对急性乙醇镇静作用的敏感性。然而,这种效应被高氧暴露所逆转,这表明一组共同的分子遗传机制可能调节这些过程。这项研究表明,果蝇 Clic 对氧化应激信号的调节有重大影响,并且该功能与果蝇中急性乙醇敏感性的分子机制重叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5564/8259981/5e8173b20592/pone.0246224.g001.jpg

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