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大肠杆菌和藤黄微球菌激活果蝇S2细胞系中的CG45045基因。

Escherichia coli and Micrococcus luteus Activate the CG45045 Gene in Drosophila S2 Cell Line.

作者信息

Polunina Yu A, Pravednikova A E, Ghassah M, Georgiev P G, Shidlovskii Yu V, Kachaev Z M

机构信息

Institute of Gene Biology of the Russian Academy of Sciences, Moscow, Russia.

出版信息

Dokl Biochem Biophys. 2024 Dec;519(1):482-485. doi: 10.1134/S160767292460074X. Epub 2024 Oct 11.

DOI:10.1134/S160767292460074X
PMID:39400767
Abstract

The humoral immune system of Drosophila melanogaster, which is the best studied of all eukaryotes, is activated by the canonical IMD and Toll signalling pathways. Recently, long non-coding RNAs (lncRNAs) and genes encoding short polypeptides have been identified as potential regulators of the innate immune response. S2 cells are a macrophage-like cell line. They are used as a model system to study the molecular mechanisms of immune response gene activation. We used this cell line to study the effect of Escherichia coli and Micrococcus luteus bacteria on the transcription of the lncRNA-CR30055 and the CG45045 and CG44404 genes, encoding short polypeptides. We found that pathogens activate only CG45045, while the transcription levels of CR30055 and CG44404 remain unchanged. No activation of Cecropin C and some Bomanin family genes was observed, suggesting differing patterns of immune response gene activation in S2 cells and adult flies. The highest activation of CG45045 was observed between 6 and 12 hours of cell incubation with pathogens. The activation patterns of CG45045 after exposure to E. coli and M. luteus were similar, suggesting common mechanisms of transcriptional activation of this gene. Thus, CG45045 may be a novel gene involved in the humoral immune response of Drosophila.

摘要

黑腹果蝇的体液免疫系统是所有真核生物中研究最为深入的,它通过经典的IMD和Toll信号通路被激活。最近,长链非编码RNA(lncRNAs)和编码短多肽的基因已被确定为先天免疫反应的潜在调节因子。S2细胞是一种巨噬细胞样细胞系。它们被用作研究免疫反应基因激活分子机制的模型系统。我们使用该细胞系研究大肠杆菌和藤黄微球菌对lncRNA - CR30055以及编码短多肽的CG45045和CG44404基因转录的影响。我们发现病原体仅激活CG45045,而CR30055和CG44404的转录水平保持不变。未观察到天蚕素C和一些博马宁家族基因的激活,这表明S2细胞和成年果蝇中免疫反应基因激活模式不同。在细胞与病原体孵育6至12小时之间观察到CG45045的激活程度最高。暴露于大肠杆菌和藤黄微球菌后CG45045的激活模式相似,表明该基因转录激活的共同机制。因此,CG45045可能是参与黑腹果蝇体液免疫反应的一个新基因。

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本文引用的文献

1
lncRNA-CR46018 positively regulates the Drosophila Toll immune response by interacting with Dif/Dorsal.长链非编码RNA-CR46018通过与Dif/Dorsal相互作用正向调节果蝇Toll免疫反应。
Dev Comp Immunol. 2021 Nov;124:104183. doi: 10.1016/j.dci.2021.104183. Epub 2021 Jun 24.
2
Immune-inducible non-coding RNA molecule lincRNA-IBIN connects immunity and metabolism in Drosophila melanogaster.免疫诱导的非编码 RNA 分子 lincRNA-IBIN 在果蝇体内连接免疫和代谢。
PLoS Pathog. 2019 Jan 11;15(1):e1007504. doi: 10.1371/journal.ppat.1007504. eCollection 2019 Jan.
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Short-Form Bomanins Mediate Humoral Immunity in Drosophila.
短型 Bomanins 介导果蝇的体液免疫。
J Innate Immun. 2018;10(4):306-314. doi: 10.1159/000489831. Epub 2018 Jun 19.
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Immunity in Drosophila melanogaster--from microbial recognition to whole-organism physiology.黑腹果蝇的免疫——从微生物识别到机体整体生理学
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Innate immunity in Drosophila: Pathogens and pathways.果蝇的天然免疫:病原体与信号通路
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Peptidoglycan recognition by the Drosophila Imd pathway.果蝇Imd途径对肽聚糖的识别。
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8
The Drosophila immune system detects bacteria through specific peptidoglycan recognition.果蝇免疫系统通过特定的肽聚糖识别来检测细菌。
Nat Immunol. 2003 May;4(5):478-84. doi: 10.1038/ni922.