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基于T7 RNA聚合酶的基因表达,来自携带内共生体的锥虫Angomonas deanei中转录沉默的核糖体DNA间隔区。

T7 RNA polymerase-based gene expression from a transcriptionally silent rDNA spacer in the endosymbiont-harboring trypanosomatid Angomonas deanei.

作者信息

Kröninger Lena, Maurya Anay K, Stiebeling Christian, Stirba Florian P, Kim Zio, Nowack Eva C M

机构信息

Department of Biology, Heinrich Heine University Düsseldorf, Düsseldorf, Germany.

出版信息

PLoS One. 2025 May 30;20(5):e0322611. doi: 10.1371/journal.pone.0322611. eCollection 2025.

Abstract

Eukaryotic life has been shaped fundamentally by the integration of bacterial endosymbionts. The trypanosomatid Angomonas deanei that contains a β-proteobacterial endosymbiont, represents an emerging model to elucidate initial steps in symbiont integration. Although the repertoire of genetic tools for A. deanei is growing, no conditional gene expression system is available yet, which would be key for the functional characterization of essential or expression of toxic proteins. Development of a conditional expression system based on endogenous RNA polymerase II (POLII) is hampered by the absence of information on transcription signals in A. deanei as well as the unusual genetic system used in the Trypanosomatidae that relies on read-through transcription. This mode of transcription can result in polar effects when manipulating expression of genes in their endogenous loci. Finally, only a few resistance markers are available for A. deanei yet, restricting the number of genetic modifications that can be introduced into one strain. To increase the range of possible genetic manipulations in A. deanei, and in particular, build the base for a conditional expression system that does not interfere with the endogenous gene expression machinery, here we (i) implemented two new drug resistance markers, (ii) identified the spacer upstream of the rDNA array on chromosome 13 as transcriptionally silent genomic locus, and (iii) used this locus for engineering an ectopic expression system that depends on the T7 RNA polymerase expressed from the δ-amastin locus. We show that transgene expression in this system is independent of the activity of endogenous RNA polymerases, reaches expression levels similar to the previously described POLII-dependent expression from the γ-amastin locus, and can be applied for studying endosymbiosis. In sum, the new tools expand the possibilities for genetic manipulations of A. deanei and provide a solid base for the development of an ectopic conditional expression system.

摘要

真核生物的生命在根本上受到细菌内共生体整合的影响。含有β-变形菌内共生体的锥虫Angomonas deanei是阐明共生体整合初始步骤的新兴模型。尽管用于A. deanei的遗传工具种类在不断增加,但目前尚无条件基因表达系统,而这对于必需蛋白的功能表征或有毒蛋白的表达至关重要。基于内源性RNA聚合酶II(POLII)的条件表达系统的开发受到阻碍,原因在于缺乏A. deanei转录信号的相关信息,以及锥虫科所使用的依赖通读转录的独特遗传系统。这种转录模式在操纵内源基因座中的基因表达时可能会产生极性效应。最后,目前A. deanei仅有少数几种抗性标记,限制了可引入单个菌株的基因修饰数量。为了增加A. deanei可能的基因操作范围,特别是为构建一个不干扰内源基因表达机制的条件表达系统奠定基础,我们在此(i)引入了两种新的药物抗性标记,(ii)将13号染色体上rDNA阵列上游的间隔区鉴定为转录沉默基因组位点,以及(iii)利用该位点构建了一个异位表达系统,该系统依赖于从δ-无鞭毛体基因座表达的T7 RNA聚合酶。我们表明,该系统中的转基因表达独立于内源性RNA聚合酶的活性,达到与先前描述的从γ-无鞭毛体基因座进行的POLII依赖性表达相似的表达水平,并且可用于研究内共生现象。总之,这些新工具扩展了A. deanei基因操作的可能性,并为异位条件表达系统的开发提供了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4274/12124550/ed08a8cc673c/pone.0322611.g001.jpg

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