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Regulation of gene expression in the protozoan parasite Entamoeba invadens identification of core promoter elements and promoters with stage-specific expression patterns

机译:原生动物寄生虫Entamoeba中基因表达的调节侵犯了核心启动子元件和具有阶段特异性表达模式的启动子的鉴定

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摘要

Developmental switching between life-cycle stages is a common feature among many pathogenic organisms. Entamoeba histolytica is an important human pathogen and is a leading parasitic cause of death globally. During its life cycle, Entamoeba converts between cysts (essential for disease transmission) and trophozoites (responsible for tissue invasion). Despite being central to its biology, the triggers that are involved in the developmental pathways of this parasite are not well understood. In order to define the transcriptional network associated with stage conversion we used Entamoeba invadens which serves as a model system for Entamoeba developmental biology, and performed RNA sequencing at different developmental time points . In this study RNA-Seq data was utilized to define basal transcriptional control elements as well as to identify promoters which regulate stage-specific gene expression patterns. We discovered that the 5’ and 3’ untranslated regions of E. invadens genes are short, a median of 20 nucleotides (nt) and 26 nt respectively. Bioinformatics analysis of DNA sequences proximate to the start and stop codons identified two conserved motifs: (i) E. invadens Core Promoter Motif - GAAC-Like (EiCPM-GL) (GAACTACAAA), and (ii) E. invadens 3’- U-Rich Motif (Ei3’-URM) (TTTGTT) in the 5’ and 3’ flanking regions, respectively. Electrophoretic mobility shift assays demonstrated that both motifs specifically bind nuclear protein(s) from E. invadens trophozoites. Additionally, we identified select genes with stage-specific expression patterns and analyzed the ability of each gene promoter to drive a luciferase reporter gene during the developmental cycle. This approach confirmed three trophozoite-specific, four encystation-specific and two excystation-specific promoters. This work lays the framework for use of stage-specific promoters to express proteins of interest in a particular life-cycle stage, adding to the molecular toolbox for genetic manipulation of E. invadens and allowing further dissection of factors controlling Entamoeba developmental biology.
机译:生命周期阶段之间的发育转换是许多病原生物的共同特征。溶组织性变形杆菌是一种重要的人类病原体,是全球范围内主要的寄生死亡原因。在其生命周期中,Entamoeba在囊肿(对疾病传播必不可少)和滋养体(对组织入侵负责)之间转换。尽管对它的生物学至关重要,但对该寄生虫的发育途径所涉及的诱因却知之甚少。为了定义与阶段转换相关的转录网络,我们使用了Entamoeba invadens作为Entamoeba发育生物学的模型系统,并在不同的发育时间点进行了RNA测序。在这项研究中,RNA-Seq数据被用于定义基础转录控制元件以及鉴定调节阶段特异性基因表达模式的启动子。我们发现入侵大肠杆菌的5'和3'非翻译区很短,中位数分别为20个核苷酸(nt)和26 nt。对起始密码子和终止密码子附近的DNA序列的生物信息学分析确定了两个保守的基序:(i)入侵大肠杆菌核心启动子基序-GAAC-like(EiCPM-GL)(GAACTACAAA),以及(ii)入侵大肠杆菌3'- U -Rich Motif(Ei3'-URM)(TTTGTT)分别位于5'和3'侧翼区域。电泳迁移率变动分析表明,这两个基序均特异性结合了入侵大肠杆菌滋养体的核蛋白。此外,我们确定了具有阶段特异性表达模式的选择基因,并分析了每个基因启动子在发育周期中驱动萤光素酶报道基因的能力。该方法证实了三个滋养体特异性启动子,四个侵入位特异性启动子和两个激发态特异性启动子。这项工作奠定了使用阶段特异性启动子在特定生命周期阶段表达目标蛋白的框架,为分子技术改造入侵大肠杆菌增加了分子工具箱,并进一步解剖了控制变形虫发育生物学的因素。

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