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首页> 外文期刊>PLoS Pathogens >Eukaryotic translation initiation factor 5A and its posttranslational modifications play an important role in proliferation and potentially in differentiation of the human enteric protozoan parasite Entamoeba histolytica
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Eukaryotic translation initiation factor 5A and its posttranslational modifications play an important role in proliferation and potentially in differentiation of the human enteric protozoan parasite Entamoeba histolytica

机译:真核翻译引发因子5a及其后翻译修饰在人肠道原生动物寄生虫的分化中发挥着重要作用,潜在地在人肠道原生动物寄生虫的分化中

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The eukaryotic translation initiation factor 5A (eIF5A) is a highly conserved protein and is essential in all eukaryotes. However, the specific roles of eIF5A in translation and in other biological processes remain elusive. In the present study, we described the role of eIF5A, its posttranslational modifications (PTM), and the biosynthetic pathway needed for the PTM in Entamoeba histolytica , the protozoan parasite responsible for amoebic dysentery and liver abscess in humans. E . histolytica encodes two isotypes of eIF5A and two isotypes of enzymes, deoxyhypusine synthase (DHS), responsible for their PTM. Both of the two eIF5A isotypes are functional, whereas only one DHS (EhDHS1, but not EhDHS2), is catalytically active. The DHS activity increased ~2000-fold when EhDHS1 was co-expressed with EhDHS2 in Escherichia coli , suggesting that the formation of a heteromeric complex is needed for full enzymatic activity. Both EhDHS1 and 2 genes were required for in vitro growth of E . histolytica trophozoites, indicated by small antisense RNA-mediated gene silencing. In trophozoites, only eIF5A2 , but not eIF5A1 , gene was actively transcribed. Gene silencing of eIF5A2 caused compensatory induction of expression of eIF5A1 gene, suggesting interchangeable role of the two eIF5A isotypes and also reinforcing the importance of eIF5As for parasite proliferation and survival. Furthermore, using a sibling species, Entamoeba invadens , we found that eIF5A1 gene was upregulated during excystation, while eIF5A2 was downregulated, suggesting that eIF5A1 gene plays an important role during differentiation. Taken together, these results have underscored the essentiality of eIF5A and DHS, for proliferation and potentially in the differentiation of this parasite, and suggest that the hypusination associated pathway represents a novel rational target for drug development against amebiasis.
机译:真核翻译引发因子5a(EIF5a)是一种高度保守的蛋白质,并且在所有真核生物中是必不可少的。然而,EIF5A在翻译和其他生物过程中的具体作用仍然难以捉摸。在本研究中,我们描述了EIF5A的作用,其后翻译(PTM)和PTM中PTM所需的生物合成途径,该研究在entamoEBA组织olyTICA中,原生动物寄生虫对人类的氨基痢疾和肝脏脓肿负责。 e。组织olytica编码两种同样型的EIF5A和两种酶,脱氧型血清合酶(DHS),负责它们的PTM。两种EIF5A同学都是功能性的,而只有一个DHS(EHDHS1,但不是EHDHS2),是催化活性的。当EHDHS1与大肠杆菌中的EHDHS2共同表达时,DHS活性增加〜2000倍,表明全聚合物的形成是全酶活性的。 EHDHS1和2个基因都是E的体外生长所必需的。由小反义RNA介导的基因沉默表示的组织晶体滋养体。在滋养体中,只有EIF5A2,但不是EIF5A1,基因被主动转录。 EIF5A2的基因沉默引起了EIF5A1基因表达的补偿性诱导,表明两种EIF5A同种型的可互换作用以及增强EIF5AS对寄生虫增殖和生存的重要性。此外,使用兄弟姐妹物种Entamoeba Invadens,我们发现EIF5A1基因在源组合期间上调,而EIF5A2被下调,表明EIF5A1基因在分化期间发挥着重要作用。总之,这些结果强调了EIF5A和DHS的基本性,用于扩散和可能在这种寄生虫的分化中,并表明Hypsination相关途径代表了对琥珀类药物发育的新颖性靶标。

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