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首页> 外文期刊>Molecular and Biochemical Parasitology >Involvement of an RNA binding protein containing Alba domain in the stage-specific regulation of beta-amastin expression in Trypanosoma cruzi
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Involvement of an RNA binding protein containing Alba domain in the stage-specific regulation of beta-amastin expression in Trypanosoma cruzi

机译:含有ALAMA结构域的RNA结合蛋白参与胰蛋白酶瘤Cruzi的阶段特异性调节阶段特异性调节

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Amastins are surface glycoproteins, first identified in amastigotes of T.cruzi but later found to be expressed in several Leishmania species, as well as in T.cruzi epimastigotes. Amastins are encoded by a diverse gene family that can be grouped into four subfamilies named alpha, beta, gamma, and delta amastins. Differential expression of amastin genes results from regulatory mechanisms involving changes in mRNA stability and/or translational control. Although distinct regulatory elements were identified in the 3' UTR of T.cruzi and Leishmania amastin mRNAs, RNA binding proteins involved with amastin gene regulation have only being characterized in L. infantum where an Alba-domain protein (LiAlba20) able to bind to the 3' UTR of a delta-amastin mRNA was identified. Here we investigated the role of TcAlba30, the LiAlba20 homologue in T. cruzi, in the post transcriptional regulation of amastin genes. TcAlba30 transcripts are present in all stages of the T. cruzi life cycle. RNA immunoprecipitation assays using a transfected cell line expressing a cMyc tagged TcAlba30 revealed that TcAlba30 can interact with beta-amastin mRNA. In addition, over-expression of TcAlba30 in epimastigotes resulted in 50% decreased levels of beta-amastin mRNAs compared to wild type parasites. Since luciferase assays indicated the presence of regulatory elements in the 3' UTR of (beta-amastin mRNA and reduced levels of luciferase mRNA were found in parasites over expressing TcAlba30, we conclude that TcAlba30 acts as a T. cruzi RNA binding protein involved in the negative control of beta-amastin expression through interactions with its 3'UTR. (C) 2016 Elsevier B.V. All rights reserved.
机译:Amastins是表面糖蛋白,首先在T.cruzi的Amastigot中鉴定,但后来发现在几种LeishMania物种以及T.Cruzi ePimastigotes中表达。 Amastins由各种基因家族编码,可分为名为α,β,γ和δAmastins的四个亚属植物。 Amastin基因的差异表达来自涉及mRNA稳定性和/或平移控制的变化的调节机制。虽然在T.Cruzi和LeishManiaAmastin mRNA的3'UTR中鉴定了不同的调节元件,但参与Amastin基因调节的RNA结合蛋白仅在L. Infantum中的特征在于能够与之结合的Alba-域蛋白(LiAlba20)。鉴定了3'UTRδ-Amastin mRNA的UTR。在这里,我们调查了Tcalba30,LiAnba20同源物在克鲁齐的角度,在Amastin基因的后转录调节中。 Tcalba30转录物存在于T.Cruzi生命周期的所有阶段。使用表达CMYC标记的TCALBA30的转染细胞系的RNA免疫沉淀测定显示TCALBA30可以与β-Amastin mRNA相互作用。此外,与野生型寄生虫相比,Epimastigotes中TcalBa30的β30的过表达导致β-Amastin mRNA水平降低50%。由于荧光素酶测定表明,在表达TCALBA30的寄生虫中发现了3'UTR中的调节元件(β-amastin mRNA的调节元件,并且在表达TCALBA30的寄生虫中发现,TCALBA30充当参与的T.Cruzi RNA结合蛋白通过与其3'UTR的相互作用对β-amastin表达的阴性控制。(c)2016 Elsevier BV保留所有权利。

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