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Identification of a hypothetical membrane protein interactor of ribosomal phosphoprotein P0

机译:核糖体磷蛋白P0假想膜蛋白相互作用物的鉴定

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The ribosomal phosphoprotein PO of the human malarial parasite Plasmodium falciparum (PfP0) has been identified as a protective surface protein. In Drosophila, P0 protein functions in the nucleus. The ribosomal function of P0 is mediated at the stalk of the large ribosomal subunit at the GTPase centre, Where the elongation factor eEF2 binds. The multiple roles of the P0 protein presumably occur through interactions with other proteins. To identify such interacting protein domains, a yeast two-hybrid screen was carried out. Out of a set of sixty clones isolated, twelve clones that interacted strongly with both PfP0 and the Saccharomyces cerevisiae P0 (ScP0) protein were analysed. These belonged to three broad classes: namely (i) ribosomal proteins; (ii) proteins involved in nucleotide binding; and (iii) hypothetical integral membrane proteins. One of the strongest interactors (clone 67B) mapped to the gene YFL034W which codes for a hypothetical integral membrane protein, and is conserved amongst several eukaryotic organisms. The insert of clone 67B was expressed as a recombinant protein, and immunoprecipitaion (IP) reaction with anti-P0 antibodies pulled down this protein along with PfP0 as well as ScP0 protein. Using deletion constructions, the domain of ScP0, which interacted with clone 67B, was mapped to 60-148 amino acids. It is envisaged that the surface localization of P0 protein may be mediated through interactions with putative YFL034W-like proteins in P. falciparum.
机译:人疟原虫恶性疟原虫(PfP0)的核糖体磷蛋白PO已被鉴定为保护性表面蛋白。在果蝇中,P0蛋白在细胞核中起作用。 P0的核糖体功能是在GTPase中心的大型核糖体亚基的茎上介导的,延伸因子eEF2在那里结合。 P0蛋白的多种作用大概是通过与其他蛋白的相互作用而发生的。为了鉴定这种相互作用的蛋白质结构域,进行了酵母双杂交筛选。在一组分离的60个克隆中,分析了与PfP0和酿酒酵母P0(ScP0)蛋白均强烈相互作用的12个克隆。这些属于三大类:(i)核糖体蛋白; (ii)参与核苷酸结合的蛋白质; (iii)假想的完整膜蛋白。映射到基因YFL034W的最强相互作用因子之一(克隆67B),该基因编码一种假想的完整膜蛋白,在几种真核生物中都是保守的。克隆67B的插入片段表达为重组蛋白,并且与抗P0抗体的免疫沉淀(IP)反应将该蛋白与PfP0和ScP0蛋白一起拉低。使用缺失构建,将与克隆67B相互作用的ScP0的结构域定位到60-148个氨基酸。设想P0蛋白的表面定位可以通过与恶性疟原虫中假定的YFL034W样蛋白的相互作用来介导。

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