首页> 外文OA文献 >Identification and Characterization of the Plasmodium yoelii PyP140/RON4 Protein, an Orthologue of Toxoplasma gondii RON4, Whose Cysteine-Rich Domain Does Not Protect against Lethal Parasite Challenge Infection▿
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Identification and Characterization of the Plasmodium yoelii PyP140/RON4 Protein, an Orthologue of Toxoplasma gondii RON4, Whose Cysteine-Rich Domain Does Not Protect against Lethal Parasite Challenge Infection▿

机译:鉴定和鉴定了疟原虫弓形虫RON4的直系同源物疟原虫约氏疟原虫PyP140 / RON4蛋白,该蛋白的半胱氨酸丰富的域不能抵抗致命的寄生虫攻击。

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摘要

Previously, we identified a Plasmodium yoelii YM 140-kDa merozoite protein, designated PyP140, which formed a complex with apical membrane antigen 1 (AMA1). Furthermore, we produced a nonprotective monoclonal antibody (MAb), 48F8, that immunoprecipitated metabolically labeled PyP140 and localized the protein to the merozoite's apical end and, less frequently, to the merozoite surface, as observed by immunofluorescence assay (IFA). Here, using MAb 48F8, we have identified the pyp140 gene by screening a P. yoelii λ-Zap cDNA expression library. The pyp140 cDNA covers approximately 90% of the putative open reading frame (ORF) of PY02159 from the P. yoelii NL genome sequencing project. Analysis of the complete gene identified the presence of two introns. The ORF encodes a 102,407-Da protein with an amino-terminal signal sequence, a series of three unique types of repeats, and a cysteine-rich region. The binding site of MAb 48F8 was also identified. A BLAST search with the deduced amino acid sequence shows significant similarity with the Toxoplasma gondii RON4 protein and the Plasmodium falciparum RON4 protein, and the sequence is highly conserved in other Plasmodium species. We produced the cysteine-rich domain of PyP140/RON4 by using the Pichia pastoris expression system and characterized the recombinant protein biochemically and biophysically. BALB/c mice immunized with the protein formulated in oil-in-water adjuvants produced antibodies that recognize parasitized erythrocytes by IFA and native PyP140/RON4 by immunoblotting but failed to protect against a lethal P. yoelii YM infection. Our results show that PyP140/RON4 is located within the rhoptries or micronemes. It may associate in part with AMA1, but the conserved cysteine-rich domain does not appear to elicit inhibitory antibodies, a finding that is supported by the marked sequence conservation in this protein within Plasmodium spp., suggesting that it is not under immune pressure.
机译:以前,我们鉴定了疟原虫YM 140-kDa裂殖子蛋白,称为PyP140,它与顶膜抗原1(AMA1)形成复合物。此外,我们还生产了一种非保护性单克隆抗体(MAb)48F8,该抗体可进行免疫沉淀代谢标记的PyP140,并将该蛋白质定位于裂殖子的顶端,而较少地定位于裂殖子的表面,如通过免疫荧光测定(IFA)所观察到的。在这里,我们使用MAb 48F8通过筛选约氏​​疟原虫λ-ZapcDNA表达文库鉴定了pyp140基因。 pyp140 cDNA涵盖了约氏疟原虫NL基因组测序项目中PY02159的推定开放阅读框(ORF)的大约90%。对完整基因的分析确定了两个内含子的存在。 ORF编码具有氨基末端信号序列,一系列三种独特类型的重复序列和富含半胱氨酸的区域的102,407-Da蛋白。还鉴定了MAb 48F8的结合位点。使用推导的氨基酸序列进行的BLAST搜索显示与弓形虫RON4蛋白和恶性疟原虫RON4蛋白具有显着相似性,并且该序列在其他疟原虫物种中高度保守。我们使用巴斯德毕赤酵母表达系统生产了PyP140 / RON4的富含半胱氨酸的结构域,并对重组蛋白进行了生物化学和生物物理表征。用在水包油佐剂中配制的蛋白质免疫的BALB / c小鼠产生的抗体可通过免疫印迹识别IFA和天然PyP140 / RON4寄生的红细胞,但无法预防致命的约氏疟原虫感染。我们的结果表明,PyP140 / RON4位于rhoptry或microneme中。它可能与AMA1部分相关,但是保守的富含半胱氨酸的结构域似乎不会引发抑制性抗体,这一发现得到了疟原虫属物种中该蛋白中明显的序列保守性的支持,这表明它不在免疫压力下。

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