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首页> 外文期刊>Parasitology International >The Plasmodium falciparum RhopH2 promoter and first 24 amino acids are sufficient to target proteins to the rhoptries
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The Plasmodium falciparum RhopH2 promoter and first 24 amino acids are sufficient to target proteins to the rhoptries

机译:恶性疟原虫RhopH2启动子和前24个氨基酸足以将蛋白质靶向到重组

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摘要

The rhoptry secretory organelles of the malaria parasite, Plasmodium falciparum, contain a RhopH complex, which is composed of the proteins RhopH1, RhopH2, and RhopH3. RhopH1 is encoded by the rhoph1/clag multi-gene family, whereas RhopH2 and RhopH3 are encoded by single-copy genes. The precise function of the RhopH complex has not been identified, but it has been shown that the component proteins are involved in erythrocyte binding and perhaps participate in the formation of the parasitophorous vacuolar membrane. In this study, we have isolated pfrhoph2 promoter plus the signal peptide encoding sequence and generated transgene expression constructs to evaluate a trafficking and the RhopH complex formation in transgenic P. falciparum parasite lines. Interestingly, we found that the N-terminal 24 amino acids of RhopH2, including signal peptide sequence, were sufficient to target GFP to the rhoptries under the rhoph2 promoter. Because it was previously shown that the timing of the expression alone could not target proteins to the apical organelles, this targeting is likely mediated via a unique mechanism that is dependent on N-terminal 24 amino acids of RhopH2 early in the secretory pathway. The N-terminal one third of Clag3.1, which contains a distinct conserved domain with Toxoplasma gondii RON2, can not associate the RhopH complex as a GFP chimera, but a c-Myc-Clag3.1 chimera lacking the C-terminus successfully associates the RhopH complex indicating that cooperation of middle region is likely required but the C-terminus is not necessary.
机译:疟疾寄生虫的疟原虫的分泌分泌型细胞器含有恶性疟原虫,恶性疟原虫含有RhopH复合物,该复合物由蛋白质RhopH1,RhopH2和RhopH3组成。 RhopH1由rhoph1 / clag多基因家族编码,而RhopH2和RhopH3由单拷贝基因编码。 RhopH复合物的确切功能尚未确定,但已表明该组成蛋白与红细胞结合有关,并可能参与了寄生虫液泡膜的形成。在这项研究中,我们分离了pfrhoph2启动子加上信号肽编码序列,并生成了转基因表达构建体,以评估转基因恶性疟原虫寄生虫品系中的运输和RhopH复合物形成。有趣的是,我们发现RhopH2的N末端24个氨基酸(包括信号肽序列)足以将GFP靶向rhoph2启动子下的rhoptry。由于先前已证明单独表达的时机无法将蛋白质靶向顶细胞器,因此这种靶向可能是通过独特的机制介导的,该机制依赖分泌途径早期的RhopH2的N端24个氨基酸。 Clag3.1的N端三分之一包含一个与弓形虫RON2截然不同的保守结构域,不能将RhopH复合物关联为GFP嵌合体,但是缺少C末端的c-Myc-Clag3.1嵌合体可以成功关联。 RhopH复合物表明可能需要中间区域的协作,但C末端不是必需的。

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