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An Unusual ERAD-Like Complex Is Targeted to the Apicoplast of Plasmodium falciparum

机译:一种异常的ERAD样复合物针对恶性疟原虫的质膜。

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Many apicomplexan parasites, including Plasmodium falciparum, harbor a so-called apicoplast, a complex plastid of red algal origin which was gained by a secondary endosymbiotic event. The exact molecular mechanisms directing the transport of nuclear-encoded proteins to the apicoplast of P. falciparum are not well understood. Recently, in silico analyses revealed a second copy of proteins homologous to components of the endoplasmic reticulum (ER)-associated protein degradation (ERAD) system in organisms with secondary plastids, including the malaria parasite P. falciparum. These proteins are predicted to be endowed with an apicoplast targeting signal and are suggested to play a role in the transport of nuclear-encoded proteins to the apicoplast. Here, we have studied components of this ERAD-derived putative preprotein translocon complex in malaria parasites. Using transfection technology coupled with fluorescence imaging techniques we can demonstrate that the N terminus of several ERAD-derived components targets green fluorescent protein to the apicoplast. Furthermore, we confirm that full-length PfsDer1-1 and PfsUba1 (homologues of yeast ERAD components) localize to the apicoplast, where PfsDer1-1 tightly associates with membranes. Conversely, PfhDer1-1 (a host-specific copy of the Der1-1 protein) localizes to the ER. Our data suggest that ERAD components have been “rewired” to provide a conduit for protein transport to the apicoplast. Our results are discussed in relation to the nature of the apicoplast protein transport machinery.
机译:许多蚜虫寄生虫,包括恶性疟原虫(Plasmodium falciparum),都带有所谓的apicoplast,它是由红色藻类起源的复杂质体,是通过二次共生共生事件获得的。精确的分子机制指导核编码蛋白向 P的apicoplast的运输。恶性疟疾的了解不多。最近,计算机分析表明,在具有次级质体的生物体中,包括与疟原虫 P在内的生物体,存在与内质网(ER)相关的蛋白质降解(ERAD)系统组分同源的蛋白质的第二个副本。恶心。预测这些蛋白质具有被膜细胞定向的信号,并被认为在核编码蛋白向膜细胞的运输中发挥作用。在这里,我们研究了疟疾寄生虫中这种ERAD衍生的推定前蛋白转运复合物的成分。使用转染技术和荧光成像技术,我们可以证明几种ERAD衍生成分的N末端将绿色荧光蛋白靶向到了无顶质。此外,我们确认全长PfsDer1-1和PfsUba1(酵母ERAD组分的同源物)位于无纺布,PfsDer1-1与膜紧密结合。相反,PfhDer1-1(Der1-1蛋白的宿主特异性拷贝)位于ER。我们的数据表明,ERAD组件已被“重新布线”,以提供将蛋白质运输到apicoplast的管道。我们的结果讨论有关的apicoplast蛋白质运输机制的性质。

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