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Reticulocyte-associated protein export machinery and cytoadherence in blood stage malaria parasites.

机译:网状细胞相关蛋白输出机制和血液阶段疟原虫的细胞粘附。

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摘要

Malaria parasites replicating inside red blood cells export several proteins into the erythrocyte cytosol that modify the host cell to facilitate parasite growth and sequestration. Protein export pathways in Plasmodium falciparum utilize parasite-derived structures in the host cytosol including Maurer's clefts, small vesicles and a tubulovesicular membrane network. Studies on exported proteins, trafficking pathways and cytoadherence in reticulocyte-restricted parasites such as P. vivax are limited. Using the P. yoelii 17X rodent model, we performed a proteomic analysis of infected reticulocyte membrane fraction and identified Plasmodium proteins potentially involved in protein trafficking and cytoadherence including PyExp2 (PY05892), pyst-a (PY04481, PY07631), Py14-3-3 (PY01841), PyEnolase (PY06644), hypothetical protein (PY07648) and a putative adhesin (PY00631). Our initial studies were focused on P. yoelii Exported protein-2 (PyExp2). Immunofluorescence studies showed that PyExp2 was localized to the parasitophorous vacuolar membrane (PVM) but also exported into the host cytoplasm on membrane-bound vesicles budding from the PVM. This is in contrast to P. falciparum where PfExp2 was identified as part of the PTEX translocon exclusively localized to the PVM. Co-localization studies showed that two exported proteins, PY04481 (pyst-a) and PY06203 (PypAg-1), were carried within the PyExp2 positive vesicles indicative of vesicle-mediated transport. PyExp2 positive vesicles were primarily observed in CD71+ reticulocytes but not in mature RBCs infected with P. yoelii, P. berghei or P. falciparum. In transgenic P. yoelii 17X parasites, the association of hemagglutinin-tagged PyExp2 with the PVM and cytosolic vesicles was retained but the pyexp2 gene was refractory to deletion. Our data indicate that in addition to its role as a component of PTEX, Exp2 delineates a distinct vesicular protein trafficking machinery in Plasmodium infected reticulocytes. Preliminary studies showed that the endothelial receptor CD36 bound strongly to 30-32 kDa protein(s) in the P. yoelii 17X infected reticulocyte membrane fraction. Of the Plasmodium proteins identified from the membrane fraction, PY00631, a highly charged conserved protein, bound to CD36. Transgenic P. yoelii 17X parasites expressing a 6xHis-tagged PY00631 was generated to purify the native protein. PY00631 was localized to the host reticulocyte membrane during the schizont stages, strongly supporting a role in the cytoadherence of mature blood stages.
机译:在红细胞内复制的疟原虫将几种蛋白质输出到红细胞胞质溶胶中,从而修饰宿主细胞以促进寄生虫的生长和隔离。恶性疟原虫中的蛋白质输出途径利用宿主细胞质中的寄生虫衍生结构,包括毛勒氏裂,小囊泡和微管膜网络。在网状细胞受限的寄生虫(例如间日疟原虫)中输出蛋白质,运输途径和细胞粘附的研究非常有限。使用约氏疟原虫17X啮齿动物模型,我们对感染的网织红细胞膜级分进行了蛋白质组学分析,并鉴定了可能与蛋白质运输和细胞粘附有关的疟原虫蛋白质,包括PyExp2(PY05892),pyst-a(PY04481,PY07631),Py14-3-3 (PY01841),PyEnolase(PY06644),假设蛋白(PY07648)和推定的粘附素(PY00631)。我们最初的研究集中在约氏疟原虫出口蛋白2(PyExp2)。免疫荧光研究表明,PyExp2定位于寄生虫的液泡膜(PVM),但也从PVM萌发的膜结合囊泡中输出到宿主细胞质中。这与恶性疟原虫相反,在恶性疟原虫中,PfExp2被确定为专门定位于PVM的PTEX转录子的一部分。共定位研究表明,两种输出蛋白PY04481(pyst-a)和PY06203(PypAg-1)携带在PyExp2阳性囊泡中,表明囊泡介导的转运。 PyExp2阳性囊泡主要在CD71 +网织细胞中观察到,但在感染了约氏疟原虫,伯氏疟原虫或恶性疟原虫的成熟RBC中未观察到。在转基因约氏疟原虫17X寄生虫中,血凝素标记的PyExp2与PVM和胞浆囊泡的关联得以保留,但pyexp2基因难以缺失。我们的数据表明,除了它作为PTEX的成分,Exp2还描述了疟原虫感染的网状细胞中独特的囊泡蛋白运输机制。初步研究表明,内皮受体CD36与yoelii 17X感染的网织红细胞膜级分中的30-32 kDa蛋白牢固结合。从膜级分鉴定出的疟原虫蛋白质中,PY00631是一种高度带电的保守蛋白质,与CD36结合。产生表达6xHis标签的PY00631的转基因约氏疟原虫17X寄生虫以纯化天然蛋白。 PY00631在裂殖体阶段定位于宿主网织红细胞膜,强烈支持成熟血液阶段的细胞粘附作用。

著录项

  • 作者

    Meibalan, Elamaran.;

  • 作者单位

    Drexel University College of Medicine.;

  • 授予单位 Drexel University College of Medicine.;
  • 学科 Biology Microbiology.;Biology Cell.;Biology Molecular.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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