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弓形虫中具有类似植物液泡组成和功能的新型细胞器的特征。

Characterization of a novel organelle in Toxoplasma gondii with similar composition and function to the plant vacuole.

机构信息

Center for Tropical and Emerging Global Diseases and Department of Cellular Biology, University of Georgia, Athens, GA 30602, USA.

出版信息

Mol Microbiol. 2010 Jun;76(6):1358-75. doi: 10.1111/j.1365-2958.2010.07165.x. Epub 2010 Apr 14.

Abstract

Toxoplasma gondii belongs to the phylum Apicomplexa and is an important cause of congenital disease and infection in immunocompromised patients. Like most apicomplexans, T. gondii possesses several plant-like features, such as the chloroplast-like organelle, the apicoplast. We describe and characterize a novel organelle in T. gondii tachyzoites, which is visible by light microscopy and possesses a broad similarity to the plant vacuole. Electron tomography shows the interaction of this vacuole with other organelles. The presence of a plant-like vacuolar proton pyrophosphatase (TgVP1), a vacuolar proton ATPase, a cathepsin L-like protease (TgCPL), an aquaporin (TgAQP1), as well as Ca(2+)/H(+) and Na(+)/H(+) exchange activities, supports similarity to the plant vacuole. Biochemical characterization of TgVP1 in enriched fractions shows a functional similarity to the respective plant enzyme. The organelle is a Ca(2+) store and appears to have protective effects against salt stress potentially linked to its sodium transport activity. In intracellular parasites, the organelle fragments, with some markers colocalizing with the late endosomal marker, Rab7, suggesting its involvement with the endocytic pathway. Studies on the characterization of this novel organelle will be relevant to the identification of novel targets for chemotherapy against T. gondii and other apicomplexan parasites as well.

摘要

刚地弓形虫属于肉足鞭毛门顶复动物亚门,是一种重要的免疫功能低下患者的先天性疾病和感染病原体。与大多数肉足鞭毛虫一样,刚地弓形虫具有几种植物样特征,如类叶绿体器官,即顶质体。我们描述并鉴定了刚地弓形虫速殖子中的一种新型细胞器,该细胞器在光镜下可见,与植物液泡具有广泛的相似性。电子断层扫描显示该液泡与其他细胞器相互作用。该液泡存在植物样液泡质子焦磷酸酶(TgVP1)、液泡质子 ATP 酶、组织蛋白酶 L 样蛋白酶(TgCPL)、水通道蛋白(TgAQP1)、Ca2+/H+和 Na+/H+交换活性,支持其与植物液泡的相似性。在富集的组分中对 TgVP1 的生化特性进行分析表明,其与相应的植物酶具有功能相似性。该细胞器是钙库,并且似乎对盐胁迫具有保护作用,可能与其钠转运活性有关。在细胞内寄生虫中,细胞器片段与一些标记物与晚期内体标记物 Rab7 共定位,表明其参与了内吞途径。对该新型细胞器的研究将有助于确定针对刚地弓形虫和其他顶复门寄生虫的新型化疗靶点。

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