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复杂内共生体 II:顶复门寄生虫的非光合质体(顶质体)及其综合代谢。

Complex Endosymbiosis II: The Nonphotosynthetic Plastid of Apicomplexa Parasites (The Apicoplast) and Its Integrated Metabolism.

机构信息

ApicoLipid Team, Institute for Advanced Biosciences, UMR5309, Centre National de la Recherche Scientifique, Université Grenoble Alpes, U1209, Institut National de la Santé et de la Recherche Médicale, Grenoble, France.

ApicoLipid Team, Institute for Advanced Biosciences, CNRS UMR5309, Université Grenoble Alpes, INSERM U1209, Grenoble, France.

出版信息

Methods Mol Biol. 2024;2776:43-62. doi: 10.1007/978-1-0716-3726-5_3.

Abstract

Chloroplasts are essential organelles that are responsible for photosynthesis in a wide range of organisms that have colonized all biotopes on Earth such as plants and unicellular algae. Interestingly, a secondary endosymbiotic event of a red algal ancestor gave rise to a group of organisms that have adopted an obligate parasitic lifestyle named Apicomplexa parasites. Apicomplexa parasites are some of the most widespread and poorly controlled pathogens in the world. These infectious agents are responsible for major human diseases such as toxoplasmosis, caused by Toxoplasma gondii, and malaria, caused by Plasmodium spp. Most of these parasites harbor this relict plastid named the apicoplast, which is essential for parasite survival. The apicoplast has lost photosynthetic capacities but is metabolically similar to plant and algal chloroplasts. The apicoplast is considered a novel and important drug target against Apicomplexa parasites. This chapter focuses on the apicoplast of apicomplexa parasites, its maintenance, and its metabolic pathways.

摘要

叶绿体是一种重要的细胞器,负责地球上各种生物的光合作用,这些生物包括植物和单细胞藻类等。有趣的是,红藻祖先的二次内共生事件产生了一组生物体,它们采取了一种专性寄生的生活方式,被称为顶复门寄生虫。顶复门寄生虫是世界上分布最广、控制最差的病原体之一。这些传染性病原体导致了一些主要的人类疾病,例如由刚地弓形虫引起的弓形体病和由疟原虫属引起的疟疾。这些寄生虫中的大多数都拥有一个名为顶质体的遗留叶绿体,这对寄生虫的生存是必不可少的。顶质体已经失去了光合作用的能力,但在代谢上与植物和藻类叶绿体相似。顶质体被认为是针对顶复门寄生虫的一个新的重要药物靶点。本章重点介绍顶复门寄生虫的顶质体、其维持和代谢途径。

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