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锥虫内吞外排细胞器的生物发生是由细胞骨架介导的。

Biogenesis of the trypanosome endo-exocytotic organelle is cytoskeleton mediated.

作者信息

Bonhivers Mélanie, Nowacki Sophie, Landrein Nicolas, Robinson Derrick R

机构信息

Microbiologie Cellulaire et Moléculaire et Pathogénicité, UMR-CNRS 5234, University Bordeaux 2, Bordeaux, Cedex France.

出版信息

PLoS Biol. 2008 May 6;6(5):e105. doi: 10.1371/journal.pbio.0060105.

Abstract

Trypanosoma brucei is a protozoan parasite that is used as a model organism to study such biological phenomena as gene expression, protein trafficking, and cytoskeletal biogenesis. In T. brucei, endocytosis and exocytosis occur exclusively through a sequestered organelle called the flagellar pocket (FP), an invagination of the pellicular membrane. The pocket is the sole site for specific receptors thus maintaining them inaccessible to components of the innate immune system of the mammalian host. The FP is also responsible for the sorting of protective parasite glycoproteins targeted to, or recycling from, the pellicular membrane, and for the removal of host antibodies from the cell surface. Here, we describe the first characterisation of a flagellar pocket cytoskeletal protein, BILBO1. BILBO1 functions to form a cytoskeleton framework upon which the FP is made and which is also required and essential for FP biogenesis and cell survival. Remarkably, RNA interference (RNAi)-mediated ablation of BILBO1 in insect procyclic-form parasites prevents FP biogenesis and induces vesicle accumulation, Golgi swelling, the aberrant repositioning of the new flagellum, and cell death. Cultured bloodstream-form parasites are also nonviable when subjected to BILBO1 RNAi. These results provide the first molecular evidence for cytoskeletally mediated FP biogenesis.

摘要

布氏锥虫是一种原生动物寄生虫,被用作模式生物来研究诸如基因表达、蛋白质运输和细胞骨架生物发生等生物学现象。在布氏锥虫中,内吞作用和外排作用仅通过一个被隔离的细胞器——鞭毛袋(FP)进行,鞭毛袋是表膜的内陷结构。该袋是特异性受体的唯一位点,从而使它们无法接触哺乳动物宿主先天免疫系统的成分。鞭毛袋还负责对靶向表膜或从表膜循环利用的保护性寄生虫糖蛋白进行分选,并负责从细胞表面清除宿主抗体。在此,我们描述了一种鞭毛袋细胞骨架蛋白BILBO1的首次特征分析。BILBO1的功能是形成一个细胞骨架框架,在此框架上形成鞭毛袋,并且它也是鞭毛袋生物发生和细胞存活所必需的。值得注意的是,在昆虫前循环型寄生虫中,RNA干扰(RNAi)介导的BILBO1缺失会阻止鞭毛袋的生物发生,并诱导囊泡积累、高尔基体肿胀、新鞭毛的异常重新定位以及细胞死亡。当对培养的血流型寄生虫进行BILBO1 RNAi处理时,它们也无法存活。这些结果为细胞骨架介导的鞭毛袋生物发生提供了首个分子证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f507/2430896/e897a6311f2c/pbio.0060105.g001.jpg

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