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首页> 外文期刊>Nature >Flagellar motility is required for the viability of the bloodstream trypanosome.
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Flagellar motility is required for the viability of the bloodstream trypanosome.

机译:鞭毛活力是血锥虫活力的必需条件。

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The 9 + 2 microtubule axoneme of flagella and cilia represents one of the most iconic structures built by eukaryotic cells and organisms. Both unity and diversity are present among cilia and flagella on the evolutionary as well as the developmental scale. Some cilia are motile, whereas others function as sensory organelles and can variously possess 9 + 2 and 9 + 0 axonemes and other associated structures. How such unity and diversity are reflected in molecular repertoires is unclear. The flagellated protozoan parasite Trypanosoma brucei is endemic in sub-Saharan Africa, causing devastating disease in humans and other animals. There is little hope of a vaccine for African sleeping sickness and a desperate need for modern drug therapies. Here we present a detailed proteomic analysis of the trypanosome flagellum. RNA interference (RNAi)-based interrogation of this proteome provides functional insights into human ciliary diseases and establishes that flagellar function is essential to the bloodstream-form trypanosome. We show that RNAi-mediated ablation of various proteins identified in the trypanosome flagellar proteome leads to a rapid and marked failure of cytokinesis in bloodstream-form (but not procyclic insect-form) trypanosomes, suggesting that impairment of flagellar function may provide a method of disease control. A postgenomic meta-analysis, comparing the evolutionarily ancient trypanosome with other eukaryotes including humans, identifies numerous trypanosome-specific flagellar proteins, suggesting new avenues for selective intervention.
机译:鞭毛和纤毛的9 + 2微管轴突代表由真核细胞和生物体建立的最具标志性的结构之一。纤毛和鞭毛在进化和发展规模上都存在统一性和多样性。一些纤毛运动,而其他纤毛则作为感觉细胞器,可以具有9 + 2和9 + 0的轴突以及其他相关结构。目前尚不清楚在分子库中如何反映这种统一性和多样性。鞭毛的原生动物寄生虫布鲁氏锥虫在撒哈拉以南非洲流行,造成人类和其他动物的毁灭性疾病。用于非洲昏睡病的疫苗和对现代药物疗法的迫切需求几乎没有希望。在这里,我们提出了锥虫鞭毛的详细蛋白质组学分析。基于RNA干扰(RNAi)的此蛋白质组的询问提供了人类睫状疾病的功能见解,并确定鞭毛功能对于血流形式的锥虫至关重要。我们显示RNAi介导的锥虫鞭毛蛋白质组中鉴定的各种蛋白质的消融导致血流形式(而不是前环昆虫形式)锥虫的胞质分裂迅速而明显的失败,这表明鞭毛功能受损可能提供了一种方法疾病控制。基因组后荟萃分析将进化上古老的锥虫与包括人在内的其他真核生物进行了比较,鉴定出许多锥虫特有的鞭毛蛋白,为选择性干预提供了新途径。

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