贾第鞭毛虫的微管细胞器。

3区 医学 Q1 Immunology and Microbiology
Advances in Parasitology Pub Date : 2020-01-01 Epub Date: 2020-02-05 DOI:10.1016/bs.apar.2019.11.001
Kari D Hagen, Shane G McInally, Nicholas D Hilton, Scott C Dawson
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引用次数: 18

摘要

兰氏贾第鞭毛虫是一种广泛分布的寄生原生生物,具有复杂的MT细胞骨架,对运动、附着、有丝分裂和细胞分裂以及在感染性囊肿和鞭毛滋养体两个生命周期阶段之间的过渡至关重要。贾第鞭虫滋养体具有高度动态和高度稳定的MT细胞器,包括腹盘、八根鞭毛、中间体和阜。腹盘是一种精细的MT细胞器,对于寄生虫附着在肠绒毛上以避免蠕动至关重要。贾第鞭毛的四对鞭毛使游泳运动,也可能促进依恋。它们保持在不同的平衡长度,并以其长细胞质区和新颖的轴突外结构为特征。贾第鞭毛虫特有的中位体和细胞器的功能仍然不太清楚。除了保守的MT相关蛋白外,基因组中还富含锚定蛋白、NEKs和与MT细胞骨架相关的新型假设蛋白。高分辨率超微结构成像和目前与贾第鞭毛虫MT细胞骨架相关的300多种蛋白质的清单为寄生虫附着于宿主、运动、细胞分裂和胞囊/胞囊的未来机制分析奠定了基础。贾第鞭毛虫独特的MT细胞器证明了MT聚合物产生复杂结构的能力,这些结构在形式和功能上都是多样的。因此,除了与发病机制相关外,贾第鞭毛虫MT细胞骨架的研究还为基本的细胞骨架生物学和细胞进化提供了信息。随着新的分子遗传工具的可用性来破坏基因功能,我们预计贾第鞭毛虫细胞骨架发现的新时代。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microtubule organelles in Giardia.

Giardia lamblia is a widespread parasitic protist with a complex MT cytoskeleton that is critical for motility, attachment, mitosis and cell division, and transitions between its two life cycle stages-the infectious cyst and flagellated trophozoite. Giardia trophozoites have both highly dynamic and highly stable MT organelles, including the ventral disc, eight flagella, the median body and the funis. The ventral disc, an elaborate MT organelle, is essential for the parasite's attachment to the intestinal villi to avoid peristalsis. Giardia's four flagellar pairs enable swimming motility and may also promote attachment. They are maintained at different equilibrium lengths and are distinguished by their long cytoplasmic regions and novel extra-axonemal structures. The functions of the median body and funis, MT organelles unique to Giardia, remain less understood. In addition to conserved MT-associated proteins, the genome is enriched in ankyrins, NEKs, and novel hypothetical proteins that also associate with the MT cytoskeleton. High-resolution ultrastructural imaging and a current inventory of more than 300 proteins associated with Giardia's MT cytoskeleton lay the groundwork for future mechanistic analyses of parasite attachment to the host, motility, cell division, and encystation/excystation. Giardia's unique MT organelles exemplify the capacity of MT polymers to generate intricate structures that are diverse in both form and function. Thus, beyond its relevance to pathogenesis, the study of Giardia's MT cytoskeleton informs basic cytoskeletal biology and cellular evolution. With the availability of new molecular genetic tools to disrupt gene function, we anticipate a new era of cytoskeletal discovery in Giardia.

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来源期刊
Advances in Parasitology
Advances in Parasitology 医学-寄生虫学
CiteScore
9.00
自引率
0.00%
发文量
28
审稿时长
>12 weeks
期刊介绍: Advances in Parasitology is recognised as a leading review serial which is consistently well placed in terms of impact factor and citations. Major reviews on all aspects of medical, veterinary and wild-life parasitology are considered. The journal provides an outlet for authoritative reviews from experts in the field. While emphasis is given to modern molecular approaches contributions across all disciplines are encouraged including traditional areas such as ecology and taxonomy. Eclectic volumes are supplemented by thematic volumes dedicated to a particular topic of recognised interest and importance.
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