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扩展显微镜为了解疟疾寄生虫的细胞骨架提供了新的视角,包括锥状体的保守性。

Expansion microscopy provides new insights into the cytoskeleton of malaria parasites including the conservation of a conoid.

机构信息

University of Geneva, Department of Cell Biology, Faculty of Science, Geneva, Switzerland.

University of Geneva, Department of Microbiology and Molecular Medicine, Faculty of Medicine, Geneva, Switzerland.

出版信息

PLoS Biol. 2021 Mar 11;19(3):e3001020. doi: 10.1371/journal.pbio.3001020. eCollection 2021 Mar.

Abstract

Malaria is caused by unicellular Plasmodium parasites. Plasmodium relies on diverse microtubule cytoskeletal structures for its reproduction, multiplication, and dissemination. Due to the small size of this parasite, its cytoskeleton has been primarily observable by electron microscopy (EM). Here, we demonstrate that the nanoscale cytoskeleton organisation is within reach using ultrastructure expansion microscopy (U-ExM). In developing microgametocytes, U-ExM allows monitoring the dynamic assembly of axonemes and concomitant tubulin polyglutamylation in whole cells. In the invasive merozoite and ookinete forms, U-ExM unveils the diversity across Plasmodium stages and species of the subpellicular microtubule arrays that confer cell rigidity. In ookinetes, we additionally identify an apical tubulin ring (ATR) that colocalises with markers of the conoid in related apicomplexan parasites. This tubulin-containing structure was presumed to be lost in Plasmodium despite its crucial role in motility and invasion in other apicomplexans. Here, U-ExM reveals that a divergent and considerably reduced form of the conoid is actually conserved in Plasmodium species.

摘要

疟疾是由单细胞疟原虫引起的。疟原虫依靠多种微管细胞骨架结构进行繁殖、增殖和传播。由于这种寄生虫体积小,其细胞骨架主要通过电子显微镜 (EM) 观察。在这里,我们证明使用超微结构扩展显微镜 (U-ExM) 可以实现纳米级细胞骨架组织的观察。在发育中的小配子体中,U-ExM 允许在整个细胞中监测轴丝的动态组装和伴随的微管蛋白多聚谷氨酸化。在入侵的裂殖子和动合子形式中,U-ExM 揭示了疟原虫各阶段和种属的多样性,这些种属的皮层微管阵列赋予了细胞刚性。在动合子中,我们还鉴定出一个顶端微管环 (ATR),它与相关顶复门寄生虫中的锥形体标记物共定位。尽管在其他顶复门寄生虫中,这种微管蛋白包含的结构对于运动和入侵至关重要,但在疟原虫中,人们认为它已经丢失。在这里,U-ExM 表明锥形体的一种不同且显著减少的形式实际上在疟原虫种属中是保守的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b59/7951857/15adeaff2955/pbio.3001020.g001.jpg

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