Department of Microbiology, UC Davis, CA 95616, USA.
Cell Microbiol. 2010 May 1;12(5):588-98. doi: 10.1111/j.1462-5822.2010.01458.x. Epub 2010 Feb 24.
Giardia intestinalis is a zoonotic, parasitic protist with a complex microtubule cytoskeleton critical for motility, attachment, intracellular transport, cell division and transitioning between its two life cycle stages - the cyst and the trophozoite. This review focuses on the structures of the primary elements of the microtubule cytoskeleton and cytoskeletal dynamics throughout this complex giardial life cycle. The giardial cytoskeleton has both highly dynamic elements and more stable MT structures, including several novel structures like the ventral disc that change conformation via unknown mechanisms. While our knowledge of the giardial cytoskeleton is primarily cytological, the completed Giardia genome and recently developed reverse genetic tools affords an opportunity to uncover the mechanisms of Giardia's cytoskeletal dynamics. Fundamental areas of giardial cytoskeletal biology remain to be explored, including high resolution imaging and compositional characterization of cytoskeletal structures required for elucidating the molecular mechanisms of cytoskeletal functioning.
肠道贾第虫是一种动物源寄生虫,具有复杂的微管细胞骨架,对于运动、附着、细胞内运输、细胞分裂以及其两个生命周期阶段——囊体和滋养体之间的转化至关重要。本综述重点介绍了微管细胞骨架的主要元件的结构以及整个复杂的贾第虫生命周期中的细胞骨架动力学。贾第虫的细胞骨架既有高度动态的元件,也有更稳定的 MT 结构,包括几个通过未知机制改变构象的新结构,如腹盘。虽然我们对贾第虫细胞骨架的了解主要是细胞学方面的,但完整的贾第虫基因组和最近开发的反向遗传工具为揭示贾第虫细胞骨架动力学的机制提供了机会。贾第虫细胞骨架生物学的一些基本领域仍有待探索,包括用于阐明细胞骨架功能分子机制的细胞骨架结构的高分辨率成像和组成特征。