Koonce M P, Euteneuer U, Schliwa M
Department of Zoology, University of California, Berkeley 94720.
J Cell Sci Suppl. 1986;5:145-59. doi: 10.1242/jcs.1986.supplement_5.9.
Reticulomyxa is a large multinucleated freshwater protozoan that provides a new model system in which to study intracellular transport and cytoskeletal dynamics. Within the cell body and reticulopodial network, rapid, visually striking saltatory organelle motility as well as bulk cytoplasmic streaming can be readily observed. In addition, the cytoskeletal elements within these strands undergo dynamic splaying and fusing rearrangements, which can be visualized by video-enhanced light microscopy. A reactivatable lysed cell model has been developed that appears to preserve, and therefore permits examination of, these three forms of motility in a more controlled environment. Individual organelle movements are microtubule-based and have similarities to, but also differences from, the recently described kinesin-based transport. This lysed cell model can be further manipulated to provide native, ordered, completely exposed networks of either microtubules or microfilaments, or a combination of both, and thus may serve as a versatile motility assay system in which to examine the movement of exogenously added isolated organelles or latex beads.
网柱黏菌是一种大型多核淡水原生动物,它为研究细胞内运输和细胞骨架动力学提供了一个新的模型系统。在细胞体和网状伪足网络内,可以很容易地观察到快速、视觉上引人注目的跳跃式细胞器运动以及大量的细胞质流动。此外,这些细丝内的细胞骨架成分会发生动态展开和融合重排,这可以通过视频增强光学显微镜观察到。已经开发出一种可重新激活的裂解细胞模型,该模型似乎保留了这三种运动形式,因此可以在更可控的环境中对其进行研究。单个细胞器的运动基于微管,与最近描述的基于驱动蛋白的运输有相似之处,但也有不同之处。这个裂解细胞模型可以进一步操作,以提供天然、有序、完全暴露的微管或微丝网络,或两者的组合,因此可以作为一个通用的运动分析系统,用于检查外源添加的分离细胞器或乳胶珠的运动。