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- Abstract Cilia are located on almost all cell types of the human body, the basic structure includes a microtubule cytoskeleton, the axoneme, and the surrounding ciliary membrane. 摘要 纤毛广泛分布于人体多种类型细胞表面,是一种结构复杂、功能精细的细胞器,其基本结构包括轴丝和外被的纤毛膜。
- Microtubules cytoskeleton 茎尖细胞
- Cytoskeleton of a cultured epithelial cell. Microtubules are shown in green and DNA is shown in blue. 处于有丝分裂间期的动物上皮细胞。绿色为微丝,红色为肌动蛋白,蓝色为染色质,中心点复制成两个。
- Abstract: Microtubules, one of the primary components and function units in cytoskeleton system, are filled with water. 摘 要:微管是细胞骨架中的重要组成部分和功能组件,其中充满了液体水。
- The assembly and disassembly of cytoskeleton especially the microtubules and actin filaments provide the driving force for cell movements. 在此过程中,细胞骨架蛋白微丝和微管的动态变化提供了细胞运动的主要动力。
- The assembly and disassembly of cytoskeleton especially the microtubules and acfin filaments provide the driving force for cell movements. 在此过程中,细胞骨架蛋白微丝和微管的动态变化提供了细胞运动的主要动力。
- Cytoskeleton of a cultured epithelial cell. Microtubules are shown in green, actin is shown in red and DNA is in blue.Image by Steve Rogers. 人工培养的动物上皮细胞,目前处于分裂间期。绿色为微丝,红色为肌动蛋白,蓝色为DNA(染色质)。
- The cytoskeleton forms a network within the cell. 细胞骨架构成细胞内的网络。
- NRP/B locates in nuclear cytoskeleton. 例如,研究发现NRP/B可以与核骨架结构作用,并且NRP/B受到p53的转录调控,进而影响ERK/MAPK途径和AKT途径。
- As the most rigid cytoskeletal filaments, microtubules bear compressive forces in living cells, balancing the tensile forces within the cytoskeleton to maintain the cell shape. 细胞的力学性质很大程度上由细胞骨架决定,细胞骨架是由微管、中间丝和肌动蛋白丝这三种主要的蛋白丝构成的自组织网状结构。
- Although the cytoskeleton provides some stability to cells its microtubules and filaments and their associated proteins enable cells to move by creeping or gliding. 尽管细胞骨架提供了细胞的某些稳定性,微丝,微管及相关蛋白能使细胞爬行或滑动。
- A transmembrane function of microtubules has to be considered. 必须考虑微管横跨膜的功能。
- Microtubules have dominated our think about the mitotic mechanisms. 微管促使我的思考有丝分裂的机制。
- The protein out of which microtubules are made is called tubulin. 构成微管的蛋白质叫做微管蛋白。
- Disruption of the cytoskeleton has implication in the endocytosis. 破坏细胞内的微管结构据报道可以阻断肾上腺嗜铬细胞的钙离子依赖的胞饮。
- After mitosis, these microtubules de-polymerize into tubulin again. 有丝分裂后,这些微管又重新解聚成微管蛋白。
- The end tail, that is flagellum, contain 9+2 array of microtubules. 末段细长;轴丝为典型的“9+2”微管结构.
- It blocks tumor cells by stabilizing and polymerizing microtubules. 其作用是使微管稳定和发生多聚化从而抑制瘤细胞。
- Research Advances about the Role of Microtubule Cytoskeleton in Plant Acclimation to Low-temperature Stress 微管骨架在植物适应低温胁迫中的功能研究进展
- Flow-mediated regulation of endothelial cell microtubule cytoskeleton in a coculture system 切应力对与血管平滑肌细胞联合培养的内皮细胞微管骨架重构的影响