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Intraflagellar transport (IFT) during assembly and disassembly of Chlamydomonas flagella

机译:衣藻鞭毛组装和拆卸过程中的鞭毛内运输(IFT)

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Intraflagellar transport (IFT) of particles along flagellar microtubules is required for the assembly and maintenance of eukaryotic flagella and cilia. In Chlamydomonas , anterograde and retrograde particles viewed by light microscopy average 0.12-μm and 0.06-μm diameter, respectively. Examination of IFT particle structure in growing flagella by electron microscopy revealed similar size aggregates composed of small particles linked to each other and to the membrane and microtubules. To determine the relationship between the number of particles and flagellar length, the rate and frequency of IFT particle movement was measured in nongrowing, growing, and shortening flagella. In all flagella, anterograde and retrograde IFT averaged 1.9 μm/s and 2.7 μm/s, respectively, but retrograde IFT was significantly slower in flagella shorter than 4 μm. The number of flagellar IFT particles was not fixed, but depended on flagellar length. Pauses in IFT particle entry into flagella suggest the presence of a periodic “gate” that permits up to 4 particles/s to enter a flagellum.
机译:沿着鞭毛微管的颗粒鞭毛内部运输(IFT)是真核鞭毛和纤毛的组装和维持所必需的。在衣藻中,通过光学显微镜观察到的顺行和逆行颗粒的平均直径分别为0.12-μm和0.06-μm。通过电子显微镜检查生长中鞭毛的IFT颗粒结构,发现大小相似的聚集体由相互连接的小颗粒以及与膜和微管的连接组成。为了确定颗粒数量与鞭毛长度之间的关系,在不生长,生长和缩短的鞭毛中测量了IFT颗粒运动的速率和频率。在所有鞭毛中,顺行和逆行IFT分别平均为1.9μm/ s和2.7μm/ s,但鞭毛短于4μm时,逆行IFT明显较慢。鞭毛IFT粒子的数量不是固定的,而是取决于鞭毛的长度。 IFT颗粒进入鞭毛的暂停表明存在周期性“门”,该“门”允许高达4颗粒/秒的速度进入鞭毛。

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