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PNAS Plus: Cryo-electron tomography reveals conserved features of doublet microtubules in flagella

机译:PNAS Plus:低温电子断层扫描揭示鞭毛中双峰微管的保守特征

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摘要

The axoneme forms the essential and conserved core of cilia and flagella. We have used cryo-electron tomography of Chlamydomonas and sea urchin flagella to answer long-standing questions and to provide information about the structure of axonemal doublet microtubules (DMTs). Solving an ongoing controversy, we show that B-tubules of DMTs contain exactly 10 protofilaments (PFs) and that the inner junction (IJ) and outer junction between the A- and B-tubules are fundamentally different. The outer junction, crucial for the initiation of doublet formation, appears to be formed by close interactions between the tubulin subunits of three PFs with unusual tubulin interfaces; other investigators have reported that this junction is weakened by mutations affecting posttranslational modifications of tubulin. The IJ consists of an axially periodic ladder-like structure connecting tubulin PFs of the A- and B-tubules. The recently discovered microtubule inner proteins (MIPs) on the inside of the A- and B-tubules are more complex than previously thought. They are composed of alternating small and large subunits with periodicities of 16 and/or 48 nm. MIP3 forms arches connecting B-tubule PFs, contrary to an earlier report that MIP3 forms the IJ. Finally, the “beak” structures within the B-tubules of Chlamydomonas DMT1, DMT5, and DMT6 are clearly composed of a longitudinal band of proteins repeating with a periodicity of 16 nm. These findings, discussed in relation to genetic and biochemical data, provide a critical foundation for future work on the molecular assembly and stability of the axoneme, as well as its function in motility and sensory transduction.
机译:轴突形成纤毛和鞭毛的基本和保守的核心。我们已经使用了衣藻和海胆鞭毛的冷冻电子断层扫描来回答长期存在的问题,并提供有关轴突双线微管(DMT)结构的信息。解决了一个持续存在的争议,我们证明DMT的B小管正好包含10个原型丝(PF),并且A和B小管之间的内部连接(IJ)和外部连接是根本不同的。对于双链体形成的启动至关重要的外部连接似乎是由三个具有异常微管蛋白界面的PF的微管蛋白亚基之间的紧密相互作用形成的。其他研究者报道,这种连接被影响微管蛋白翻译后修饰的突变所削弱。 IJ由连接A管和B管的微管蛋白PF的轴向周期性梯状结构组成。最近发现的A管和B管内部的微管内部蛋白(MIP)比以前认为的要复杂。它们由周期为16和/或48 nm的交替的大小亚基组成。 MIP3形成了连接B小管PF的拱门,这与之前的MIP3形成IJ的报道相反。最后,衣藻DMT1,DMT5和DMT6的B小管内的“喙”结构显然是由蛋白质的纵向带组成的,其重复周期为16 nm。这些发现,与遗传和生化数据有关,为今后研究轴索蛋白的分子组装和稳定性以及其在动力和感觉传导中的作用提供了重要基础。

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