首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Gene replacement in mice reveals that the heavily phosphorylated tail of neurofilament heavy subunit does not affect axonal caliber or the transit of cargoes in slow axonal transport
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Gene replacement in mice reveals that the heavily phosphorylated tail of neurofilament heavy subunit does not affect axonal caliber or the transit of cargoes in slow axonal transport

机译:小鼠中的基因置换揭示了神经丝重亚基的重磷酸化尾部不会影响轴突的口径或缓慢轴突运输中货物的转运

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摘要

The COOH-terminal tail of mammalian neurofilament heavy subunit (NF-H), the largest neurofilament subunit, contains 44-51 lysine–serine–proline repeats that are nearly stoichiometrically phosphorylated after assembly into neurofilaments in axons. Phosphorylation of these repeats has been implicated in promotion of radial growth of axons, control of nearest neighbor distances between neurofilaments or from neurofilaments to other structural components in axons, and as a determinant of slow axonal transport. These roles have now been tested through analysis of mice in which the NF-H gene was replaced by one deleted in the NF-H tail. Loss of the NF-H tail and all of its phosphorylation sites does not affect the number of neurofilaments, alter the ratios of the three neurofilament subunits, or affect the number of microtubules in axons. Additionally, it does not reduce interfilament spacing of most neurofilaments, the speed of action potential propagation, or mature cross-sectional areas of large motor or sensory axons, although its absence slows the speed of acquisition of normal diameters. Most surprisingly, at least in optic nerve axons, loss of the NF-H tail does not affect the rate of transport of neurofilament subunits.
机译:哺乳动物神经丝重亚基(NF-H)的COOH末端尾巴是最大的神经丝亚基,包含44-51赖氨酸-丝氨酸-脯氨酸重复序列,这些重复序列在组装成轴突的神经丝后几乎被化学计量磷酸化。这些重复的磷酸化与促进轴突的径向生长,控制神经丝之间或从神经丝到轴突中其他结构成分的最近邻居距离有关,并且是轴突运输缓慢的决定因素。现在已经通过对小鼠进行了分析,这些小鼠的NF-H基因被NF-H尾部缺失的一个小鼠取代。 NF-H尾巴及其所有磷酸化位点的丢失不会影响神经丝的数量,不会改变三个神经丝亚基的比例,也不会影响轴突中微管的数量。此外,它的存在不降低大多数神经丝的丝间距,动作电位传播的速度或大型运动或感觉轴突的成熟横截面积,尽管其缺乏会减慢正常直径的采集速度。最令人惊奇的是,至少在视神经轴突中,NF-H尾巴的丢失不影响神经丝亚基的转运速率。

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