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首页> 外文期刊>Journal of cell biology >Neurofilament subunit NF-H modulates axonal diameter by selectively slowing neurofilament transport.
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Neurofilament subunit NF-H modulates axonal diameter by selectively slowing neurofilament transport.

机译:神经丝亚单位NF-H通过选择性减慢神经丝运输来调节轴突直径。

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摘要

To examine the mechanism through which neurofilaments regulate the caliber of myelinated axons and to test how aberrant accumulations of neurofilaments cause motor neuron disease, mice have been constructed that express wild-type mouse NF-H up to 4.5 times the normal level. Small increases in NF-H expression lead to increased total neurofilament content and larger myelinated axons, whereas larger increases in NF-H decrease total neurofilament content and strongly inhibit radial growth. Increasing NF-H expression selectively slow neurofilament transport into and along axons, resulting in severe perikaryal accumulation of neurofilaments and proximal axonal swellings in motor neurons. Unlike the situation in transgenic mice expressing modest levels of human NF-H (Cote, F., J.F. Collard, and J.P. Julien. 1993. Cell. 73:35-46), even 4.5 times the normal level of wild-type mouse NF-H does not result in any overt phenotype or enhanced motor neuron degeneration or loss. Rather, motor neurons are extraordinarily tolerant of wild-type murine NF-H, whereas wild-type human NF-H, which differs from the mouse homolog at 160 residue positions, mediates motor neuron disease in mice by acting as an aberrant, mutant subunit.
机译:为了检查神经丝调节髓鞘轴突口径的机制并测试神经丝异常积累如何引起运动神经元疾病,已构建了表达野生型小鼠NF-H的小鼠,其表达水平高达正常水平的4.5倍。 NF-H表达的少量增加导致总的神经丝含量增加和较大的髓鞘轴突,而NF-H的较大增加会降低总神经丝含量并强烈抑制放射状生长。 NF-H表达的增加选择性地减慢了神经丝进入轴突和沿轴突的运输,从而导致了神经丝的严重周生积累和运动神经元中的近端轴突肿胀。与表达中等水平的人类NF-H的转基因小鼠的情况不同(Cote,F.,JF Collard和JP Julien。1993. Cell。73:35-46),甚至是野生型小鼠NF正常水平的4.5倍-H不会导致任何明显的表型或运动神经元变性或增强。相反,运动神经元对野生型鼠NF-H具有极强的耐受性,而野生型人NF-H在超过160个残基位置与小鼠同源物不同,通过充当异常的突变体来介导小鼠的运动神经元疾病亚基。

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