Center for Dementia Research, Nathan Kline Institute, Orangeburg, New York, United States of America.
PLoS One. 2012;7(9):e44320. doi: 10.1371/journal.pone.0044320. Epub 2012 Sep 21.
Newly synthesized neurofilaments or protofilaments are incorporated into a highly stable stationary cytoskeleton network as they are transported along axons. Although the heavily phosphorylated carboxyl-terminal tail domains of the heavy and medium neurofilament (NF) subunits have been proposed to contribute to this process and particularly to stability of this structure, their function is still obscure. Here we show in NF-H/M tail deletion [NF-(H/M)(tailΔ)] mice that the deletion of both of these domains selectively lowers NF levels 3-6 fold along optic axons without altering either rates of subunit synthesis or the rate of slow axonal transport of NF. Pulse labeling studies carried out over 90 days revealed a significantly faster rate of disappearance of NF from the stationary NF network of optic axons in NF-(H/M)(tailΔ) mice. Faster NF disappearance was accompanied by elevated levels of NF-L proteolytic fragments in NF-(H/M)(tailΔ) axons. We conclude that NF-H and NF-M C-terminal domains do not normally regulate NF transport rates as previously proposed, but instead increase the proteolytic resistance of NF, thereby stabilizing the stationary neurofilament cytoskeleton along axons.
新合成的神经丝或原纤维在沿着轴突运输时被整合到高度稳定的固定细胞骨架网络中。尽管重和中神经丝(NF)亚基的高度磷酸化羧基末端尾部结构域被认为有助于这一过程,特别是有助于这种结构的稳定性,但它们的功能仍然不清楚。在这里,我们在 NF-H/M 尾部缺失(NF-(H/M)(tailΔ))小鼠中表明,这两个结构域的缺失选择性地降低了沿视神经轴突的 NF 水平 3-6 倍,而不改变亚基合成的速率或 NF 的慢轴突运输速率。在 90 天的脉冲标记研究中,发现在 NF-(H/M)(tailΔ)小鼠中,从视神经轴突的固定 NF 网络中 NF 消失的速度明显加快。更快的 NF 消失伴随着 NF-L 蛋白水解片段水平的升高在 NF-(H/M)(tailΔ)轴突中。我们得出的结论是,NF-H 和 NF-M C 末端结构域通常不调节 NF 运输速率,如先前提出的那样,而是增加 NF 的蛋白水解抗性,从而稳定沿轴突的固定神经丝细胞骨架。