Elder G A, Friedrich V L, Kang C, Bosco P, Gourov A, Tu P H, Zhang B, Lee V M, Lazzarini R A
Department of Psychiatry, Mount Sinai School of Medicine, New York, New York 10029, USA.
J Cell Biol. 1998 Oct 5;143(1):195-205. doi: 10.1083/jcb.143.1.195.
Neurofilaments (NFs) are prominent components of large myelinated axons. Previous studies have suggested that NF number as well as the phosphorylation state of the COOH-terminal tail of the heavy neurofilament (NF-H) subunit are major determinants of axonal caliber. We created NF-H knockout mice to assess the contribution of NF-H to the development of axon size as well as its effect on the amounts of low and mid-sized NF subunits (NF-L and NF-M respectively). Surprisingly, we found that NF-L levels were reduced only slightly whereas NF-M and tubulin proteins were unchanged in NF-H-null mice. However, the calibers of both large and small diameter myelinated axons were diminished in NF-H-null mice despite the fact that these mice showed only a slight decrease in NF density and that filaments in the mutant were most frequently spaced at the same interfilament distance found in control. Significantly, large diameter axons failed to develop in both the central and peripheral nervous systems. These results demonstrate directly that unlike losing the NF-L or NF-M subunits, loss of NF-H has only a slight effect on NF number in axons. Yet NF-H plays a major role in the development of large diameter axons.
神经丝(NFs)是有髓大轴突的主要组成部分。先前的研究表明,神经丝数量以及重神经丝(NF-H)亚基COOH末端尾巴的磷酸化状态是轴突直径的主要决定因素。我们创建了NF-H基因敲除小鼠,以评估NF-H对轴突大小发育的贡献及其对低分子量和中等分子量神经丝亚基(分别为NF-L和NF-M)数量的影响。令人惊讶的是,我们发现NF-H基因敲除小鼠中NF-L水平仅略有降低,而NF-M和微管蛋白水平未发生变化。然而,尽管这些小鼠的神经丝密度仅略有降低,且突变体中的神经丝间距与对照组中的神经丝间距基本相同,但NF-H基因敲除小鼠中,有髓大、小直径轴突的直径均减小。值得注意的是,在中枢和外周神经系统中,大直径轴突均未能发育。这些结果直接表明,与缺失NF-L或NF-M亚基不同,NF-H的缺失对轴突中神经丝数量的影响很小。然而,NF-H在大直径轴突的发育中起主要作用。