Wong P C, Marszalek J, Crawford T O, Xu Z, Hsieh S T, Griffin J W, Cleveland D W
Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Cell Biol. 1995 Sep;130(6):1413-22. doi: 10.1083/jcb.130.6.1413.
The carboxy-terminal tail domains of neurofilament subunits neurofilament NF-M and NF-H have been postulated to be responsible for the modulation of axonal caliber. To test how subunit composition affects caliber, transgenic mice were generated to increase axonal NF-M. Total neurofilament subunit content in motor and sensory axons remained essentially unchanged, but increases in NF-M were offset by proportionate decreases in both NF-H and axonal cross-sectional area. Increase in NF-M did not affect the level of phosphorylation of NF-H. This indicates that (a) in vivo NF-H and NF-M compete either for coassembly with a limiting amount of NF-L or as substrates for axonal transport, and (b) NF-H abundance is a primary determinant of axonal caliber. Despite inhibition of radial growth, increase in NF-M and reduction in axonal NF-H did not affect nearest neighbor spacing between neurofilaments, indicating that cross-bridging between nearest neighbors does not play a crucial role in radial growth. Increase in NF-M did not result in an overt phenotype or neuronal loss, although filamentous swellings in perikarya and proximal axons of motor neurons were frequently found.
神经丝亚基神经丝NF-M和NF-H的羧基末端尾部结构域被认为负责调节轴突直径。为了测试亚基组成如何影响轴突直径,研究人员构建了转基因小鼠以增加轴突中的NF-M。运动和感觉轴突中的总神经丝亚基含量基本保持不变,但NF-M的增加被NF-H和轴突横截面积的相应减少所抵消。NF-M的增加并未影响NF-H的磷酸化水平。这表明:(a)在体内,NF-H和NF-M要么竞争与有限量的NF-L共同组装,要么竞争作为轴突运输的底物;(b)NF-H的丰度是轴突直径的主要决定因素。尽管径向生长受到抑制,但NF-M的增加和轴突NF-H的减少并未影响神经丝之间的最近邻间距,这表明最近邻之间的交叉桥接在径向生长中并不起关键作用。NF-M的增加并未导致明显的表型或神经元丢失,尽管在运动神经元的胞体和近端轴突中经常发现丝状肿胀。