Cleveland D W, Monteiro M J, Wong P C, Gill S R, Gearhart J D, Hoffman P N
Department of Biological Chemistry, Johns Hopkins University, School of Medicine, Baltimore, Maryland 21205.
J Cell Sci Suppl. 1991;15:85-95. doi: 10.1242/jcs.1991.supplement_15.12.
The control of radial growth of axons is of functional importance because caliber is a principal determinant of conduction velocity in myelinated nerve fibers. Neurofilaments, the major cytoskeletal protein in myelinated nerves, appear to be intrinsic determinants of caliber. Evidence supporting this derives first from the linear relationship between neurofilament content and axonal diameter. Further, following distal axonal injury in a peripheral nerve, caliber is reduced in the proximal axonal stumps. This reduction in caliber is itself due to selective suppression of neurofilament gene expression, thereby leading to lower levels of newly synthesized neurofilament subunits transported into the axon and a consequent decrease in axonal neurofilament content. To demonstrate directly the physiological consequence of altering normal neurofilament accumulation, we have elevated neurofilament expression by introducing additional genes into transgenic mice. The clear result is that increases in NF-L content alone are not sufficient to increase axonal caliber. To test the consequence of disruption of normal filament accumulation, we have identified dominant assembly-disrupting mutants in NF-L and NF-M and have used these to produce transgenic animals in which neurofilament assembly should be disrupted.
轴突径向生长的控制具有重要的功能意义,因为轴突直径是有髓神经纤维传导速度的主要决定因素。神经丝是有髓神经中主要的细胞骨架蛋白,似乎是轴突直径的内在决定因素。支持这一观点的证据首先来自神经丝含量与轴突直径之间的线性关系。此外,在周围神经发生轴突远端损伤后,近端轴突残端的直径会减小。这种直径的减小本身是由于神经丝基因表达的选择性抑制,从而导致转运到轴突中的新合成神经丝亚基水平降低,进而导致轴突神经丝含量减少。为了直接证明改变正常神经丝积累的生理后果,我们通过将额外的基因导入转基因小鼠来提高神经丝的表达。明显的结果是,仅NF-L含量的增加不足以增加轴突直径。为了测试正常细丝积累破坏的后果,我们在NF-L和NF-M中鉴定出显性组装破坏突变体,并利用这些突变体培育出神经丝组装应该被破坏的转基因动物。