C.S. Bond Life Sciences Center, University of Missouri, 1201 Rollins Street, Columbia, MO 65211, USA.
Neuroscience. 2010 Sep 29;170(1):16-21. doi: 10.1016/j.neuroscience.2010.07.014. Epub 2010 Jul 13.
At the initiation of radial growth, neurofilaments are likely to consist primarily of neurofilament light and medium as neurofilament heavy expression is developmentally delayed. To better understand the role of neurofilament heavy in structuring axons, axonal diameter and neurofilament organization were measured in proximal and distal segments of the sciatic nerve and along the entire length of the phrenic nerve. Deletion of neurofilament heavy reduced axonal diameters and neurofilament number in proximal nerve segments. However, neurofilament spacing was greater in proximal versus distal phrenic nerve segments. Taken together, these results suggest that loss of neurofilament heavy reduces radial growth in proximal axonal segments by reducing the accumulation of neurofilaments. As neurofilament heavy expression is developmentally delayed, these results suggest that without neurofilament heavy, the neurofilament network is established in a distal to proximal gradient perhaps to allow distal axonal segments to develop prior to proximal segments.
在放射状生长开始时,神经丝可能主要由神经丝轻链和中链组成,因为神经丝重链的表达是发育延迟的。为了更好地理解神经丝重链在构建轴突中的作用,我们测量了坐骨神经近端和远端以及膈神经全长的轴突直径和神经丝组织。神经丝重链缺失减少了近端神经段的轴突直径和神经丝数量。然而,近端膈神经段的神经丝间距大于远端。综上所述,这些结果表明,缺失神经丝重链通过减少神经丝的积累来减少近端轴突段的放射状生长。由于神经丝重链的表达是发育延迟的,这些结果表明,没有神经丝重链,神经丝网络可能以远端到近端的梯度建立,也许是为了允许远端轴突段在近端段之前发育。