Lee M K, Xu Z, Wong P C, Cleveland D W
Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
J Cell Biol. 1993 Sep;122(6):1337-50. doi: 10.1083/jcb.122.6.1337.
Neurofilaments (NFs), composed of three distinct subunits NF-L, NF-M, and NF-H, are neuron-specific intermediate filaments present in most mature neurons. Using DNA transfection and mice expressing NF transgenes, we find that despite the ability of NF-L alone to assemble into short filaments in vitro NF-L cannot form filament arrays in vivo after expression either in cultured cells or in transgenic oligodendrocytes that otherwise do not contain a cytoplasmic intermediate filament (IF) array. Instead, NF-L aggregates into punctate or sheet like structures. Similar nonfilamentous structures are also formed when NF-M or NF-H is expressed alone. The competence of NF-L to assemble into filaments is fully restored by coexpression of NF-M or NF-H to a level approximately 10% of that of NF-L. Deletion of the head or tail domain of NF-M or substitution of the NF-H tail onto an NF-L subunit reveals that restoration of in vivo NF-L assembly competence requires an interaction provided by the NF-M or NF-H head domains. We conclude that, contrary to the expectation drawn from earlier in vitro assembly studies, NF-L is not sufficient to assemble an extended filament network in an in vivo context and that neurofilaments are obligate heteropolymers requiring NF-L and NF-M or NF-H.
神经丝(NFs)由三种不同的亚基NF-L、NF-M和NF-H组成,是大多数成熟神经元中存在的神经元特异性中间丝。通过DNA转染和表达NF转基因的小鼠,我们发现,尽管NF-L单独在体外能够组装成短丝,但在培养细胞或原本不含细胞质中间丝(IF)阵列的转基因少突胶质细胞中表达后,NF-L在体内无法形成丝状阵列。相反,NF-L聚集成点状或片状结构。当单独表达NF-M或NF-H时,也会形成类似的非丝状结构。通过共表达NF-M或NF-H,NF-L组装成丝的能力完全恢复,恢复水平约为NF-L的10%。删除NF-M的头部或尾部结构域或将NF-H的尾部替换到NF-L亚基上表明,体内NF-L组装能力的恢复需要NF-M或NF-H头部结构域提供的相互作用。我们得出结论,与早期体外组装研究得出的预期相反,NF-L不足以在体内环境中组装扩展的丝状网络,并且神经丝是需要NF-L和NF-M或NF-H的 obligate 异源聚合物。