Tokutake S, Tanaka K
Department of Molecular Biology, Psychiatric Research Institute of Tokyo.
J Biochem. 1989 Jan;105(1):39-43. doi: 10.1093/oxfordjournals.jbchem.a122614.
When crude neurofilaments were dissolved in a solution containing 8 M urea and 1% beta-mercaptoethanol (beta-ME), the component proteins of the neurofilaments and other contaminating filaments were solubilized into monomeric forms. However, when reassembled filaments were solubilized again by the addition of urea to 8 M without beta-ME, several bands which seemed to be oligomeric forms of filament proteins were observed on sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). Among them, a band which appeared between microtubule-associated protein-1 (MAP-1) and fodrin was most remarkable. This band was also observed when a triplet mixture of the neurofilaments (NF-H, NF-M, NF-L) was reassembled. The molecular weight of this band was estimated to be 280 kDa. In addition, much of this component was easily isolated on DE-52 column chromatography of the reassembled crude neurofilament proteins with buffers containing 6 M urea, while the low molecular weight component of the neurofilaments (NF-L, 70 kDa) was hardly detected. Furthermore, the isolated 280 kDa component was reduced to NF-L on the addition of beta-ME to 1%. In contrast, the 280 kDa component was produced on dialysis of isolated NF-L against the assembly buffer. From these results, it is deduced that this component is the stable tetramer of NF-L which is produced through spontaneous interchain disulfide formation among protofilament tetramers.
当粗神经丝溶解于含有8M尿素和1%β-巯基乙醇(β-ME)的溶液中时,神经丝的组成蛋白和其他污染性细丝会溶解成单体形式。然而,当通过添加尿素至8M但不添加β-ME使重新组装的细丝再次溶解时,在十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)上观察到几条似乎是细丝蛋白寡聚体形式的条带。其中,在微管相关蛋白-1(MAP-1)和血影蛋白之间出现的一条带最为明显。当神经丝三联体混合物(NF-H、NF-M、NF-L)重新组装时也观察到了这条带。这条带的分子量估计为280kDa。此外,在含有6M尿素的缓冲液中对重新组装的粗神经丝蛋白进行DE-52柱层析时,很容易分离出大部分这种成分,而神经丝的低分子量成分(NF-L,70kDa)几乎检测不到。此外,在添加1%β-ME后,分离出的280kDa成分会还原为NF-L。相反,将分离的NF-L对组装缓冲液进行透析时会产生280kDa成分。从这些结果可以推断,该成分是NF-L的稳定四聚体,它是通过原丝四聚体之间自发形成链间二硫键产生的。