Scott D, Smith K E, O'Brien B J, Angelides K J
J Biol Chem. 1985 Sep 5;260(19):10736-47.
The three major proteins of mammalian neurofilaments of molecular weights 179,000 (NF1), 129,000 (NF2), and 66,500 (NF3) have been purified to homogeneity by multiple anion-exchange and hydroxylapatite absorption chromatography in 8 M urea. Silver staining of polyacrylamide gels of the purified proteins show single bands. In order to gain further insight into the molecular organization of the neurofilament triplet proteins, the molar stoichiometries and morphologies of native and reconstituted filaments and those isolated from developing brain were studied. Denaturing polyacrylamide gel electrophoresis followed by quantitative dye-binding analysis shows that the molar ratio of the three components in neurofilaments isolated from bovine spinal cord myelinated nerve is 4:2:1 (NF3:NF2:NF1). Comparison of the molar ratios of each component in neurofilaments isolated from rat, bovine, and human brain shows a variation in the ratio of each of these polypeptides and raises questions about the physiological uniqueness of the molar composition of the neurofilament triplet. Reconstitution of the three bovine polypeptides into 10-nm filaments was accomplished under conditions in which the NF3 protein was limiting. Reassembly of 10-nm filaments with varying amounts of NF2 and NF1 indicate that the NF3 homopolymer has a limiting capacity to bind NF2 and NF1 and is saturated at a molar ratio of 2:2:1 (NF3:NF2:NF1). Isolation of the neurofilament complex at various stages of rat brain maturation indicates that NF3 and NF2 are integrated into the neurofilament complex as early as embryonic day 17, while NF1 copurifies with these proteins at postnatal day 16, eventually reaching a molar stoichiometry of 2:2:1 in the adult rat. The molecular stoichiometry of the neurofilament proteins, the differential integration of these proteins during brain development, and the variation of the molar composition between mammalian species suggest accessory roles for the NF2 and NF1 proteins in the neurofilament complex.
分子量分别为179,000(NF1)、129,000(NF2)和66,500(NF3)的哺乳动物神经丝的三种主要蛋白质,已通过在8M尿素中进行多次阴离子交换和羟基磷灰石吸附色谱法纯化至同质。纯化蛋白质的聚丙烯酰胺凝胶银染显示单一条带。为了进一步深入了解神经丝三联体蛋白的分子组织,研究了天然和重组丝以及从发育中的大脑中分离出的丝的摩尔化学计量和形态。变性聚丙烯酰胺凝胶电泳后进行定量染料结合分析表明,从牛脊髓有髓神经中分离出的神经丝中三种成分的摩尔比为4:2:1(NF3:NF2:NF1)。对从大鼠、牛和人类大脑中分离出的神经丝中各成分摩尔比的比较表明,这些多肽中每种的比例存在差异,并引发了关于神经丝三联体摩尔组成的生理独特性的问题。在NF3蛋白受限的条件下,将三种牛多肽重组为10纳米的丝。用不同量的NF2和NF1对10纳米的丝进行重新组装表明,NF3同聚物结合NF2和NF1的能力有限,并且在摩尔比为2:2:1(NF3:NF2:NF1)时达到饱和。在大鼠大脑成熟的各个阶段分离神经丝复合物表明,NF3和NF2早在胚胎第17天就整合到神经丝复合物中,而NF1在出生后第16天与这些蛋白质共纯化,最终在成年大鼠中达到2:2:1的摩尔化学计量。神经丝蛋白的分子化学计量、这些蛋白质在大脑发育过程中的差异整合以及哺乳动物物种之间摩尔组成的变化表明,NF2和NF1蛋白在神经丝复合物中起辅助作用。