Hisanaga S, Matsuoka Y, Nishizawa K, Saito T, Inagaki M, Hirokawa N
Department of Anatomy and Cell Biology, Faculty of Medicine, University of Tokyo, Japan.
Mol Biol Cell. 1994 Feb;5(2):161-72. doi: 10.1091/mbc.5.2.161.
Phosphorylation of neurofilament-L protein (NF-L) by the catalytic subunit of cAMP-dependent protein kinase (A-kinase) inhibits the reassembly of NF-L and disassembles filamentous NF-L. The effects of phosphorylation by A-kinase on native neurofilaments (NF) composed of three distinct subunits: NF-L, NF-M, and NF-H, however, have not yet been described. In this paper, we examined the effects of phosphorylation of NF proteins by A-kinase on both native and reassembled filaments containing all three NF subunits. In the native NF, A-kinase phosphorylated each NF subunit with stoichiometries of 4 mol/mol for NF-L, 6 mol/mol for NF-M, and 4 mol/mol for NF-H. The extent of NF-L phosphorylation in the native NF was nearly the same as that of purified NF-L. However, phosphorylation did not cause the native NFs to disassemble into oligomers, as was the case for purified NF-L. Instead, partial fragmentation was detected in sedimentation experiments and by electron microscopic observations. This is probably not due to the presence of the three NF subunits in NF or to differences in phosphorylation sites because reassembled NF containing all three NF subunits were disassembled into oligomeric forms by phosphorylation with A-kinase and the phosphorylation by A-kinase occurred at the head domain of NF-L whether NF were native or reassembled. Disassembling intermediates of reassembled NF containing all three NF subunits were somewhat different from disassembling intermediates of NF-L. Thinning and loosening of filaments was frequently observed preceding complete disassembly. From the fact that the thinning was also observed in the native filaments phosphorylated by A-kinase, it is reasonable to propose the native NF is fragmented through a process of thinning that is stimulated by phosphorylation in the head domain of the NF subunits.
环磷酸腺苷依赖性蛋白激酶(A激酶)的催化亚基对神经丝蛋白-L(NF-L)的磷酸化作用会抑制NF-L的重新组装,并使丝状NF-L解聚。然而,A激酶对由三种不同亚基(NF-L、NF-M和NF-H)组成的天然神经丝(NF)的磷酸化作用尚未见报道。在本文中,我们研究了A激酶对NF蛋白的磷酸化作用对包含所有三种NF亚基的天然和重新组装的丝状体的影响。在天然NF中,A激酶对每个NF亚基的磷酸化化学计量比为:NF-L为4摩尔/摩尔,NF-M为6摩尔/摩尔,NF-H为4摩尔/摩尔。天然NF中NF-L的磷酸化程度与纯化的NF-L几乎相同。然而,磷酸化并未使天然NF像纯化的NF-L那样解聚成寡聚体。相反,在沉降实验和电子显微镜观察中检测到了部分片段化。这可能不是由于NF中存在三种NF亚基,也不是由于磷酸化位点的差异,因为含有所有三种NF亚基的重新组装的NF通过A激酶磷酸化会解聚成寡聚体形式,并且无论NF是天然的还是重新组装的,A激酶的磷酸化都发生在NF-L的头部结构域。包含所有三种NF亚基的重新组装的NF的解聚中间体与NF-L的解聚中间体略有不同。在完全解聚之前,经常观察到细丝变细和变松散。从在被A激酶磷酸化的天然细丝中也观察到变细这一事实来看,有理由提出天然NF是通过NF亚基头部结构域磷酸化所刺激的变细过程而发生片段化的。