Chou Y H, Opal P, Quinlan R A, Goldman R D
Department of Cell and Molecular Biology, Northwestern University Medical School, Chicago, IL 60611, USA.
J Cell Sci. 1996 Apr;109 ( Pt 4):817-26. doi: 10.1242/jcs.109.4.817.
Previously we identified p34cdc2 as one of two protein kinases mediating the hyperphosphorylation and disassembly of vimentin in mitotic BHK-21 cells. In this paper, we identify the second kinase as a 37 kDa protein. This p37 protein kinase phosphorylates vimentin on two adjacent residues (thr-457 and ser-458) which are located in the C-terminal non-alpha-helical domain. Contrary to the p34cdc2 mediated N-terminal phosphorylation (at ser-55) which can disassemble vimentin intermediate filaments (IF) in vitro, p37 protein kinase phosphorylates vimentin-IF without obviously affecting its structure in vitro. We have further examined the in vivo role(s) of vimentin phosphorylation in the disassembly of the IF network in mitotic BHK cells by transient transfection assays. In untransfected BHK cells, the interphase vimentin IF networks are disassembled into non-filamentous aggregates when cells enter mitosis. Transfection of cells with vimentin cDNA lacking the p34cdc2 phosphorylation site (ser55:ala) effectively prevents mitotic cells from disassembling their IF. In contrast, apparently normal disassembly takes place in cells transfected with cDNA containing mutated p37 kinase phosphorylation sites (thr457:ala/ser458:ala). Transfection of cells with vimentin cDNAs lacking both the N- and C-terminal phosphorylation sites yields a phenotype indistinguishable from that obtained with the single N-terminal mutant. Taken together, our results demonstrate that the site-specific phosphorylation of the N-terminal domain, but not the C-terminal domain of vimentin plays an important role in determining the state of IF polymerization and supramolecular organization in mitotic cells.
先前我们确定p34cdc2是介导有丝分裂的BHK - 21细胞中波形蛋白超磷酸化和去组装的两种蛋白激酶之一。在本文中,我们确定第二种激酶是一种37 kDa的蛋白。这种p37蛋白激酶使波形蛋白位于C末端非α螺旋结构域的两个相邻残基(苏氨酸 - 457和丝氨酸 - 458)发生磷酸化。与p34cdc2介导的N末端磷酸化(丝氨酸 - 55处)相反,p34cdc2介导的N末端磷酸化在体外可使波形蛋白中间丝(IF)去组装,而p37蛋白激酶使波形蛋白 - IF磷酸化,在体外却不明显影响其结构。我们通过瞬时转染试验进一步研究了波形蛋白磷酸化在有丝分裂的BHK细胞中IF网络去组装过程中的体内作用。在未转染的BHK细胞中,当细胞进入有丝分裂时,间期波形蛋白IF网络会解聚成非丝状聚集体。用缺乏p34cdc2磷酸化位点(丝氨酸55突变为丙氨酸)的波形蛋白cDNA转染细胞,可有效阻止有丝分裂细胞拆解其IF。相反,用含有突变的p37激酶磷酸化位点(苏氨酸457突变为丙氨酸/丝氨酸458突变为丙氨酸)的cDNA转染细胞时,明显发生了正常的去组装。用缺乏N末端和C末端磷酸化位点的波形蛋白cDNA转染细胞,产生的表型与用单个N末端突变体获得的表型无法区分。综上所述,我们的结果表明,波形蛋白N末端结构域而非C末端结构域的位点特异性磷酸化在决定有丝分裂细胞中IF聚合状态和超分子组织方面起着重要作用。