Evans R M
Department of Pathology, University of Colorado Health Sciences Center, Denver 80262.
J Cell Biol. 1989 Jan;108(1):67-78. doi: 10.1083/jcb.108.1.67.
The phosphorylation of the intermediate filament protein vimentin was examined under in vitro conditions. Cell cytosol and Triton-insoluble cytoskeleton preparations from nonmitotic and mitotically selected mouse L-929 cells exhibited vimentin kinase activity that is apparently cAMP and Ca2+ independent. The level of vimentin kinase activity was greater in preparations from mitotically selected cells than nonmitotic cells. Addition of Ca2+ to mitotic cytosol decreased net vimentin phosphorylation. Dephosphorylation experiments indicated that there is phosphatase activity in these preparations which is stimulated by addition of Ca2+. Fractionation of cytosol from nonmitotic cells on DEAE-Sephacel and phosphocellulose revealed a single major vimentin kinase activity (peak I). Fractionation of cytosol from mitotically selected cells yielded a similar activity (peak I) and an additional vimentin kinase activity (peak II) that was not found in nonmitotic preparations. Based on substrate specificity and lack of inhibition to characteristic inhibitors, the semipurified peak I and II vimentin kinase activities appear to be cAMP-independent enzymes that are distinct from casein kinases I and II. Phosphopeptide mapping studies indicated that both peak I and peak II vimentin kinases phosphorylate tryptic peptides in the NH2-terminal region of vimentin that are phosphorylated in intact cells. Electron microscopic examination of reconstituted vimentin filaments phosphorylated with both semipurified kinases indicated that phosphorylation induced filament disassembly. These experiments indicate that the increased phosphorylation of vimentin during mitosis may be catalyzed by a discrete cAMP-independent protein kinase. In addition, preparations from mitotic cells exhibited a Ca2+-stimulated phosphatase activity, suggesting that Ca2+ may play a regulatory role in vimentin dephosphorylation during mitosis.
在体外条件下检测了中间丝蛋白波形蛋白的磷酸化情况。来自非有丝分裂和经有丝分裂选择的小鼠L-929细胞的细胞质和不溶于曲拉通的细胞骨架制剂表现出波形蛋白激酶活性,该活性显然不依赖于环磷酸腺苷(cAMP)和钙离子(Ca2+)。经有丝分裂选择的细胞制剂中的波形蛋白激酶活性水平高于非有丝分裂细胞。向有丝分裂细胞质中添加Ca2+会降低波形蛋白的净磷酸化水平。去磷酸化实验表明,这些制剂中存在磷酸酶活性,添加Ca2+可刺激该活性。用二乙氨基乙基纤维素(DEAE-Sephacel)和磷酸纤维素对非有丝分裂细胞的细胞质进行分级分离,发现了单一的主要波形蛋白激酶活性(峰I)。对经有丝分裂选择的细胞的细胞质进行分级分离,得到了类似的活性(峰I)和一种在非有丝分裂制剂中未发现的额外的波形蛋白激酶活性(峰II)。基于底物特异性以及对特征性抑制剂缺乏抑制作用,半纯化的峰I和峰II波形蛋白激酶活性似乎是与酪蛋白激酶I和II不同的不依赖于cAMP的酶。磷酸肽图谱研究表明,峰I和峰II波形蛋白激酶都能磷酸化波形蛋白氨基末端区域的胰蛋白酶肽段,这些肽段在完整细胞中也会被磷酸化。用两种半纯化激酶对重组波形蛋白丝进行磷酸化后的电子显微镜检查表明,磷酸化会导致丝的解聚。这些实验表明,有丝分裂期间波形蛋白磷酸化增加可能由一种离散的不依赖于cAMP的蛋白激酶催化。此外,有丝分裂细胞的制剂表现出Ca2+刺激的磷酸酶活性,这表明Ca2+可能在有丝分裂期间波形蛋白的去磷酸化过程中发挥调节作用。