Herrmann H, Dalton J M, Wiche G
J Biol Chem. 1985 May 10;260(9):5797-803.
High molecular weight microtubule-associated proteins 1 and 2 (MAP-1 and MAP-2), prepared by copolymerization with tubulin, were electrophorectically separated into three and two major subcomponents, respectively, using 5% sodium dodecyl sulfate-polyacrylamide gels. By two-dimensional gel electrophoresis, all five MAP components were shown to possess a pI of around 5. Four of these proteins, MAP-1A, MAP-1C, MAP-2A, and MAP-2B, present in comparable amounts, were iodinated after electrophoretic separation and analyzed by two-dimensional peptide mapping. With both trypsin and V8 protease, almost identical patterns were obtained from MAP-2A and MAP-2B. MAP-1A and MAP-1C, too, gave similar digestion patterns, although some differences were noted. Incubation with [gamma-32P]ATP demonstrated that endogeneous protein kinase activities phosphorylated individual subcomponents at different rates. MAP-2A, the highest labeled component, was phosphorylated 2.5-fold compared to MAP-2B both in the presence and the absence of cAMP. Labeling of MAP-1 subcomponents was 4 times less than that of MAP-2A in the absence and 16 times less in the presence of cAMP. 32P-labeled MAP-2A and MAP-2B bands were indistinguishable by one-dimensional peptide mapping, as were the three MAP-1 bands. For both MAP-1 and MAP-2 subcomponents, cAMP induced phosphorylation at new molecular sites. Incubation of radiolabeled microtubule proteins with 1 mM ATP effected, upon electrophoresis, a clear shift of MAP-2A and MAP-2B bands to positions of higher apparent molecular weights, while only slightly affecting MAP-1 bands.
通过与微管蛋白共聚制备的高分子量微管相关蛋白1和2(MAP-1和MAP-2),使用5%十二烷基硫酸钠-聚丙烯酰胺凝胶进行电泳分离,分别得到三个和两个主要亚组分。通过二维凝胶电泳显示,所有五个MAP组分的等电点均约为5。其中四种蛋白质,即MAP-1A、MAP-1C、MAP-2A和MAP-2B,含量相当,在电泳分离后进行碘化,并通过二维肽图谱分析。用胰蛋白酶和V8蛋白酶处理后,MAP-2A和MAP-2B得到几乎相同的图谱。MAP-1A和MAP-1C也给出了相似的消化图谱,尽管存在一些差异。用[γ-32P]ATP孵育表明,内源性蛋白激酶活性以不同速率磷酸化各个亚组分。MAP-2A是标记最高的组分,无论有无cAMP,其磷酸化程度均是MAP-2B的2.5倍。在无cAMP时,MAP-1亚组分的标记量比MAP-2A少4倍,在有cAMP时少16倍。通过一维肽图谱无法区分32P标记的MAP-2A和MAP-2B条带,MAP-1的三条带也是如此。对于MAP-1和MAP-2亚组分,cAMP均在新的分子位点诱导磷酸化。用1 mM ATP孵育放射性标记的微管蛋白后进行电泳,发现MAP-2A和MAP-2B条带明显向更高表观分子量的位置移动,而对MAP-1条带的影响较小。