Giet R, Prigent C
CNRS UPR41, Groupe Cycle Cellulaire, Université de Rennes I, Campus de Beaulieu, Rennes cedex, 35042, France.
Exp Cell Res. 1998 Nov 1;244(2):470-3. doi: 10.1006/excr.1998.4218.
The Xenopus centrosome protein kinase pEg2, involved in spindle assembly, binds to microtubules polymerized in vitro. We have developed a method to investigate the affinity of purified recombinant pEg2 protein for the cellular mitotic spindle. Briefly, cells grown on coverslips are fixed, permeabilized, and incubated with recombinant pEg2 protein. Localization of the protein is revealed by probing with a specific monoclonal antibody that recognizes recombinant but not endogenous pEg2. Using this method we show that recombinant pEg2 binds to microtubules in vitro, while, in vivo, pEg2 localized only to the mitotic spindle and not the interphase microtubule network. We also demonstrate that the catalytic activity of pEg2 is not necessary for its binding ability. This technique can be used to analyze the binding of various tagged proteins to cellular mitotic spindle.
非洲爪蟾中心体蛋白激酶pEg2参与纺锤体组装,能与体外聚合的微管结合。我们开发了一种方法来研究纯化的重组pEg2蛋白与细胞有丝分裂纺锤体的亲和力。简要来说,在盖玻片上生长的细胞被固定、通透处理,然后与重组pEg2蛋白一起孵育。通过用识别重组pEg2而非内源性pEg2的特异性单克隆抗体进行检测,来揭示该蛋白的定位。利用这种方法,我们表明重组pEg2在体外能与微管结合,而在体内,pEg2仅定位于有丝分裂纺锤体,而非间期微管网络。我们还证明,pEg2的催化活性对其结合能力并非必需。该技术可用于分析各种标记蛋白与细胞有丝分裂纺锤体的结合情况。