Peset Isabel, Seiler Jeanette, Sardon Teresa, Bejarano Luis A, Rybina Sonja, Vernos Isabelle
Cell Biology and Biophysic Program, European Molecular Biology Laboratory, 69117 Heidelberg, Germany.
J Cell Biol. 2005 Sep 26;170(7):1057-66. doi: 10.1083/jcb.200504037. Epub 2005 Sep 19.
The Xenopus protein Maskin has been previously identified and characterized in the context of its role in translational control during oocyte maturation. Maskin belongs to the TACC protein family. In other systems, members of this family have been shown to localize to centrosomes during mitosis and play a role in microtubule stabilization. Here we have examined the putative role of Maskin in spindle assembly and centrosome aster formation in the Xenopus egg extract system. Depletion and reconstitution experiments indicate that Maskin plays an essential role for microtubule assembly during M-phase. We show that Maskin interacts with XMAP215 and Eg2, the Xenopus Aurora A kinase in vitro and in the egg extract. We propose that Maskin and XMAP215 cooperate to oppose the destabilizing activity of XKCM1 therefore promoting microtubule growth from the centrosome and contributing to the determination of microtubule steady-state length. Further more, we show that Maskin localization and function is regulated by Eg2 phosphorylation.
非洲爪蟾蛋白Maskin先前已被鉴定出来,并在卵母细胞成熟过程中其在翻译控制方面的作用背景下进行了表征。Maskin属于TACC蛋白家族。在其他系统中,该家族成员在有丝分裂期间已被证明定位于中心体,并在微管稳定中发挥作用。在这里,我们研究了Maskin在非洲爪蟾卵提取物系统中纺锤体组装和中心体星体形成中的假定作用。缺失和重组实验表明,Maskin在M期微管组装中起重要作用。我们表明,Maskin在体外和卵提取物中与非洲爪蟾XMAP215和Eg2(非洲爪蟾极光A激酶)相互作用。我们提出,Maskin和XMAP215协同作用以对抗XKCM1的去稳定活性,从而促进微管从中心体生长并有助于确定微管稳态长度。此外,我们表明Maskin的定位和功能受Eg2磷酸化调节。