Bayliss Richard, Sardon Teresa, Vernos Isabelle, Conti Elena
Structural and Computational Biology Programme, European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69117, Heidelberg, Germany .
Mol Cell. 2003 Oct;12(4):851-62. doi: 10.1016/s1097-2765(03)00392-7.
Aurora-A is an oncogenic kinase essential for mitotic spindle assembly. It is activated by phosphorylation and by the microtubule-associated protein TPX2, which also localizes the kinase to spindle microtubules. We have uncovered the molecular mechanism of Aurora-A activation by determining crystal structures of its phosphorylated form both with and without a 43 residue long domain of TPX2 that we identified as fully functional for kinase activation and protection from dephosphorylation. In the absence of TPX2, the Aurora-A activation segment is in an inactive conformation, with the crucial phosphothreonine exposed and accessible for deactivation. Binding of TPX2 triggers no global conformational changes in the kinase but pulls on the activation segment, swinging the phosphothreonine into a buried position and locking the active conformation. The recognition between Aurora-A and TPX2 resembles that between the cAPK catalytic core and its flanking regions, suggesting this molecular mechanism may be a recurring theme in kinase regulation.
极光激酶A是一种对有丝分裂纺锤体组装至关重要的致癌激酶。它通过磷酸化以及微管相关蛋白TPX2被激活,TPX2还将该激酶定位于纺锤体微管上。我们通过确定其磷酸化形式的晶体结构,揭示了极光激酶A激活的分子机制,该晶体结构有和没有我们鉴定为对激酶激活和防止去磷酸化具有完全功能的43个残基长的TPX2结构域。在没有TPX2的情况下,极光激酶A的激活片段处于无活性构象,关键的磷酸苏氨酸暴露在外,易于失活。TPX2的结合不会引发激酶的整体构象变化,但会拉动激活片段,将磷酸苏氨酸摆动到一个埋藏位置并锁定活性构象。极光激酶A与TPX2之间的识别类似于cAPK催化核心与其侧翼区域之间的识别,表明这种分子机制可能是激酶调节中的一个反复出现的主题。