TPX2 is an elongated molecule containing multiple α-helical repeats. It stabilizes microtubules (MTs), promotes MT nucleation, and is essential for spindle assembly. However, the molecular basis of how TPX2 performs these functions remains elusive. Here, we systematically characterized the MT-binding activities of all TPX2 modules individually and in combinations and investigated their respective contributions both in vitro and in cells. We show that TPX2 contains α-helical repeats with opposite preferences for "extended" and "compacted" tubulin dimer spacing, and their distinct combinations produce divergent outcomes, making TPX2 activity highly robust yet tunable. Importantly, a repeat group at the C terminus, R8-9, is the key determinant of the TPX2 function. It stabilizes MTs by promoting rescues in vitro and is critical in spindle assembly. We propose a model where TPX2 activities are spatially regulated via its diverse MT-binding repeats to accommodate its varied functions in distinct locations within the spindle. Furthermore, we reveal a synergy between TPX2 and HURP in stabilizing spindle MTs.
Diverse microtubule-binding repeats regulate TPX2 activities at distinct locations within the spindle.
不同的微管结合重复序列在纺锤体的不同位置调节 TPX2 的活性
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作者:Liang Zhuobi, Huang Junjie, Wang Yong, Hua Shasha, Jiang Kai
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Mar 3; 224(3):e202404025 |
| doi: | 10.1083/jcb.202404025 | 研究方向: | 其它 |
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