Dynein, Lis1 and CLIP-170 counteract Eg5-dependent centrosome separation during bipolar spindle assembly

被引:124
|
作者
Tanenbaum, Marvin E. [1 ]
Macurek, Libor [1 ]
Galjart, Niels [2 ]
Medema, Rene H. [1 ]
机构
[1] Univ Med Ctr Utrecht, Dept Med Oncol, NL-3584 CG Utrecht, Netherlands
[2] Erasmus MC, Dept Cell Biol & Genet, Rotterdam, Netherlands
来源
EMBO JOURNAL | 2008年 / 27卷 / 24期
关键词
bipolar; CLIP-170; dynein; eg5; spindle;
D O I
10.1038/emboj.2008.242
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bipolar spindle assembly critically depends on the microtubule plus-end-directed motor Eg5 that binds antiparallel microtubules and slides them in opposite directions. As such, Eg5 can produce the necessary outward force within the spindle that drives centrosome separation and inhibition of this antiparallel sliding activity results in the formation of monopolar spindles. Here, we show that upon depletion of the minus-end-directed motor dynein, or the dynein-binding protein Lis1, bipolar spindles can form in human cells with substantially less Eg5 activity, suggesting that dynein and Lis1 produce an inward force that counteracts the Eg5-dependent outward force. Interestingly, we also observe restoration of spindle bipolarity upon depletion of the microtubule plus-end-tracking protein CLIP-170. This function of CLIP-170 in spindle bipolarity seems to be mediated through its interaction with dynein, as loss of CLIP-115, a highly homologous protein that lacks the dynein-dynactin interaction domain, does not restore spindle bipolarity. Taken together, these results suggest that complexes of dynein, Lis1 and CLIP-170 crosslink and slide microtubules within the spindle, thereby producing an inward force that pulls centrosomes together.
引用
收藏
页码:3235 / 3245
页数:11
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