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Merck
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NuMA recruits dynein activity to microtubule minus-ends at mitosis.

eLife (2017-12-01)
Christina L Hueschen, Samuel J Kenny, Ke Xu, Sophie Dumont
摘要

To build the spindle at mitosis, motors exert spatially regulated forces on microtubules. We know that dynein pulls on mammalian spindle microtubule minus-ends, and this localized activity at ends is predicted to allow dynein to cluster microtubules into poles. How dynein becomes enriched at minus-ends is not known. Here, we use quantitative imaging and laser ablation to show that NuMA targets dynactin to minus-ends, localizing dynein activity there. NuMA is recruited to new minus-ends independently of dynein and more quickly than dynactin; both NuMA and dynactin display specific, steady-state binding at minus-ends. NuMA localization to minus-ends involves a C-terminal region outside NuMA's canonical microtubule-binding domain and is independent of minus-end binders γ-TuRC, CAMSAP1, and KANSL1/3. Both NuMA's minus-end-binding and dynein-dynactin-binding modules are required to rescue focused, bipolar spindle organization. Thus, NuMA may serve as a mitosis-specific minus-end cargo adaptor, targeting dynein activity to minus-ends to cluster spindle microtubules into poles.

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诺考达唑, ≥99% (TLC), powder
Sigma-Aldrich
抗-α-微管蛋白抗体,小鼠单克隆, clone DM1A, purified from hybridoma cell culture
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抗肌动蛋白抗体,克隆C4, ascites fluid, clone C4, Chemicon®
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抗-γ-微管蛋白 兔抗, IgG fraction of antiserum, buffered aqueous solution