Literature DB >> 24462186

A microtubule-associated zinc finger protein, BuGZ, regulates mitotic chromosome alignment by ensuring Bub3 stability and kinetochore targeting.

Hao Jiang1, Xiaonan He2, Shusheng Wang3, Junling Jia3, Yihan Wan1, Yueju Wang4, Rong Zeng2, John Yates4, Xueliang Zhu5, Yixian Zheng6.   

Abstract

Equal chromosome segregation requires proper assembly of many proteins, including Bub3, onto kinetochores to promote kinetochore-microtubule interactions. By screening for mitotic regulators in the spindle envelope and matrix (Spemix), we identify a conserved Bub3 interacting and GLE-2-binding sequence (GLEBS) containing ZNF207 (BuGZ) that associates with spindle microtubules and regulates chromosome alignment. Using its conserved GLEBS, BuGZ directly binds and stabilizes Bub3. BuGZ also uses its microtubule-binding domain to enhance the loading of Bub3 to kinetochores that have assumed initial interactions with microtubules in prometaphase. This enhanced Bub3 loading is required for proper chromosome alignment and metaphase to anaphase progression. Interestingly, we show that microtubules are required for the highest kinetochore loading of Bub3, BubR1, and CENP-E during prometaphase. These findings suggest that BuGZ not only serves as a molecular chaperone for Bub3 but also enhances its loading onto kinetochores during prometaphase in a microtubule-dependent manner to promote chromosome alignment.
Copyright © 2014 Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 24462186      PMCID: PMC3927447          DOI: 10.1016/j.devcel.2013.12.013

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  53 in total

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  34 in total

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6.  BuGZ facilitates loading of spindle assembly checkpoint proteins to kinetochores in early mitosis.

Authors:  Hazheen K Shirnekhi; Jacob A Herman; Patrick J Paddison; Jennifer G DeLuca
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9.  Phylogenetic convergence of phase separation and mitotic function in the disordered protein BuGZ.

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10.  Phase transition of spindle-associated protein regulate spindle apparatus assembly.

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