Aurora A activation in mitosis promoted by BuGZ

Yuejia Huang(Carnegie Institution for Science), Teng Li(Carnegie Institution for Science), Stephanie C. Ems-McClung(Indiana University Bloomington), Claire Walczak(Indiana University Bloomington), Claude Prigent(Institut de génétique et de développement de Rennes), Xueliang Zhu(Chinese Academy of Sciences), Xuemin Zhang(National Center of Biomedical Analysis), Yixian Zheng(Carnegie Institution for Science)
The Journal of Cell Biology
October 26, 2017
Cited by 46Open Access
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Abstract

Protein phase separation or coacervation has emerged as a potential mechanism to regulate biological functions. We have shown that coacervation of a mostly unstructured protein, BuGZ, promotes assembly of spindle and its matrix. BuGZ in the spindle matrix binds and concentrates tubulin to promote microtubule (MT) assembly. It remains unclear, however, whether BuGZ could regulate additional proteins to promote spindle assembly. In this study, we report that BuGZ promotes Aurora A (AurA) activation in vitro. Depletion of BuGZ in cells reduces the amount of phosphorylated AurA on spindle MTs. BuGZ also enhances MCAK phosphorylation. The two zinc fingers in BuGZ directly bind to the kinase domain of AurA, which allows AurA to incorporate into the coacervates formed by BuGZ in vitro. Importantly, mutant BuGZ that disrupts the coacervation activity in vitro fails to promote AurA phosphorylation in Xenopus laevis egg extracts. These results suggest that BuGZ coacervation promotes AurA activation in mitosis.


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