Sgo1 interacts with CENP-A to guide accurate chromosome segregation in mitosis

Author:

Wu Fengge1,Akbar Hameed1,Wang Chunyue1,Yuan Xiao12,Dou Zhen123ORCID,Mullen McKay13,Niu Liwen12,Zhang Liang1ORCID,Zang Jianye1,Wang Zhikai12,Yao Xuebiao12,Song Xiaoyu12,Liu Xing12ORCID

Affiliation:

1. MOE Key Laboratory for Cellular Dynamics, the First Affiliated Hospital, Center for Advanced Interdisciplinary Science and Biomedicine of Institute of Health and Medicine (IHM), University of Science and Technology of China School of Life Sciences , Hefei 230026 , China

2. Anhui Key Laboratory for Cellular Dynamics and Chemical Biology, Hefei National Center for Cross-disciplinary Sciences , Hefei 230027 , China

3. Keck Center for Cellular Dynamics, Morehouse School of Medicine , Atlanta, GA 30310 , USA

Abstract

Abstract Shugoshin-1 (Sgo1) is necessary for maintaining sister centromere cohesion and ensuring accurate chromosome segregation during mitosis. It has been reported that the localization of Sgo1 at the centromere is dependent on Bub1-mediated phosphorylation of histone H2A at T120. However, it remains uncertain whether other centromeric proteins play a role in regulating the localization and function of Sgo1 during mitosis. Here, we show that CENP-A interacts with Sgo1 and determines the localization of Sgo1 to the centromere during mitosis. Further biochemical characterization revealed that lysine and arginine residues in the C-terminal domain of Sgo1 are critical for binding CENP-A. Interestingly, the replacement of these basic amino acids with acidic amino acids perturbed the localization of Sgo1 and Aurora B to the centromere, resulting in aberrant chromosome segregation and premature chromatid separation. Taken together, these findings reveal a previously unrecognized but direct link between Sgo1 and CENP-A in centromere plasticity control and illustrate how the Sgo1–CENP-A interaction guides accurate cell division.

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Genetics,Molecular Biology,General Medicine

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