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Defining the molecular basis of BubR1 kinetochore interactions and APC/C-CDC20 inhibition.

Published version
Peer-reviewed

Type

Article

Change log

Authors

D'Arcy, Sheena 
Davies, Owen R 
Blundell, Tom L 
Bolanos-Garcia, Victor M 

Abstract

BubR1 is essential for the mitotic checkpoint that prevents aneuploidy in cellular progeny by triggering anaphase delay in response to kinetochores incorrectly/not attached to the mitotic spindle. Here, we define the molecular architecture of the functionally significant N-terminal region of human BubR1 and present the 1.8 A crystal structure of its tetratricopeptide repeat (TPR) domain. The structure reveals divergence from the classical TPR fold and is highly similar to the TPR domain of budding yeast Bub1. Shared distinctive features include a disordered loop insertion, a 3(10)-helix, a tight turn involving glycine positive Phi angles, and noncanonical packing of and between the TPR motifs. We also define the molecular determinants of the interaction between BubR1 and kinetochore protein Blinkin. We identify a shallow groove on the concave surface of the BubR1 TPR domain that forms multiple discrete and potentially cooperative interactions with Blinkin. Finally, we present evidence for a direct interaction between BubR1 and Bub1 mediated by regions C-terminal to their TPR domains. This interaction provides a mechanism for Bub1-dependent kinetochore recruitment of BubR1. We thus present novel molecular insights into the structure of BubR1 and its interactions at the kinetochore-microtubule interface. Our studies pave the way for future structure-directed engineering aimed at dissecting the roles of kinetochore-bound and other pools of BubR1 in vivo.

Description

Keywords

Amino Acid Sequence, Anaphase-Promoting Complex-Cyclosome, Cdc20 Proteins, Cell Cycle Proteins, Crystallization, Crystallography, X-Ray, Humans, Kinetochores, Microtubule-Associated Proteins, Microtubules, Molecular Sequence Data, Protein Conformation, Protein Serine-Threonine Kinases, Sequence Homology, Amino Acid, Two-Hybrid System Techniques, Ubiquitin-Protein Ligase Complexes

Journal Title

J Biol Chem

Conference Name

Journal ISSN

0021-9258
1083-351X

Volume Title

285

Publisher

Elsevier BV

Rights

All rights reserved