Structure of a Blinkin-BUBR1 complex reveals an interaction crucial for kinetochore-mitotic checkpoint regulation via an unanticipated binding Site.
The maintenance of genomic stability relies on the spindle assembly checkpoint (SAC), which ensures accurate chromosome segregation by delaying the onset of anaphase until all chromosomes are properly bioriented and attached to the mitotic spindle. BUB1 and BUBR1 kinases are central for this process...
Main Authors: | Bolanos-Garcia, V, Lischetti, T, Matak-Vinković, D, Cota, E, Simpson, P, Chirgadze, D, Spring, DR, Robinson, C, Nilsson, J, Blundell, T |
---|---|
Format: | Journal article |
Language: | English |
Published: |
2011
|
Similar Items
-
Structure of a Blinkin-BUBR1 Complex Reveals an Interaction Crucial for Kinetochore-Mitotic Checkpoint Regulation via an Unanticipated Binding Site (vol 19, pg 1691, 2011)
by: Bolanos-Garcia, V, et al.
Published: (2011) -
Structure of a Blinkin-BUBR1 Complex Reveals an Interaction Crucial for Kinetochore-Mitotic Checkpoint Regulation via an Unanticipated Binding Site (vol 19, pg 1691, 2011)
by: Bolanos-Garcia, V, et al.
Published: (2011) -
The crystal structure of the N-terminal region of BUB1 provides insight into the mechanism of BUB1 recruitment to kinetochores.
by: Bolanos-Garcia, V, et al.
Published: (2009) -
Drosophila CENP-A mutations cause a BubR1-dependent early mitotic delay without normal localization of kinetochore components.
by: Michael D Blower, et al.
Published: (2006-07-01) -
Two functionally distinct kinetochore pools of BubR1 ensure accurate chromosome segregation
by: Gang Zhang, et al.
Published: (2016-07-01)