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Humphrey, L.

Publications and source records attributed to Humphrey, L..

2 recordsLinked to original sources

Bub1 availability limits the Spindle Assembly Checkpoint signaling strength of human kinetochores

During mitosis, unattached kinetochores in a dividing cell signal to the Spindle Assembly Checkpoint to delay anaphase onset and prevent chromosome missegregation 1-4. The signaling activity of these kinetochores and the likelihood of chromosome missegregation both depend on the amount of SAC signaling proteins that each kinetochore recruits 5-8. Therefore, factors that control SAC protein recruitment to signaling kinetochores must be thoroughly understood. Phosphoregulation of kinetochore and SAC signaling proteins emerging from the concerted action of many kinases and phosphatases is a major determinant of SAC protein recruitment to signaling kinetochores 9. Whether the abundance of SAC proteins also influences their recruitment and signaling activity at human kinetochores has not been studied 8, 10. Here, we reveal that the low cellular abundance of the SAC signaling protein Bub1 limits kinetochore recruitment of Bub1 and BubR1 and reduces the SAC signaling activity of the kinetochore. Conversely, Bub1 overexpression results in higher protein recruitment and SAC activity producing longer delays in anaphase onset. We also find that the number of SAC proteins recruited by a signaling kinetochore is inversely correlated with the total number of signaling kinetochores in the cell. This correlation likely arises from the competition among the signaling kinetochores to recruit from a limited pool of signaling proteins. The inverse correlation between the number of signaling kinetochores in the cell and the signaling activity of individual kinetochores may allow the dividing cell to prevent the large number of signaling kinetochores in prophase from generating an unnecessarily large signal, while enabling the last unaligned kinetochore to signal at the maximum possible strength.

cell biology↗

BubR1 recruitment to the kinetochore via Bub1 enhances Spindle Assembly Checkpoint signaling

During mitosis, unattached kinetochores in a dividing cell activate the Spindle Assembly Checkpoint (SAC) and delay anaphase onset by generating the anaphase-inhibitory Mitotic Checkpoint Complex (MCC). These kinetochores generate the MCC by recruiting MCC constituent proteins, including BubR1. In principle, BubR1 recruitment to signaling kinetochores should increase its local concentration and promote MCC formation. However, in human cells BubR1 is mainly thought to sensitize the SAC to silencing; whether BubR1 localization to signaling kinetochores per se enhances SAC signaling activity remains unknown. Therefore, we used ectopic SAC activation systems (eSAC) to isolate two molecules that recruit BubR1 to the kinetochore: the checkpoint protein Bub1 and the KI and MELT motifs in the kinetochore protein KNL1, and observed their contribution to eSAC signaling. Our quantitative analyses and mathematical modeling show that the Bub1-mediated BubR1 recruitment to the human kinetochore promotes SAC signaling and highlight BubR1s dual role of directly strengthening the SAC and indirectly silencing it.

cell biology↗