CHK2-BRCA1 tumor-suppressor axis restrains oncogenic Aurora-A kinase to ensure proper mitotic microtubule assembly
Norman Ertych1, Ailine Stolz1, Oliver Valerius2
1Section for Cellular Oncology, Institute of Molecular Oncology, University Medical Center Göttingen, D-37077 Göttingen, Germany; Göttingen Center for Molecular Biosciences (GZMB), Georg-August University Göttingen, D-37077 Göttingen, Germany;
Abstract:
BRCA1 (breast cancer type 1 susceptibility protein) is a multifunctional tumor suppressor involved in DNA damage response, DNA repair, chromatin regulation, and mitotic chromosome segregation. Although the nuclear functions of BRCA1 have been investigated in detail, its role during mitosis is little understood. It is clear, however, that loss of BRCA1 in human cancer cells leads to chromosomal instability (CIN), which is defined as a perpetual gain or loss of whole chromosomes during mitosis. Moreover, our recent work has revealed that the mitotic function of BRCA1 depends on its phosphorylation by the tumor-suppressor kinase Chk2 (checkpoint kinase 2) and that this regulation is required to ensure normal microtubule plus end assembly rates within mitotic spindles. Intriguingly, loss of the positive regulation of BRCA1 leads to increased oncogenic Aurora-A activity, which acts as a mediator for abnormal mitotic microtubule assembly resulting in chromosome missegregation and CIN. However, how the CHK2-BRCA1 tumor suppressor axis restrains oncogenic Aurora-A during mitosis to ensure karyotype stability remained an open question. Here we uncover a dual molecular mechanism by which the CHK2-BRCA1 axis restrains oncogenic Aurora-A activity during mitosis and identify BRCA1 itself as a target for Aurora-A relevant for CIN. In fact, Chk2-mediated phosphorylation of BRCA1 is required to recruit the PP6C-SAPS3 phosphatase, which acts as a T-loop phosphatase inhibiting Aurora-A bound to BRCA1. Consequently, loss of CHK2 or PP6C-SAPS3 promotes Aurora-A activity associated with BRCA1 in mitosis. Aurora-A, in turn, then phosphorylates BRCA1 itself, thereby inhibiting the mitotic function of BRCA1 and promoting mitotic microtubule assembly, chromosome missegregation, and CIN.
Insights
The BRCA1 tumor suppressor
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- BRCA1 (breast cancer type 1 susceptibility protein) is a tumor suppressor crucial for DNA repair and genomic stability.
- Its role in mitosis and regulation of chromosomal instability (CIN) is not fully understood.
- Loss of BRCA1 function is linked to CIN in human cancers.
Purpose of the Study:
- To elucidate the molecular mechanism by which the CHK2-BRCA1 axis restrains Aurora-A activity during mitosis.
- To identify BRCA1 as a target for Aurora-A and its role in CIN.
Main Methods:
- Investigated the interaction between BRCA1, Chk2, Aurora-A, and PP6C-SAPS3.
- Utilized biochemical assays and cell-based experiments to analyze protein phosphorylation and localization.
- Assessed the impact of these interactions on mitotic spindle assembly and chromosome segregation.
Main Results:
- Discovered a dual mechanism where Chk2-phosphorylated BRCA1 recruits PP6C-SAPS3 phosphatase to inhibit Aurora-A.
- Loss of Chk2 or PP6C-SAPS3 leads to increased Aurora-A activity associated with BRCA1.
- Aurora-A phosphorylates BRCA1, inhibiting its mitotic function and promoting CIN.
Conclusions:
- The CHK2-BRCA1 axis is essential for restraining oncogenic Aurora-A activity during mitosis.
- This regulatory axis ensures karyotype stability by preventing BRCA1 inhibition and subsequent CIN.
- BRCA1 is a direct target of Aurora-A, highlighting a critical feedback loop in mitotic regulation.
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