A chromatin-associated pool of Aurora A controls kinetochore-microtubule attachments to ensure chromosome biorientation
- Meaders, Johnathan L;
- Rodriguez, Alyssa A;
- Variyar, Smriti;
- Park, SungWoo;
- Cirulli, Alessandro E;
- Oegema, Karen;
- Corbett, Kevin D;
- Desai, Arshad
Published Web Location
https://www.science.org/doi/10.1126/sciadv.aed5283Abstract
Accurate chromosome segregation requires dynamic kinetochore-microtubule attachments that, under the regulation of Aurora family kinases, biorient and align replicated chromosomes. In Caenorhabditis elegans, Aurora A acts with the TPX2-related activator TPXL-1 to regulate these attachments and control spindle length. We show that, in addition to prominent spindle pole localization, TPXL-1-AurA has a chromatin-associated pool positioned between the sister kinetochores. Structural modeling and biochemical analysis support TPXL-1 directly recognizing the nucleosome acidic patch via an arginine anchor. Disrupting this interaction selectively removed chromatin-bound TPXL-1-AurA and caused chromosome missegregation, whereas elevation of the chromatin pool disrupted chromosome alignment. These opposing perturbations inversely affected kinetochore recruitment of the microtubule-binding Ska complex. These results support spatially distinct TPXL-1-AurA populations acting sequentially, with the spindle pole pool controlling spindle length by switching kinetochores out of a depolymerization-coupled state, and the chromatin pool controlling attachment stabilization to ensure biorientation prior to anaphase.
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