In vitro reconstitution of minimal human centrosomes
Rios, M. U.; Stachera, W.; Familiari, N. E.; Brito, C.; Surrey, T.; Woodruff, J. B.
Show abstract
CDK5RAP2/CEP215 is a key pericentriolar material (PCM) protein that recruits microtubule-nucleating factors at human centrosomes. Using an in vitro reconstitution system, we show that CDK5RAP2 is sufficient to form micron-scale scaffolds around a nanometer-scale nucleator in a PLK-1-regulated manner. CDK5RAP2 assemblies recruited and activated gamma tubulin ring complexes ({gamma}-TuRCs) which, in the presence of /{beta} tubulin, generated microtubule asters. We found that F75 in CDK5RAP2 is partially needed to recruit {gamma}-TuRC yet is indispensable for {gamma}-TuRC activation. Furthermore, our system recapitulated key features of centrosome-amplified cancer cells. CDK5RAP2 scaffolds selectively recruited the molecular motor KifC1/HSET, which enhanced concentration of /{beta} tubulin, microtubule polymerization, and clustering of the assemblies. Our results highlight the specificity and selectivity of in vitro generated CDK5RAP2 scaffolds and identify a minimal set of components required for human centrosome assembly and function. This minimal centrosome model offers a powerful tool for studying centrosome biology and dysfunction in human health and disease.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- WDR90 is a centriolar microtubule wall protein important for centriole architecture integrity. 96%
- TRIM37 prevents formation of centriolar protein assemblies by regulating Centrobin stability 96%
- The Kinesin-5 Tail Domain Directly Modulates the Mechanochemical Cycle of the Motor for Anti-Parallel Microtubule Sliding 96%
Similar papers in this journal
- Stable kinetochore-microtubule attachment requires loop-dependent Ndc80-Ndc80 binding 97%
- Structure of the RZZ complex and molecular basis of Spindly-driven corona assembly at human kinetochores 97%
- Phase transition of spindle pole localized protein orchestrates nuclear organization at mitotic exit 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.