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Merck

Structural Basis for Mitotic Centrosome Assembly in Flies.

Cell (2017-06-03)
Zhe Feng, Anna Caballe, Alan Wainman, Steven Johnson, Andreas F M Haensele, Matthew A Cottee, Paul T Conduit, Susan M Lea, Jordan W Raff
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In flies, Centrosomin (Cnn) forms a phosphorylation-dependent scaffold that recruits proteins to the mitotic centrosome, but how Cnn assembles into a scaffold is unclear. We show that scaffold assembly requires conserved leucine zipper (LZ) and Cnn-motifย 2 (CM2) domains that co-assemble into a 2:2 complex inย vitro. We solve the crystal structure of theย LZ:CM2 complex, revealing that both proteins form helical dimers that assemble into an unusual tetramer. A slightly longer version of the LZ can form micron-scale structures with CM2, whose assembly is stimulated by Plk1 phosphorylation inย vitro. Mutating individual residues that perturb LZ:CM2 tetramer assembly perturbs the formation of these micron-scale assemblies inย vitro and Cnn-scaffold assembly inย vivo. Thus, Cnn molecules have an intrinsic ability to form large, LZ:CM2-interaction-dependent assemblies that are critical for mitotic centrosome assembly. These studies provide the first atomic insight into a molecular interaction required for mitotic centrosome assembly.

MATERIALS
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Sigma-Aldrich
Adenosine 5โ€ฒ-triphosphate disodium salt hydrate, BioXtra, ≥99% (HPLC), from microbial
Sigma-Aldrich
Anti-Actin antibody, Mouse monoclonal, clone AC-40, purified from hybridoma cell culture