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PMID: 25135934 Published · ppublish English

A cooperative mechanism drives budding yeast kinetochore assembly downstream of CENP-A.

The Journal of cell biology ·Vol. 206 ·No. 4 ·2014-11-18

Hornung Peter, Troc Paulina, Malvezzi Francesca, Maier Michael, Demianova Zuzana, Zimniak Tomasz, Litos Gabriele, Lampert Fabienne, Schleiffer Alexander, Brunner Matthias, Mechtler Karl, Herzog Franz, Marlovits Thomas C, Westermann Stefan

Abstract

Kinetochores are megadalton-sized protein complexes that mediate chromosome-microtubule interactions in eukaryotes. How kinetochore assembly is triggered specifically on centromeric chromatin is poorly understood. Here we use biochemical reconstitution experiments alongside genetic and structural analysis to delineate the contributions of centromere-associated proteins to kinetochore assembly in yeast. We show that the conserved kinetochore subunits Ame1(CENP-U) and Okp1(CENP-Q) form a DNA-binding complex that associates with the microtubule-binding KMN network via a short Mtw1 recruitment motif in the N terminus of Ame1. Point mutations in the Ame1 motif disrupt kinetochore function by preventing KMN assembly on chromatin. Ame1-Okp1 directly associates with the centromere protein C (CENP-C) homologue Mif2 to form a cooperative binding platform for outer kinetochore assembly. Our results indicate that the key assembly steps, CENP-A recognition and outer kinetochore recruitment, are executed through different yeast constitutive centromere-associated network subunits. This two-step mechanism may protect against inappropriate kinetochore assembly similar to rate-limiting nucleation steps used by cytoskeletal polymers.

Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
Published
2014-11-18
Indexed
2014-08-19
Updated
2015-08-04
Language
English
Country/Region
United States
NLM ID
0375356
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