Molecular Biology of the Cell · 2007 · 195 citations · 30 references
GeneticsGenomic MechanismMolecular BiologyCytoskeletonMolecular GeneticsCell CycleMulti-protein AssemblySurprising PlasticityKinetochore LocalizationCell DivisionMacromolecular MachineMeiosisDna ReplicationNuclear OrganizationCell BiologyChromatin FunctionBiologyChromatinChromosome DynamicsChromatin StructureChromosome SegregationNatural SciencesChromosome BiologyCellular StructureMedicine
Chromosome segregation during mitosis requires the assembly of a large proteinaceous structure termed the kinetochore. In Caenorhabditis elegans, KNL-1 is required to target multiple outer kinetochore proteins. Here, we demonstrate that the vertebrate KNL1 counterpart is essential for chromosome segregation and is required to localize a subset of outer kinetochore proteins. However, unlike in C. elegans, depletion of vertebrate KNL1 does not abolish kinetochore localization of the microtubule-binding Ndc80 complex. Instead, we show that KNL1 and CENP-K, a subunit of a constitutively centromere-associated complex that is missing from C. elegans, coordinately direct Ndc80 complex localization. Simultaneously reducing both hKNL1 and CENP-K function abolishes all aspects of kinetochore assembly downstream of centromeric chromatin and causes catastrophic chromosome segregation defects. These findings explain discrepancies in kinetochore assembly pathways between different organisms and reveal a surprising plasticity in the assembly mechanism of an essential cell division organelle.
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Kinetochore Microtubule Dynamics and Attachment Stability Are Regulated by Hec1
Jennifer G. DeLuca, Walter Gall, Claudio Ciferri et al. · Cell · 2006 · 761 citations · Full text
The human CENP-A centromeric nucleosome-associated complex
Daniel R. Foltz, Lars E.T. Jansen, Ben E. Black et al. · Nature Cell Biology · 2006 · 737 citations