Human centromere chromatin protein hMis12, essential for equal segregation, is independent of CENP-A loading pathway
Open Access
- 6 January 2003
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 160 (1), 25-39
- https://doi.org/10.1083/jcb.200210005
Abstract
Kinetochores are the chromosomal sites for spindle interaction and play a vital role for chromosome segregation. The composition of kinetochore proteins and their cellular roles are, however, poorly understood in higher eukaryotes. We identified a novel kinetochore protein family conserved from yeast to human that is essential for equal chromosome segregation. The human homologue hMis12 of yeast spMis12/scMtw1 retains conserved sequence features and locates at the kinetochore region indistinguishable from CENP-A, a centromeric histone variant. RNA interference (RNAi) analysis of HeLa cells shows that the reduced hMis12 results in misaligned metaphase chromosomes, lagging anaphase chromosomes, and interphase micronuclei without mitotic delay, while CENP-A is located at kinetochores. Further, the metaphase spindle length is abnormally extended. Spindle checkpoint protein hMad2 temporally localizes at kinetochores at early mitotic stages after RNAi. The RNAi deficiency of CENP-A leads to a similar mitotic phenotype, but the kinetochore signals of other kinetochore proteins, hMis6 and CENP-C, are greatly diminished. RNAi for hMis6, like that of a kinetochore kinesin CENP-E, induces mitotic arrest. Kinetochore localization of hMis12 is unaffected by CENP-A RNAi, demonstrating an independent pathway of CENP-A in human kinetochores.Keywords
This publication has 47 references indexed in Scilit:
- CENP-I Is Essential for Centromere Function in Vertebrate CellsDevelopmental Cell, 2002
- Visualization of a Ran-GTP Gradient in Interphase and Mitotic Xenopus Egg ExtractsScience, 2002
- Ctf3p, the Mis6 budding yeast homolog, interacts with Mcm22p and Mcm16p at the yeast outer kinetochoreGenes & Development, 2002
- Requirement of Heterochromatin for Cohesion at CentromeresScience, 2001
- Recruitment of cohesin to heterochromatic regions by Swi6/HP1 in fission yeastNature Cell Biology, 2001
- Genomic and Genetic Definition of a Functional Human CentromereScience, 2001
- Waiting for AnaphaseCell, 2000
- Methods and Statistics for Combining Motif Match ScoresJournal of Computational Biology, 1998
- The chromatin structure of centromeres from fission yeast: differentiation of the central core that correlates with function.The Journal of cell biology, 1991
- CENP-B: a major human centromere protein located beneath the kinetochore.The Journal of cell biology, 1990