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Burrack LS and Berman J  (2012) Flexibility of centromere and kinetochore structures. Trends Genet 28(5):204-12

Abstract: Centromeres, and the kinetochores that assemble on them, are essential for accurate chromosome segregation. Diverse centromere organization patterns and kinetochore structures have evolved in eukaryotes ranging from yeast to humans. In addition, centromere DNA and kinetochore position can vary even within individual cells. This flexibility is manifested in several ways: centromere DNA sequences evolve rapidly, kinetochore positions shift in response to altered chromosome structure, and kinetochore complex numbers change in response to fluctuations in kinetochore protein levels. Despite their differences, all of these diverse structures promote efficient chromosome segregation. This robustness is inherent to chromosome segregation mechanisms and balances genome stability with adaptability. In this review, we explore the mechanisms and consequences of centromere and kinetochore flexibility as well as the benefits and limitations of different experimental model systems for their study.

Status: Published Type: Journal Article PubMed ID: 22445183

Topics addressed in this paper

Number of different genes curated to this paper: 48

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Topics Genes linked to topics (#1 - 10 )
AME1 ASK1 BIK1 BIM1 BUB1 CBF1 CDC23 CHL4 CNN1 CRM1
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Topics Genes linked to topics (#11 - 20 )
CSE4 CTF19 CTF3 DAD1 DAD2 DAD3 DAD4 DAM1 DSN1 DUO1
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Topics Genes linked to topics (#21 - 30 )
HSK3 IML3 IPL1 KRE28 MAD1 MCM16 MCM21 MCM22 MTW1 NKP1
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Jump to Summary Chart for:
  • To find other papers on a gene and topic, click on the colored ball in the appropriate box.
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  • To go to the Locus page for a gene, click on the gene name.

Topics Genes linked to topics (#31 - 40 )
NKP2 NNF1 NSL1 NUF2 OKP1 SGO1 SKP1 SLI15 SLK19 SPC105
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Topics Genes linked to topics (#41 - 48 )
SPC19 SPC24 SPC25 SPC34 SPT4 STU1 STU2 TID3
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