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PMID: 22207360 Published · ppublish English

Assembling pieces of the centromere epigenetics puzzle.

Epigenetics ·Vol. 7 ·No. 1 ·2012-10-22

González-Barrios Rodrigo, Soto-Reyes Ernesto, Herrera Luis A

Abstract

The centromere is a key region for cell division where the kinetochore assembles, recognizes and attaches to microtubules so that each sister chromatid can segregate to each daughter cell. The centromeric chromatin is a unique rigid chromatin state promoted by the presence of the histone H3 variant CENP-A, in which epigenetic histone modifications of both heterochromatin or euchromatin states and associated protein elements are present. Although DNA sequence is not regarded as important for the establishment of centromere chromatin, it has become clear that this structure is formed as a result of a highly regulated epigenetic event that leads to the recruitment and stability of kinetochore proteins. We describe an integrative model for epigenetic processes that conform regional chromatin interactions indispensable for the recruitment and stability of kinetochore proteins. If alterations of these chromatin regions occur, chromosomal instability is promoted, although segregation may still take place.

Article Info
Journal
Epigenetics
Abbr.
Epigenetics
Published
2012-10-22
Indexed
2012-07-10
Updated
2015-07-27
Language
English
Country/Region
United States
NLM ID
101265293
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