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组蛋白H3和Cse4p的剂量改变和定位错误导致酿酒酵母中的染色体丢失。

Altered dosage and mislocalization of histone H3 and Cse4p lead to chromosome loss in Saccharomyces cerevisiae.

作者信息

Au Wei-Chun, Crisp Matthew J, DeLuca Steven Z, Rando Oliver J, Basrai Munira A

机构信息

Genetics Branch Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20889, USA.

出版信息

Genetics. 2008 May;179(1):263-75. doi: 10.1534/genetics.108.088518. Epub 2008 May 5.

Abstract

Cse4p is an essential histone H3 variant in Saccharomyces cerevisiae that defines centromere identity and is required for proper segregation of chromosomes. In this study, we investigated phenotypic consequences of Cse4p mislocalization and increased dosage of histone H3 and Cse4p, and established a direct link between histone stoichiometry, mislocalization of Cse4p, and chromosome segregation. Overexpression of the stable Cse4p mutant, cse4(K16R), resulted in its mislocalization, increased association with chromatin, and a high rate of chromosome loss, all of which were suppressed by constitutive expression of histone H3 (delta 16H3). We determined that delta 16H3 did not lead to increased chromosome loss; however, increasing the dosage of histone H3 (GALH3) resulted in significant chromosome loss due to reduced levels of centromere (CEN)-associated Cse4p and synthetic dosage lethality (SDL) in kinetochore mutants. These phenotypes were suppressed by GALCSE4. We conclude that the chromosome missegregation of GALcse4(K16R) and GALH3 strains is due to mislocalization and a functionally compromised kinetochore, respectively. Suppression of these phenotypes by histone delta 16H3 and GALCSE4 supports the conclusion that proper stoichiometry affects the localization of histone H3 and Cse4p and is thus essential for accurate chromosome segregation.

摘要

Cse4p是酿酒酵母中一种必需的组蛋白H3变体,它定义着丝粒身份,是染色体正确分离所必需的。在本研究中,我们调查了Cse4p定位错误以及组蛋白H3和Cse4p剂量增加的表型后果,并建立了组蛋白化学计量、Cse4p定位错误与染色体分离之间的直接联系。稳定的Cse4p突变体cse4(K16R)的过表达导致其定位错误、与染色质的结合增加以及染色体丢失率升高,而所有这些都被组蛋白H3的组成型表达(delta 16H3)所抑制。我们确定delta 16H3不会导致染色体丢失增加;然而,增加组蛋白H3(GALH3)的剂量会导致显著的染色体丢失,这是由于着丝粒(CEN)相关的Cse4p水平降低以及动粒突变体中的合成剂量致死性(SDL)所致。这些表型被GALCSE4所抑制。我们得出结论,GALcse4(K16R)和GALH3菌株的染色体错分离分别是由于定位错误和功能受损的动粒所致。组蛋白delta 16H3和GALCSE4对这些表型的抑制支持了这样的结论:适当的化学计量会影响组蛋白H3和Cse4p的定位,因此对于准确的染色体分离至关重要。

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