4.4 Article

Biphasic incorporation of centromeric histone CENP-A in fission yeast

期刊

MOLECULAR BIOLOGY OF THE CELL
卷 19, 期 2, 页码 682-690

出版社

AMER SOC CELL BIOLOGY
DOI: 10.1091/mbc.E07-05-0504

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资金

  1. Ministry of Education, Culture, Sports, Science and Technology
  2. Toray Science Foundation
  3. Time's Arrow and Biosignaling
  4. Precursory Research for Embryonic Science and Technology
  5. Japan Science and Technology Agency

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CENP-A is a centromere-specific histone H3 variant that is essential for kinetochore formation. Here, we report that the fission yeast Schizosaccharomyces pombe has at least two distinct CENP-A deposition phases across the cell cycle: S and G2. The S phase deposition requires Ams2 GATA factor, which promotes histone gene activation. In Delta ams2, CENP-A fails to retain during S, but it reaccumulates onto centromeres via the G2 deposition pathway, which is down-regulated by Hip1, a homologue of HIRA histone chaperon. Reducing the length of G2 in Delta ams2 results in failure of CENP-A accumulation, leading to chromosome missegregation. N-terminal green fluorescent protein-tagging reduces the centromeric association of CENP-A, causing cell death in Delta ams2 but not in wild-type cells, suggesting that the N-terminal tail of CENP-A may play a pivotal role in the formation of centromeric nucleosomes at G2. These observations imply that CENP-A is normally localized to centromeres in S phase in an Ams2-dependent manner and that the G2 pathway may salvage CENP-A assembly to promote genome stability. The flexibility of CENP-A incorporation during the cell cycle may account for the plasticity of kinetochore formation when the authentic centromere is damaged.

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