大阪大学 · 生化学・遺伝学・分子生物学
福川達夫教授の研究室では、真核生物の染色体分離を制御する中心体(centromere)とキネトコアの形成機構を、主にショウジョウイエムシ(DT40細胞)をモデル系として、エピジェネティクス的制御と染色体構造の関係に注目して解明しています。特にCENP-Aを核心とする特異的染色体クロマチンの形成、およびその修飾メカニズムや人工染色体を用いた機能解析が中心です。近年では、非反復的DNA配列上に形成されるニューセンタロメアの機構や、ヒストン修飾(H4K20me1)の役割についても革新的な発見を続けています。
Figures are computed from collected data and may differ slightly.
Since discovery of the centromere-specific histone H3 variant CENP-A, centromeres have come to be defined as chromatin structures that establish the assembly site for the complex kinetochore machinery. In most organisms, centromere activity is defined epigenetically, rather than by specific DNA sequences. In this review, we describe selected classic work and recent progress in studies of centromeric chromatin with a focus on vertebrates. We consider possible roles for repetitive DNA sequences fo
Centromeres are specified by sequence-independent epigenetic mechanisms in most organisms. Rarely, centromere repositioning results in neocentromere formation at ectopic sites. However, the mechanisms governing how and where neocentromeres form are unknown. Here, we established a chromosome-engineering system in chicken DT40 cells that allowed us to efficiently isolate neocentromere-containing chromosomes. Neocentromeres appear to be structurally and functionally equivalent to native centromeres
In vertebrate cells, centromeres are specified epigenetically through the deposition of the centromere-specific histone CENP-A. Following CENP-A deposition, additional proteins are assembled on centromeric chromatin. However, it remains unknown whether additional epigenetic features of centromeric chromatin are required for kinetochore assembly. Here, we used ChIP-seq analysis to examine centromere-specific histone modifications at chicken centromeres, which lack highly repetitive sequences. We
We have used gene targeting in the DT40 cell line to create a cell line which expresses a fusion between CENP-C and a mouse steroid receptor and which behaves as a conditional loss of function mutant of CENP-C. Under restrictive conditions these cells arrest at the metaphase/anaphase junction and after a delay of approximately 2.5 h die by apoptosis. These results indicate that CENP-C is either necessary for anaphase chromosome movement or for mediating a signal which triggers centromere functio
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