Okuwaki Mitsuru, Kato Kohsuke, Shimahara Hideto, Tate Shin-ichi, Nagata Kyosuke
Graduate School of Comprehensive Human Sciences and Institute of Basic Medical Sciences, University of Tsukuba, 1-1-1 Tennohdai, Tsukuba 305-8575, Japan.
Mol Cell Biol. 2005 Dec;25(23):10639-51. doi: 10.1128/MCB.25.23.10639-10651.2005.
Histone variants play important roles in the maintenance and regulation of the chromatin structure. In order to characterize the biochemical properties of the chromatin structure containing histone variants, we investigated the dynamic status of nucleosome core particles (NCPs) that were assembled with recombinant histones. We found that in the presence of nucleosome assembly protein I (NAP-I), a histone chaperone, H2A-Barr body deficient (H2A.Bbd) confers the most flexible nucleosome structure among the mammalian histone H2A variants known thus far. NAP-I mediated the efficient assembly and disassembly of the H2A.Bbd-H2B dimers from NCPs. This reaction was accomplished more efficiently when the NCPs contained H3.3, a histone H3 variant known to be localized in the active chromatin, than when the NCPs contained the canonical H3. These observations indicate that the histone variants H2A.Bbd and H3.3 are involved in the formation and maintenance of the active chromatin structure. We also observed that acidic histone binding proteins, TAF-I/SET and B23.1, demonstrated dimer assembly and disassembly activity, but the efficiency of their activity was considerably lower than that of NAP-I. Thus, both the acidic nature of NAP-I and its other functional structure(s) may be essential to mediate the assembly and disassembly of the dimers in NCPs.
组蛋白变体在染色质结构的维持和调控中发挥着重要作用。为了表征含有组蛋白变体的染色质结构的生化特性,我们研究了用重组组蛋白组装的核小体核心颗粒(NCPs)的动态状态。我们发现,在核小体组装蛋白I(NAP-I)(一种组蛋白伴侣)存在的情况下,H2A-巴氏小体缺陷型(H2A.Bbd)在迄今为止已知的哺乳动物组蛋白H2A变体中赋予了最灵活的核小体结构。NAP-I介导了H2A.Bbd-H2B二聚体从NCPs的高效组装和拆卸。当NCPs含有H3.3(一种已知定位于活性染色质中的组蛋白H3变体)时,该反应比NCPs含有经典H3时更有效地完成。这些观察结果表明,组蛋白变体H2A.Bbd和H3.3参与了活性染色质结构的形成和维持。我们还观察到,酸性组蛋白结合蛋白TAF-I/SET和B23.1表现出二聚体组装和拆卸活性,但其活性效率远低于NAP-I。因此,NAP-I的酸性性质及其其他功能结构可能对于介导NCPs中二聚体的组装和拆卸至关重要。