Laboratory of Structural Biology, Graduate School of Advanced Science and Engineering, Waseda University, 2-2 Wakamatsu-cho, Shinjuku-ku, Tokyo 162-8480, Japan.
Nucleic Acids Res. 2013 Mar 1;41(5):2869-80. doi: 10.1093/nar/gks1464. Epub 2013 Jan 15.
CENP-B is a widely conserved centromeric satellite DNA-binding protein, which specifically binds to a 17-bp DNA sequence known as the CENP-B box. CENP-B functions positively in the de novo assembly of centromeric nucleosomes, containing the centromere-specific histone H3 variant, CENP-A. At the same time, CENP-B also prevents undesired assembly of the CENP-A nucleosome through heterochromatin formation on satellite DNA integrated into ectopic sites. Therefore, improper CENP-B binding to chromosomes could be harmful. However, no CENP-B eviction mechanism has yet been reported. In the present study, we found that human Nap1, an acidic histone chaperone, inhibited the non-specific binding of CENP-B to nucleosomes and apparently stimulated CENP-B binding to its cognate CENP-B box DNA in nucleosomes. In human cells, the CENP-B eviction activity of Nap1 was confirmed in model experiments, in which the CENP-B binding to a human artificial chromosome or an ectopic chromosome locus bearing CENP-B boxes was significantly decreased when Nap1 was tethered near the CENP-B box sequence. In contrast, another acidic histone chaperone, sNASP, did not promote CENP-B eviction in vitro and in vivo and did not stimulate specific CENP-B binding to CENP-A nucleosomes in vitro. We therefore propose a novel mechanism of CENP-B regulation by Nap1.
CENP-B 是一种广泛保守的着丝粒卫星 DNA 结合蛋白,它特异性地结合到一个 17 个碱基对的 DNA 序列,称为 CENP-B 盒。CENP-B 在着丝粒核小体的从头组装中起积极作用,包含着丝粒特异性组蛋白 H3 变体 CENP-A。同时,CENP-B 还通过将卫星 DNA 整合到异位位点形成异染色质来防止 CENP-A 核小体的不适当组装。因此,CENP-B 与染色体的不当结合可能是有害的。然而,目前还没有报道 CENP-B 驱逐机制。在本研究中,我们发现人类 Nap1,一种酸性组蛋白伴侣,抑制了 CENP-B 对核小体的非特异性结合,并明显刺激了 CENP-B 与其在核小体中的同源 CENP-B 盒 DNA 的结合。在人类细胞中,Nap1 在模型实验中证实了 CENP-B 的驱逐活性,其中当 Nap1 被束缚在 CENP-B 盒序列附近时,CENP-B 与人类人工染色体或带有 CENP-B 盒的异位染色体位点的结合显著减少。相比之下,另一种酸性组蛋白伴侣 sNASP 既不能促进体外和体内的 CENP-B 驱逐,也不能刺激体外 CENP-B 与 CENP-A 核小体的特异性结合。因此,我们提出了一种由 Nap1 调节 CENP-B 的新机制。