Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo, Japan.
Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo, Japan.
Genes Cells. 2024 Jul;29(7):567-583. doi: 10.1111/gtc.13132. Epub 2024 Jun 5.
Chromatin condensation state is the key for retrieving genetic information. High-mobility group protein (HMG) proteins exhibit DNA-binding and bending activities, playing an important role in the regulation of chromatin structure. We have shown that nucleosomes tightly packaged into heterochromatin undergo considerable dynamic histone H2A-H2B maintenance via the direct interaction between HP1/Swi6 and facilitate chromatin transcription (FACT), which is composed of the Spt16/Pob3 heterodimer and Nhp6. In this study, we analyzed the role of Nhp6, an HMG box protein, in the FACT at heterochromatin. Pob3 mutant strains showed derepressed heterochromatin-dependent gene silencing, whereas Nhp6 mutant strains did not show significant defects in chromatin regulation or gene expression, suggesting that these two modules play different roles in chromatin regulation. We expressed a protein fusing Nhp6 to the C-terminus of Pob3, which mimics the multicellular FACT component Ssrp1. The chromatin-binding activity of FACT increased with the number of Nhp6 fused to Pob3, and the heterochromatin formation rate was promoted more strongly. Furthermore, we demonstrated that this promotion of heterochromatinization inhibited the heterochromatic variegation caused by epe1 disruption. Heterochromatic variegation can be observed in a variety of regulatory steps; however, when it is caused by fluctuations in chromatin arrangement, it can be eliminated through the strong recruitment of the FACT complex.
染色质凝聚状态是获取遗传信息的关键。高迁移率族蛋白 (HMG) 蛋白具有 DNA 结合和弯曲活性,在调节染色质结构方面发挥着重要作用。我们已经表明,紧密包装成异染色质的核小体通过 HP1/Swi6 与 FACT(由 Spt16/Pob3 异二聚体和 Nhp6 组成)之间的直接相互作用经历相当大的组蛋白 H2A-H2B 维持,从而促进染色质转录。在这项研究中,我们分析了 HMG 盒蛋白 Nhp6 在异染色质 FACT 中的作用。Pob3 突变株表现出异染色质依赖性基因沉默的去抑制,而 Nhp6 突变株在染色质调控或基因表达方面没有表现出明显缺陷,这表明这两个模块在染色质调控中发挥不同的作用。我们表达了一种将 Nhp6 融合到 Pob3 羧基末端的融合蛋白,该蛋白模拟了多细胞 FACT 成分 Ssrp1。FACT 的染色质结合活性随着融合到 Pob3 上的 Nhp6 数量的增加而增加,异染色质形成率得到了更强烈的促进。此外,我们证明了这种异染色质化的促进抑制了 epe1 破坏引起的异染色质斑驳。异染色质斑驳可以在多种调控步骤中观察到;然而,当它是由染色质排列的波动引起时,可以通过 FACT 复合物的强烈募集来消除。