Li Zhihuan, Johnson Matthew R, Ke Zhonghe, Chen Lili, Welte Michael A
Department of Biology, University of Rochester, Rochester, NY 14627, USA.
Department of Biology, University of Rochester, Rochester, NY 14627, USA.
Curr Biol. 2014 Jul 7;24(13):1485-91. doi: 10.1016/j.cub.2014.05.022. Epub 2014 Jun 12.
Assembly of DNA into chromatin requires a delicate balancing act, as both dearth and excess of histones severely disrupt chromatin function [1-3]. In particular, cells need to carefully control histone stoichiometry: if different types of histones are incorporated into chromatin in an imbalanced manner, it can lead to altered gene expression, mitotic errors, and death [4-6]. Both the balance between individual core histones and the balance between core histones and histone variants are critical [5, 7]. Here, we find that in early Drosophila embryos, histone balance in the nuclei is regulated by lipid droplets, cytoplasmic fat-storage organelles [8]. Lipid droplets were previously known to function in long-term histone storage: newly laid embryos contain large amounts of excess histones generated during oogenesis [9], and the maternal supplies of core histone H2A and the histone variant H2Av are anchored to lipid droplets via the novel protein Jabba [3]. We find that in these embryos, synthesis of new H2A and H2Av is imbalanced, and that newly produced H2Av can be recruited to lipid droplets. When droplet sequestration is disrupted by mutating Jabba, embryos display an elevated H2Av/H2A ratio in nuclei as well as mitotic defects, reduced viability, and hypersensitivity to H2Av overexpression. We propose that in Drosophila embryos, lipid droplets serve as a histone buffer, not only storing maternal histones to support the early cell cycles but also transiently sequestering H2Av produced in excess and thus ensuring proper histone balance in the nucleus.
将DNA组装成染色质需要精妙的平衡,因为组蛋白缺乏或过量都会严重破坏染色质功能[1-3]。特别是,细胞需要仔细控制组蛋白的化学计量:如果不同类型的组蛋白以不平衡的方式掺入染色质,可能会导致基因表达改变、有丝分裂错误和细胞死亡[4-6]。单个核心组蛋白之间的平衡以及核心组蛋白与组蛋白变体之间的平衡都至关重要[5,7]。在这里,我们发现,在早期果蝇胚胎中,细胞核中的组蛋白平衡是由脂滴(细胞质中的脂肪储存细胞器)调节的[8]。脂滴此前已知在长期组蛋白储存中发挥作用:新产下的胚胎含有大量在卵子发生过程中产生的过量组蛋白[9],核心组蛋白H2A和组蛋白变体H2Av的母体供应通过新型蛋白Jabba锚定在脂滴上[3]。我们发现,在这些胚胎中H2A和H2Av的新合成是不平衡的,并且新产生的H2Av可以被募集到脂滴上。当通过突变Jabba破坏脂滴隔离时,胚胎细胞核中的H2Av/H2A比值升高,并出现有丝分裂缺陷、活力降低以及对H2Av过表达超敏感的现象。我们提出,在果蝇胚胎中,脂滴充当组蛋白缓冲剂,不仅储存母体组蛋白以支持早期细胞周期,还能暂时隔离过量产生的H2Av,从而确保细胞核中组蛋白的适当平衡。