Department of Neural and Behavioral Sciences, Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.
J Biol Chem. 2013 Jun 14;288(24):17895-907. doi: 10.1074/jbc.M113.452144. Epub 2013 May 3.
Mature rod photoreceptor cells contain very small nuclei with tightly condensed heterochromatin. We observed that during mouse rod maturation, the nucleosomal repeat length increases from 190 bp at postnatal day 1 to 206 bp in the adult retina. At the same time, the total level of linker histone H1 increased reaching the ratio of 1.3 molecules of total H1 per nucleosome, mostly via a dramatic increase in H1c. Genetic elimination of the histone H1c gene is functionally compensated by other histone variants. However, retinas in H1c/H1e/H1(0) triple knock-outs have photoreceptors with bigger nuclei, decreased heterochromatin area, and notable morphological changes suggesting that the process of chromatin condensation and rod cell structural integrity are partly impaired. In triple knock-outs, nuclear chromatin exposed several epigenetic histone modification marks masked in the wild type chromatin. Dramatic changes in exposure of a repressive chromatin mark, H3K9me2, indicate that during development linker histone plays a role in establishing the facultative heterochromatin territory and architecture in the nucleus. During retina development, the H1c gene and its promoter acquired epigenetic patterns typical of rod-specific genes. Our data suggest that histone H1c gene expression is developmentally up-regulated to promote facultative heterochromatin in mature rod photoreceptors.
成熟的视杆细胞含有非常小的细胞核,其中异染色质紧密凝聚。我们观察到,在小鼠视杆细胞成熟过程中,核小体重复长度从出生后第 1 天的 190bp 增加到成年视网膜中的 206bp。与此同时,连接组蛋白 H1 的总水平增加,达到每个核小体 1.3 个 H1 分子,主要通过 H1c 的急剧增加。组蛋白 H1c 基因的遗传消除被其他组蛋白变体在功能上补偿。然而,在 H1c/H1e/H1(0)三重敲除的视网膜中,视杆细胞的细胞核更大,异染色质区域减少,并且形态发生显著变化,这表明染色质凝聚和视杆细胞结构完整性的过程部分受损。在三重敲除中,核染色质暴露了几种在野生型染色质中被掩盖的表观遗传组蛋白修饰标记。H3K9me2 这种抑制性染色质标记的暴露发生了剧烈变化,表明在发育过程中连接组蛋白在核内建立了兼性异染色质区域和结构。在视网膜发育过程中,H1c 基因及其启动子获得了杆状细胞特异性基因的典型表观遗传模式。我们的数据表明,组蛋白 H1c 基因的表达在发育过程中被上调,以促进成熟视杆细胞中的兼性异染色质。