Shimamura A, Worcel A
Department of Biology, University of Rochester, New York 14627.
J Biol Chem. 1989 Aug 25;264(24):14524-30.
Histone proteins, which were assembled into chromatin using the Xenopus oocyte S-150 extract, were analyzed on acid-urea gels and Triton-acid-urea gels to determine their state of modification. We find that histone H4, which is present in a diacetylated form in the oocyte S-150, gradually loses its acetate groups as the DNA is packaged into chromatin. Thus, this process parallels the one observed in vivo during chromatin formation in growing eucaryotic cells. Histone H4 deacetylation in the oocyte S-150 is a DNA-dependent reaction. This reaction is blocked when butyrate (an inhibitor of histone deacetylase) is added at the onset of the chromatin assembly process. When butyrate is added at the end of the assembly process, no de novo acetylation of the nucleosomal histone H4 is observed. Chromatin with regularly spaced nucleosomes, displaying periodicities ranging from 160 to 220 base pairs, can be assembled in vitro with the oocyte S-150 (Rodríguez-Campos, A., Shimamura, A., and Worcel, A. (1989) J. Mol. Biol., in press). This chromatin may contain either deacetylated histone H4 when assembled under standard conditions or diacetylated H4 when assembled in the presence of butyrate. Both types of chromatin display identical structures upon digestion with nucleases. The potential applications of this system toward the study of the naturally occurring diacetylated histone H4 are discussed.
使用非洲爪蟾卵母细胞S - 150提取物组装成染色质的组蛋白,在酸性尿素凝胶和Triton - 酸性尿素凝胶上进行分析,以确定它们的修饰状态。我们发现,在卵母细胞S - 150中以二乙酰化形式存在的组蛋白H4,随着DNA被包装成染色质,会逐渐失去其乙酰基。因此,这个过程与在生长中的真核细胞染色质形成过程中体内观察到的过程相似。卵母细胞S - 150中的组蛋白H4去乙酰化是一个依赖于DNA的反应。当在染色质组装过程开始时加入丁酸盐(一种组蛋白脱乙酰酶抑制剂)时,这个反应会被阻断。当在组装过程结束时加入丁酸盐时,未观察到核小体组蛋白H4的从头乙酰化。具有规则间隔核小体、周期范围为160至220个碱基对的染色质可以在体外与卵母细胞S - 150组装而成(Rodríguez - Campos, A., Shimamura, A., and Worcel, A. (1989) J. Mol. Biol., in press)。这种染色质在标准条件下组装时可能含有去乙酰化的组蛋白H4,而在丁酸盐存在下组装时则含有二乙酰化的H4。两种类型的染色质在用核酸酶消化后显示出相同的结构。讨论了该系统在研究天然存在的二乙酰化组蛋白H4方面的潜在应用。