Richman R, Chicoine L G, Collini M P, Cook R G, Allis C D
Verna and Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030.
J Cell Biol. 1988 Apr;106(4):1017-26. doi: 10.1083/jcb.106.4.1017.
Salt extracts prepared from purified micronuclei and the cytoplasm of growing Tetrahymena contain a histone acetylase (also referred to as histone acetyltransferase) activity which is highly specific for H4 when tested as a free histone. With both extracts, H4 is acetylated first at position 4 (monoacetylated) or positions 4 and 11 (diacetylated), sites diagnostic of deposition-related acetylation of newly synthesized H4 in vivo. As the concentration of cytosolic extract is decreased in the in vitro reactions, acetylation of H3 is also observed. Neither activity acetylates histone in a chromatin form. These activities are distinct from a macronuclear acetylase which acetylates H3 and H4 (macro- or micronuclear) equally well as free histones and which acetylates all four core histones when mononucleosomes are used as substrate. As well, the micronuclear and cytoplasmic activities give similar thermal-inactivation profiles which are different from that of the macronuclear activity. In situ enzyme assays demonstrate a macronuclear-specific activity which acetylates endogenous macronuclear chromatin and an independent micronuclear-cytosolic activity which is able to act upon exogenously added free H4. These results argue strongly that an identical acetylase is responsible for the micronuclear and cytoplasmic activity which is either modified or altogether distinct from that in macronuclei.
从生长中的四膜虫纯化的微核和细胞质制备的盐提取物含有一种组蛋白乙酰化酶(也称为组蛋白乙酰转移酶)活性,当作为游离组蛋白进行测试时,该活性对H4具有高度特异性。在两种提取物中,H4首先在第4位(单乙酰化)或第4位和第11位(双乙酰化)被乙酰化,这些位点是体内新合成的H4与沉积相关的乙酰化的诊断位点。随着体外反应中细胞质提取物浓度的降低,也观察到了H3的乙酰化。两种活性都不会使染色质形式的组蛋白乙酰化。这些活性不同于一种大核乙酰化酶,后者作为游离组蛋白时对H3和H4(大核或微核)的乙酰化效果相同,并且当使用单核小体作为底物时会使所有四种核心组蛋白乙酰化。此外,微核和细胞质活性具有相似的热失活曲线,这与大核活性的热失活曲线不同。原位酶分析表明,存在一种使内源性大核染色质乙酰化的大核特异性活性,以及一种能够作用于外源添加的游离H4的独立的微核 - 细胞质活性。这些结果有力地表明,一种相同的乙酰化酶负责微核和细胞质活性,该酶与大核中的乙酰化酶要么有所修饰,要么完全不同。