Rattner J B, Saunders C, Davie J R, Hamkalo B A
J Cell Biol. 1982 Apr;93(1):217-22. doi: 10.1083/jcb.93.1.217.
The ultrastructural organization of yeast chromatin was examined in Miller spread preparations of samples prepared from spheroplasts or isolated nuclei of Saccharomyces cerevisiae. Micrographs from preparations dispersed in 1 mM Tris (pH 7.2) illustrate that the basic chromatin fiber in yeast exists in two ultrastructurally distinct conformations. The majority (up to 95%) of the chromatin displays a beaded nucleosomal organization, although adjacent nucleosomes are separated by internucleosomal linkers of variable lengths. Ribonucleoprotein (RNP) fibrils are only occasionally associated with chromatin displaying the conformation. The remaining 5-10% of the chromatin appears to be devoid of discrete nucleosomes and has a smooth contour with a fiber diameter of 30-40 A. Transcriptional units, including putative ribosomal precursor RNA genes, defined by the presence of nascent RNP fibrils are restricted to chromatin displaying this smooth morphology. Chromatin released from nuclei in the presence of 5 mM Mg++ displays higher-order chromatin fibers, 200-300 A in diameter, these fibers appear to be arranged in a manner than reflects the two forms of the basic chromatin fiber.
在由酿酒酵母原生质球或分离细胞核制备的样品的米勒铺展制剂中,研究了酵母染色质的超微结构组织。分散在1 mM Tris(pH 7.2)中的制剂的显微照片表明,酵母中的基本染色质纤维以两种超微结构上不同的构象存在。大多数(高达95%)的染色质呈现出串珠状核小体组织,尽管相邻核小体由长度可变的核小体间连接物隔开。核糖核蛋白(RNP)纤维仅偶尔与呈现该构象的染色质相关联。其余5 - 10%的染色质似乎没有离散的核小体,具有光滑的轮廓,纤维直径为30 - 40埃。由新生RNP纤维的存在所定义的转录单位,包括假定的核糖体前体RNA基因,仅限于呈现这种光滑形态的染色质。在5 mM Mg++存在下从细胞核释放的染色质显示出直径为200 - 300埃的高阶染色质纤维,这些纤维似乎以一种反映基本染色质纤维两种形式的方式排列。