Verschure P J, van Der Kraan I, Manders E M, van Driel R
E.C. Slater Instituut, BioCentrum Amsterdam, University of Amsterdam, 1018 TV Amsterdam, The Netherlands.
J Cell Biol. 1999 Oct 4;147(1):13-24. doi: 10.1083/jcb.147.1.13.
We have investigated the spatial relationship between transcription sites and chromosome territories in the interphase nucleus of human female fibroblasts. Immunolabeling of nascent RNA was combined with visualization of chromosome territories by fluorescent in situ hybridization (FISH). Transcription sites were found scattered throughout the territory of one of the two X chromosomes, most likely the active X chromosome, and that of both territories of chromosome 19. The other X chromosome territory, probably the inactive X chromosome, was devoid of transcription sites. A distinct substructure was observed in interphase chromosome territories. Intensely labeled subchromosomal domains are surrounded by less strongly labeled areas. The intensely labeled domains had a diameter in the range of 300-450 nm and were sometimes interconnected, forming thread-like structures. Similar large scale chromatin structures were observed in HeLa cells expressing green fluorescent protein (GFP)-tagged histone H2B. Strikingly, nascent RNA was almost exclusively found in the interchromatin areas in chromosome territories and in between strongly GFP-labeled chromatin domains. These observations support a model in which transcriptionally active chromatin in chromosome territories is markedly compartmentalized. Active loci are located predominantly at or near the surface of compact chromatin domains, depositing newly synthesized RNA directly into the interchromatin space.
我们研究了人类女性成纤维细胞间期细胞核中转录位点与染色体区域之间的空间关系。将新生RNA的免疫标记与荧光原位杂交(FISH)对染色体区域的可视化相结合。转录位点分布在两条X染色体之一(很可能是活性X染色体)的整个区域以及19号染色体的两个区域中。另一条X染色体区域(可能是失活的X染色体)没有转录位点。在间期染色体区域中观察到一种独特的亚结构。高度标记的亚染色体结构域被标记较弱的区域包围。高度标记的结构域直径在300 - 450纳米范围内,有时相互连接,形成线状结构。在表达绿色荧光蛋白(GFP)标记组蛋白H2B的HeLa细胞中也观察到了类似的大规模染色质结构。引人注目的是,新生RNA几乎只存在于染色体区域的染色质间区域以及强烈GFP标记的染色质结构域之间。这些观察结果支持了一种模型,即染色体区域中转录活跃的染色质明显是分隔的。活跃基因座主要位于紧密染色质结构域的表面或附近,将新合成的RNA直接沉积到染色质间空间。