Gasser Susan M
Department of Molecular Biology, University of Geneva, Quai Ernest-Ansermet 30, CH-1211 Geneva, Switzerland.
Science. 2002 May 24;296(5572):1412-6. doi: 10.1126/science.1067703.
Real-time fluorescence microscopy has emerged as a powerful tool for examining chromatin dynamics. The initial lesson is that much of the genome, particularly in yeast, is highly dynamic. Its movement within the interphase nucleus is correlated with metabolic activity. Nonetheless, the nucleus is an organelle with conserved rules of organization. Determining the distribution and regulation of mobile domains in interphase chromosomes, and characterizing sites of anchorage, will undoubtedly shed new light on the function of nuclear order.
实时荧光显微镜已成为研究染色质动态变化的有力工具。初步的经验是,基因组的大部分区域,尤其是在酵母中,具有高度的动态性。它在间期核内的移动与代谢活性相关。尽管如此,细胞核是一个具有保守组织规则的细胞器。确定间期染色体中移动结构域的分布和调控方式,以及表征锚定位点,无疑将为核秩序的功能带来新的启示。