Program in Genetics and Genome Biology, The Hospital for Sick Children, Toronto, Canada.
Micron. 2012 Feb;43(2-3):150-8. doi: 10.1016/j.micron.2011.11.007. Epub 2011 Nov 26.
The microscope has been indispensable to the last century of chromatin structure research. Microscopy techniques have revealed that the three-dimensional location of chromatin is not random but represents a further manifestation of a highly compartmentalized cell nucleus. Moreover, the structure and location of genetic loci display cell type-specific differences and relate directly to the state of differentiation. Advances to bridge imaging with genetic, molecular and biochemical approaches have greatly enhanced our understanding of the interdependence of chromatin structure and nuclear function in mammalian cells. In this review we discuss the current state of chromatin structure research in relationship to the variety of microscopy techniques that have contributed to this field.
显微镜在过去一个世纪的染色质结构研究中不可或缺。显微镜技术揭示了染色质的三维位置并非随机,而是代表了高度分隔的细胞核的进一步表现。此外,遗传基因座的结构和位置显示出细胞类型特异性的差异,并与分化状态直接相关。将成像与遗传、分子和生化方法相结合的进展极大地提高了我们对哺乳动物细胞中染色质结构和核功能相互依赖性的理解。在这篇综述中,我们讨论了与为该领域做出贡献的各种显微镜技术相关的染色质结构研究的现状。