Sinha Deepak Kumar, Banerjee Bidisha, Maharana Shovamayee, Shivashankar G V
National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore, India.
Biophys J. 2008 Dec;95(11):5432-8. doi: 10.1529/biophysj.108.135921. Epub 2008 Sep 19.
The three-dimensional organization of nuclear compartments within living cells determines genome function and yet their underlying self-organizing principles are unclear. We visualize in real-time transcriptionally active compartments (TCs) by the transient enrichment of fluorescently-labeled uridine 5'-triphosphate molecules within living cells. These TCs partially colocalize with active RNA-Pol II in the cell nucleus. Fluorescence anisotropy maps of chromatin compaction evidences a more open chromatin structure at the TCs. Using live-cell timelapse imaging, heterogeneity in the dynamic behavior of TCs has been revealed which falls into three distinct classes: subdiffusive, super-diffusive, and normal diffusive behavior. In contrast, the mobility of a candidate gene locus, either in the repressed or activated state, undergoes a differential restricted motion that is coupled to TC movement. Further TC dynamics is directly affected by small molecule chromatin structure modulators and adenosine triphosphate depletion. This heterogeneous behavior in TC dynamics within living cells could provide an interesting paradigm to explore the spatiotemporal dimension to gene transcription control.
活细胞内核区室的三维组织决定了基因组功能,但其潜在的自组织原则尚不清楚。我们通过活细胞内荧光标记的尿苷5'-三磷酸分子的瞬时富集,实时可视化转录活性区室(TCs)。这些TCs在细胞核中与活性RNA聚合酶II部分共定位。染色质压缩的荧光各向异性图谱表明,TCs处的染色质结构更为开放。使用活细胞延时成像,已揭示了TCs动态行为的异质性,可分为三种不同类型:亚扩散、超扩散和正常扩散行为。相比之下,处于抑制或激活状态的候选基因座的移动性经历了与TC移动相关的差异受限运动。此外,TC动态直接受小分子染色质结构调节剂和三磷酸腺苷消耗的影响。活细胞内TC动态的这种异质性行为可能为探索基因转录控制的时空维度提供一个有趣的范例。