Nunez Esperanza, Kwon Young-Soo, Hutt Kasey R, Hu Qidong, Cardamone Maria Dafne, Ohgi Kenneth A, Garcia-Bassets Ivan, Rose David W, Glass Christopher K, Rosenfeld Michael G, Fu Xiang-Dong
Howard Hughes Medical Institute, University of California, San Diego School of Medicine, 9500 Gilman Drive, La Jolla, CA 92093-0651, USA.
Cell. 2008 Mar 21;132(6):996-1010. doi: 10.1016/j.cell.2008.01.051.
While the transcriptional machinery has been extensively dissected at the molecular level, little is known about regulation of chromosomal organization in the three-dimensional space of the nucleus to achieve integrated transcriptional responses to diverse signaling events. Here, we report that ligand induces rapid interchromosomal interactions among subsets of estrogen receptor alpha-bound transcription units, with a dramatic reorganization of nuclear territories requiring nuclear actin/myosin-I transport machinery, dynein light chain 1 (DLC1), and a specific subset of transcriptional coactivators and chromatin remodeling complexes. We establish a requirement for the histone lysine demethylase, LSD1, in directing specific interchromosomal interaction loci to distinct interchromatin granules, long thought to be "storage" sites for splicing machinery, and demonstrate that these three-dimensional motor-dependent interactions are required to achieve enhanced transcription of specific estrogen-receptor target genes. These findings reveal roles for the modulation of nuclear architecture in orchestrating regulated gene-expression programs in the mammalian nucleus.
虽然转录机制已在分子水平上得到广泛剖析,但对于在细胞核三维空间中染色体组织的调控,以实现对各种信号事件的整合转录反应,我们却知之甚少。在此,我们报告称,配体可诱导雌激素受体α结合的转录单元亚群之间迅速发生染色体间相互作用,核区域会发生显著重组,这需要核肌动蛋白/肌球蛋白-I转运机制、动力蛋白轻链1(DLC1)以及转录共激活因子和染色质重塑复合物的特定亚群。我们确定了组蛋白赖氨酸去甲基化酶LSD1在将特定染色体间相互作用位点导向不同染色质间颗粒中的必要性,长期以来这些颗粒一直被认为是剪接机制的“储存”位点,并证明这些三维运动依赖性相互作用是实现特定雌激素受体靶基因增强转录所必需的。这些发现揭示了核结构的调节在协调哺乳动物细胞核中受调控的基因表达程序方面所起的作用。