Ling Yick Hin, Ye Ziyang, Liang Chloe, Yu Chuofan, Park Giho, Corden Jeffry L, Wu Carl
Department of Biology, Johns Hopkins University, Baltimore, USA.
Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, USA.
bioRxiv. 2023 Nov 30:2023.07.31.551302. doi: 10.1101/2023.07.31.551302.
Efficient gene expression requires RNA Polymerase II (RNAPII) to find chromatin targets precisely in space and time. How RNAPII manages this complex diffusive search in 3D nuclear space remains largely unknown. The disordered carboxy-terminal domain (CTD) of RNAPII, which is essential for recruiting transcription-associated proteins, forms phase-separated droplets , hinting at a potential role in modulating RNAPII dynamics. Here, we use single-molecule tracking and spatiotemporal mapping in living yeast to show that the CTD is required for confining RNAPII diffusion within a subnuclear region enriched for active genes, but without apparent phase separation into condensates. Both Mediator and global chromatin organization are required for sustaining RNAPII confinement. Remarkably, truncating the CTD disrupts RNAPII spatial confinement, prolongs target search, diminishes chromatin binding, impairs pre-initiation complex formation, and reduces transcription bursting. This study illuminates the pivotal role of the CTD in driving spatiotemporal confinement of RNAPII for efficient gene expression.
高效的基因表达需要RNA聚合酶II(RNAPII)在空间和时间上精确地找到染色质靶点。RNAPII如何在三维核空间中进行这种复杂的扩散搜索在很大程度上仍然未知。RNAPII的无序羧基末端结构域(CTD)对于招募转录相关蛋白至关重要,它会形成相分离的液滴,这暗示了其在调节RNAPII动力学方面的潜在作用。在这里,我们利用活酵母中的单分子追踪和时空映射来表明,CTD是将RNAPII扩散限制在富含活性基因的亚核区域所必需的,但没有明显相分离成凝聚物。中介体和整体染色质组织对于维持RNAPII的限制都是必需的。值得注意的是,截断CTD会破坏RNAPII的空间限制,延长靶点搜索时间,减少染色质结合,损害起始前复合物的形成,并减少转录爆发。这项研究阐明了CTD在驱动RNAPII的时空限制以实现高效基因表达方面的关键作用。