Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA 15260, USA.
Department of Cell Biology, University of Pittsburgh, Pittsburgh, PA 15261, USA.
Nucleic Acids Res. 2023 Jun 9;51(10):4814-4830. doi: 10.1093/nar/gkad180.
The Paf1 complex (Paf1C) is a conserved transcription elongation factor that regulates transcription elongation efficiency, facilitates co-transcriptional histone modifications, and impacts molecular processes linked to RNA synthesis, such as polyA site selection. Coupling of the activities of Paf1C to transcription elongation requires its association with RNA polymerase II (Pol II). Mutational studies in yeast identified Paf1C subunits Cdc73 and Rtf1 as important mediators of Paf1C association with Pol II on active genes. While the interaction between Rtf1 and the general elongation factor Spt5 is relatively well-understood, the interactions involving Cdc73 have not been fully elucidated. Using a site-specific protein cross-linking strategy in yeast cells, we identified direct interactions between Cdc73 and two components of the Pol II elongation complex, the elongation factor Spt6 and the largest subunit of Pol II. Both of these interactions require the tandem SH2 domain of Spt6. We also show that Cdc73 and Spt6 can interact in vitro and that rapid depletion of Spt6 dissociates Paf1 from chromatin, altering patterns of Paf1C-dependent histone modifications genome-wide. These results reveal interactions between Cdc73 and the Pol II elongation complex and identify Spt6 as a key factor contributing to the occupancy of Paf1C at active genes in Saccharomyces cerevisiae.
Paf1 复合物(Paf1C)是一种保守的转录延伸因子,可调节转录延伸效率,促进共转录组蛋白修饰,并影响与 RNA 合成相关的分子过程,如多 A 位点选择。Paf1C 的活性与转录延伸的偶联需要其与 RNA 聚合酶 II(Pol II)结合。酵母中的突变研究确定 Paf1C 亚基 Cdc73 和 Rtf1 是 Paf1C 与 Pol II 在活性基因上结合的重要介质。虽然 Rtf1 与一般延伸因子 Spt5 之间的相互作用相对较好理解,但涉及 Cdc73 的相互作用尚未完全阐明。我们使用酵母细胞中的特异性蛋白质交联策略,鉴定了 Cdc73 与 Pol II 延伸复合物的两个成分之间的直接相互作用,即延伸因子 Spt6 和 Pol II 的最大亚基。这两种相互作用都需要 Spt6 的串联 SH2 结构域。我们还表明 Cdc73 和 Spt6 可以在体外相互作用,并且 Spt6 的快速耗尽会使 Paf1 从染色质上脱离,从而改变全基因组范围内 Paf1C 依赖性组蛋白修饰的模式。这些结果揭示了 Cdc73 与 Pol II 延伸复合物之间的相互作用,并确定了 Spt6 是促进 Paf1C 在酿酒酵母中活跃基因上占据的关键因素。