Mueller Cherie L, Porter Stephanie E, Hoffman Matthew G, Jaehning Judith A
Department of Biochemistry and Molecular Genetics, Molecular Biology Program, University of Colorado Health Science Center, B121, 4200 East Ninth Avenue, Denver, CO 80262, USA.
Mol Cell. 2004 May 21;14(4):447-56. doi: 10.1016/s1097-2765(04)00257-6.
The yeast Paf1 complex, minimally composed of Paf1, Ctr9, Cdc73, Rtf1, and Leo1, was originally isolated in association with RNA polymerase II (Pol II). Paf1 complex components are abundant and colocalize with Pol II on chromatin at promoters and in the coding regions of actively transcribed genes. Loss of Paf1 results in severe phenotypes and reduced amounts of other Paf1 factors, with little effect on abundance or chromatin distribution of Pol II, proteins important for transcriptional elongation (Spt5, Spt16), or RNA processing (Sub2). Loss of Paf1 factors causes a reduction of Pol II Ser2 phosphorylation and shortened poly(A) tails, suggesting that the complex facilitates linkage of transcriptional and posttranscriptional events. Surprisingly, loss of Rtf1 or Cdc73, with little phenotypic consequence, results in loss of Paf1 factors from chromatin and a significant reduction in Paf1/Pol II association. Therefore, the major functions of Paf1 can be independent of actively transcribing Pol II.
酵母Paf1复合物最初是与RNA聚合酶II(Pol II)相关联分离得到的,它至少由Paf1、Ctr9、Cdc73、Rtf1和Leo1组成。Paf1复合物的组分含量丰富,并且在启动子处的染色质上以及活跃转录基因的编码区域与Pol II共定位。Paf1缺失会导致严重的表型以及其他Paf1因子数量减少,而对Pol II、转录延伸重要蛋白(Spt5、Spt16)或RNA加工蛋白(Sub2)的丰度或染色质分布几乎没有影响。Paf1因子缺失会导致Pol II丝氨酸2磷酸化减少以及多聚腺苷酸尾巴缩短,这表明该复合物促进转录和转录后事件的联系。令人惊讶的是,Rtf1或Cdc73缺失几乎没有表型后果,但会导致Paf1因子从染色质上丢失以及Paf1/Pol II结合显著减少。因此,Paf1的主要功能可以独立于正在进行转录的Pol II。