Department of Molecular Genetics, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio 44195 and.
Department of Biochemistry and.
J Biol Chem. 2014 Apr 18;289(16):11143-11152. doi: 10.1074/jbc.M113.544395. Epub 2014 Mar 4.
Gdown1, the substoichiometric 13th subunit of RNA polymerase II (pol II), has an important role in pausing during the initial stage of transcript elongation. However, Gdown1 quantitatively displaces the essential initiation factor TFIIF from free pol II and elongating pol II. Thus, it is not clear how or even if pol II can initiate in the presence of Gdown1. Using an in vitro transcription system with purified factors and pol II lacking Gdown1, we found that although Gdown1 is strongly inhibitory to transcription when prebound to pol II, a fraction of complexes do remain active. Surprisingly, when Gdown1 is added to complete preinitiation complexes (PICs), it does not inhibit initiation or functionally associate with the PICs. Gdown1 does associate with pol II during the early stage of transcript elongation but this association is competitive with TFIIF. By phosphorylating TFIIF, PICs can be assembled that do not retain TFIIF. Gdown1 also fails to functionally associate with these TFIIF-less PICs, but once polymerase enters transcript elongation, complexes lacking TFIIF quantitatively bind Gdown1. Our results provide a partial resolution of the paradox of the competition between Gdown1 and TFIIF for association with pol II. Although Gdown1 completely displaces TFIIF from free pol II and elongation complexes, Gdown1 does not functionally associate with the PIC. Gdown1 can enter the transcription complex immediately after initiation. Modification of TFIIF provides one pathway through which efficient Gdown1 loading can occur early in elongation, allowing downstream pausing to be regulated.
Gdown1 是 RNA 聚合酶 II(pol II)的亚基,其含量低于亚基总量,在转录延伸的初始阶段对暂停具有重要作用。然而,Gdown1 会从游离 pol II 和延伸中的 pol II 上定量置换必需起始因子 TFIIF。因此,尚不清楚 pol II 在存在 Gdown1 的情况下如何(甚至是否)起始。我们使用含有纯化因子和缺乏 Gdown1 的 pol II 的体外转录系统发现,尽管 Gdown1 与 pol II 预结合时对转录有强烈的抑制作用,但仍有一部分复合物保持活性。令人惊讶的是,当 Gdown1 被添加到完整的起始前复合物(PIC)时,它不会抑制起始或与 PIC 功能性结合。Gdown1 在转录延伸的早期与 pol II 结合,但这种结合与 TFIIF 竞争。通过磷酸化 TFIIF,可以组装不保留 TFIIF 的 PIC。Gdown1 也无法与这些缺乏 TFIIF 的 PIC 功能性结合,但一旦聚合酶进入转录延伸,缺乏 TFIIF 的复合物就会定量结合 Gdown1。我们的结果部分解决了 Gdown1 和 TFIIF 与 pol II 结合竞争的悖论。尽管 Gdown1 完全从游离 pol II 和延伸复合物中置换了 TFIIF,但它没有与 PIC 功能性结合。Gdown1 可以在起始后立即进入转录复合物。TFIIF 的修饰提供了一种途径,通过这种途径,Gdown1 可以在延伸早期被有效加载,从而可以调节下游暂停。