Gene Center and Department of Biochemistry, Center for Integrated Protein Science Munich (CIPSM), Ludwig-Maximilians-Universität München, Feodor-Lynen-Str. 25, 81377 Munich, Germany.
Nucleic Acids Res. 2012 Jul;40(12):5591-601. doi: 10.1093/nar/gks220. Epub 2012 Mar 6.
RNA polymerase (Pol) I contains a 10-subunit catalytic core that is related to the core of Pol II and includes subunit A12.2. In addition, Pol I contains the heterodimeric subcomplexes A14/43 and A49/34.5, which are related to the Pol II subcomplex Rpb4/7 and the Pol II initiation factor TFIIF, respectively. Here we used lysine-lysine crosslinking, mass spectrometry (MS) and modeling based on five crystal structures, to extend the previous homology model of the Pol I core, to confirm the location of A14/43 and to position A12.2 and A49/34.5 on the core. In the resulting model of Pol I, the C-terminal ribbon (C-ribbon) domain of A12.2 reaches the active site via the polymerase pore, like the C-ribbon of the Pol II cleavage factor TFIIS, explaining why the intrinsic RNA cleavage activity of Pol I is strong, in contrast to the weak cleavage activity of Pol II. The A49/34.5 dimerization module resides on the polymerase lobe, like TFIIF, whereas the A49 tWH domain resides above the cleft, resembling parts of TFIIE. This indicates that Pol I and also Pol III are distantly related to a Pol II-TFIIS-TFIIF-TFIIE complex.
RNA 聚合酶(Pol)I 包含一个由 10 个亚基组成的催化核心,与 Pol II 的核心相关,其中包括亚基 A12.2。此外,Pol I 还包含异源二聚体亚基 A14/43 和 A49/34.5,它们分别与 Pol II 的亚基 Rpb4/7 和 Pol II 起始因子 TFIIF 相关。在这里,我们使用赖氨酸-赖氨酸交联、质谱(MS)和基于五个晶体结构的建模,扩展了之前的 Pol I 核心同源模型,以确认 A14/43 的位置,并确定 A12.2 和 A49/34.5 在核心上的位置。在得到的 Pol I 模型中,A12.2 的 C 端带状(C-ribbon)结构域通过聚合酶孔到达活性位点,就像 Pol II 切割因子 TFIIS 的 C-ribbon 一样,这解释了为什么 Pol I 的内在 RNA 切割活性很强,而 Pol II 的切割活性很弱。A49/34.5 二聚化模块位于聚合酶叶上,就像 TFIIF 一样,而 A49 tWH 结构域位于裂隙上方,类似于 TFIIE 的部分结构。这表明 Pol I 和 Pol III 与 Pol II-TFIIS-TFIIF-TFIIE 复合物有较远的关系。