Mitobe J, Mitsuzawa H, Ishihama A
Department of Molecular Genetics, National Institute of Genetics, Mishima, Shizuoka, Japan.
Curr Genet. 2001 Jun;39(4):210-21. doi: 10.1007/s002940100203.
The RNA polymerase II (Pol II) of Schizosaccharomyces pombe is composed of 12 subunits. Subunit Rpb3 has sequence homology with the N-terminal domain of the prokaryotic alpha subunit, which plays a key role in RNA polymerase assembly. Together with the Rpb2 (the beta homologue) and Rpb11 (the second alpha homologue) subunits, Rpb3 constitutes a core subassembly (Rpb2-Rpb3-Rpb11) which corresponds to the the alpha2beta assembly intermediate of prokaryotic RNA polymerase. For the functional mapping of Rpb3, we made a collection of 12 heat-sensitive (Ts) or cold-sensitive (Cs) S. pombe mutants, each carrying a single mutation in one of the four conserved regions of Rpb3. The altered functions of six representative Pol II mutants containing the mutant Rpb3 were analyzed in vitro using an improved version of the GAL4-VP16 activator-dependent transcription system catalyzed by S. pombe cell extracts. The transcription activity by the extracts from Rpb3 mutants decreased to varying extents after heat treatment; but the extracts from Rpb3 mutants which had mutations in the eukaryote-specific conserved regions B and C regained their activity by the addition of GAL4-VP16, to a larger extent than those from the region A and D mutants. We propose that both terminal regions (A and D) play important roles in RNA polymerase assembly, while the central portion (regions B and C) is involved in activated transcription.
粟酒裂殖酵母的RNA聚合酶II(Pol II)由12个亚基组成。亚基Rpb3与原核α亚基的N端结构域具有序列同源性,该结构域在RNA聚合酶组装中起关键作用。Rpb3与Rpb2(β同源物)和Rpb11(第二个α同源物)亚基一起构成一个核心亚组件(Rpb2-Rpb3-Rpb11),它对应于原核RNA聚合酶的α2β组装中间体。为了对Rpb3进行功能定位,我们构建了12个对热敏感(Ts)或对冷敏感(Cs)的粟酒裂殖酵母突变体库,每个突变体在Rpb3的四个保守区域之一中携带单个突变。使用由粟酒裂殖酵母细胞提取物催化的GAL4-VP16激活剂依赖性转录系统的改进版本,在体外分析了六个含有突变Rpb3的代表性Pol II突变体的功能改变。热处理后,Rpb3突变体提取物的转录活性有不同程度的下降;但是,在真核生物特异性保守区域B和C中发生突变的Rpb3突变体提取物通过添加GAL4-VP16恢复了活性,恢复程度大于区域A和D突变体的提取物。我们提出,两个末端区域(A和D)在RNA聚合酶组装中起重要作用,而中央部分(区域B和C)参与激活转录。