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Rpc11 中与 Rpb9 同源的结构域中的点突变会损害 RNA 聚合酶 III 的转录终止。

Point mutations in the Rpb9-homologous domain of Rpc11 that impair transcription termination by RNA polymerase III.

机构信息

Intramural Research Program, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Commissioned Corps, US Public Health Service, Bethesda, MD, USA. 20892

出版信息

Nucleic Acids Res. 2011 Aug;39(14):6100-13. doi: 10.1093/nar/gkr182. Epub 2011 Mar 30.

Abstract

RNA polymerase III recognizes and pauses at its terminator, an oligo(dT) tract in non-template DNA, terminates 3' oligo(rU) synthesis within this sequence, and releases the RNA. The pol III subunit Rpc11p (C11) mediates RNA 3'-5' cleavage in the catalytic center of pol III during pausing. The amino and carboxyl regions of C11 are homologous to domains of the pol II subunit Rpb9p, and the pol II elongation and RNA cleavage factor, TFIIS, respectively. We isolated C11 mutants from Schizosaccharomyces pombe that cause pol III to readthrough terminators in vivo. Mutant RNA confirmed the presence of terminator readthrough transcripts. A predominant mutation site, F32, resides in the C11 Rpb9-like domain. Another mutagenic approach confirmed the F32 mutation and also isolated I34 and Y30 mutants. Modeling Y30, F32 and I34 of C11 in available cryoEM pol III structures predicts a hydrophobic patch that may interface with C53/37. Another termination mutant, Rpc2-T455I, appears to reside internally, near the RNA-DNA hybrid. We show that the Rpb9 and TFIIS homologous mutants of C11 reflect distinct activities, that differentially affect terminator recognition and RNA 3' cleavage. We propose that these C11 domains integrate action at the upper jaw and center of pol III during termination.

摘要

RNA 聚合酶 III 识别并在其终止子处暂停,终止子是模板 DNA 中的一段寡聚(dT)序列,终止该序列内的 3' 寡聚(rU)合成,并释放 RNA。聚合酶 III 亚基Rpc11p(C11)在暂停过程中在聚合酶 III 的催化中心介导 RNA 3'-5' 切割。C11 的氨基和羧基区域与聚合酶 II 亚基 Rpb9p 的结构域以及聚合酶 II 延伸和 RNA 切割因子 TFIIS 同源。我们从酿酒酵母中分离出导致 pol III 在体内通读终止子的 C11 突变体。突变 RNA 证实了终止子通读转录物的存在。一个主要的突变位点 F32 位于 C11 Rpb9 样结构域中。另一种诱变方法证实了 F32 突变,并分离出 I34 和 Y30 突变体。对 C11 的 Y30、F32 和 I34 进行建模,这些突变体在现有的冷冻电镜 pol III 结构中进行预测,表明存在一个可能与 C53/37 相互作用的疏水区。另一个终止突变体 Rpc2-T455I 似乎位于内部,靠近 RNA-DNA 杂交处。我们表明,C11 的 Rpb9 和 TFIIS 同源突变体反映了不同的活性,这些活性差异地影响终止子识别和 RNA 3' 切割。我们提出,这些 C11 结构域在终止过程中整合了聚合酶 III 上颚和中心的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd47/3152337/ef2dc20b04cb/gkr182f1.jpg

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