5M3M
Free monomeric RNA polymerase I at 4.0A resolution
5M3M の概要
| エントリーDOI | 10.2210/pdb5m3m/pdb |
| EMDBエントリー | 4148 |
| 分子名称 | DNA-directed RNA polymerase I subunit RPA190, DNA-directed RNA polymerases I, II, and III subunit RPABC4, DNA-directed RNA polymerase I subunit RPA49, ... (16 entities in total) |
| 機能のキーワード | rna polymerase i, transcription |
| 由来する生物種 | Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast) 詳細 |
| タンパク質・核酸の鎖数 | 14 |
| 化学式量合計 | 590832.46 |
| 構造登録者 | Neyer, S.,Kunz, M.,Geiss, C.,Hantsche, M.,Hodirnau, V.-V.,Seybert, A.,Engel, C.,Scheffer, M.P.,Cramer, P.,Frangakis, A.S. (登録日: 2016-10-15, 公開日: 2016-11-23, 最終更新日: 2024-05-15) |
| 主引用文献 | Neyer, S.,Kunz, M.,Geiss, C.,Hantsche, M.,Hodirnau, V.V.,Seybert, A.,Engel, C.,Scheffer, M.P.,Cramer, P.,Frangakis, A.S. Structure of RNA polymerase I transcribing ribosomal DNA genes. Nature, 540:607-610, 2016 Cited by PubMed Abstract: RNA polymerase I (Pol I) is a highly processive enzyme that transcribes ribosomal DNA (rDNA) and regulates growth of eukaryotic cells. Crystal structures of free Pol I from the yeast Saccharomyces cerevisiae have revealed dimers of the enzyme stabilized by a 'connector' element and an expanded cleft containing the active centre in an inactive conformation. The central bridge helix was unfolded and a Pol-I-specific 'expander' element occupied the DNA-template-binding site. The structure of Pol I in its active transcribing conformation has yet to be determined, whereas structures of Pol II and Pol III have been solved with bound DNA template and RNA transcript. Here we report structures of active transcribing Pol I from yeast solved by two different cryo-electron microscopy approaches. A single-particle structure at 3.8 Å resolution reveals a contracted active centre cleft with bound DNA and RNA, and a narrowed pore beneath the active site that no longer holds the RNA-cleavage-stimulating domain of subunit A12.2. A structure at 29 Å resolution that was determined from cryo-electron tomograms of Pol I enzymes transcribing cellular rDNA confirms contraction of the cleft and reveals that incoming and exiting rDNA enclose an angle of around 150°. The structures suggest a model for the regulation of transcription elongation in which contracted and expanded polymerase conformations are associated with active and inactive states, respectively. PubMed: 27842382DOI: 10.1038/nature20561 主引用文献が同じPDBエントリー |
| 実験手法 | ELECTRON MICROSCOPY (4 Å) |
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