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-Structure paper
タイトル | RNA polymerase drives ribonucleotide excision DNA repair in E. coli. |
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ジャーナル・号・ページ | Cell, Vol. 186, Issue 11, Page 2425-2437.e21, Year 2023 |
掲載日 | 2023年5月25日 |
著者 | Zhitai Hao / Manjunath Gowder / Sergey Proshkin / Binod K Bharati / Vitaly Epshtein / Vladimir Svetlov / Ilya Shamovsky / Evgeny Nudler / |
PubMed 要旨 | Ribonuclease HII (RNaseHII) is the principal enzyme that removes misincorporated ribonucleoside monophosphates (rNMPs) from genomic DNA. Here, we present structural, biochemical, and genetic evidence ...Ribonuclease HII (RNaseHII) is the principal enzyme that removes misincorporated ribonucleoside monophosphates (rNMPs) from genomic DNA. Here, we present structural, biochemical, and genetic evidence demonstrating that ribonucleotide excision repair (RER) is directly coupled to transcription. Affinity pull-downs and mass-spectrometry-assisted mapping of in cellulo inter-protein cross-linking reveal the majority of RNaseHII molecules interacting with RNA polymerase (RNAP) in E. coli. Cryoelectron microscopy structures of RNaseHII bound to RNAP during elongation, with and without the target rNMP substrate, show specific protein-protein interactions that define the transcription-coupled RER (TC-RER) complex in engaged and unengaged states. The weakening of RNAP-RNaseHII interactions compromises RER in vivo. The structure-functional data support a model where RNaseHII scans DNA in one dimension in search for rNMPs while "riding" the RNAP. We further demonstrate that TC-RER accounts for a significant fraction of repair events, thereby establishing RNAP as a surveillance "vehicle" for detecting the most frequently occurring replication errors. |
リンク | Cell / PubMed:37196657 / PubMed Central |
手法 | EM (単粒子) |
解像度 | 2.9 - 3.1 Å |
構造データ | EMDB-26830, PDB-7uwe: EMDB-26832, PDB-7uwh: |
化合物 | ChemComp-MG: ChemComp-ZN: |
由来 |
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キーワード | TRANSFERASE/HYDROLASE/DNA/RNA / Transcription-coupled RER / TRANSCRIPTION / TRANSFERASE-HYDROLASE-DNA-RNA complex |