4.8 Article

Structure and dynamics of the RNAPII CTDsome with Rtt103

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1712450114

关键词

RNA polymerase II; CTD; structural biology; transcription; Rtt103

资金

  1. Ministry of Education, Youths and Sports of the Czech Republic (MEYS CR) [LQ1601]
  2. National Programme for Sustainability II funds
  3. MEYS CR [LM2015043]
  4. European Regional Development Fund [CZ.1.05/1.1.00/02.0068]
  5. European Research Council (ERC) under the European Union [649030]
  6. Czech Science Foundation [13-18344S, 15-24117S]
  7. ERC under the European Union's Seventh Framework Program Grant FP/ERC Grant [355855]
  8. EMBO installation Grant [3041]
  9. European Research Council (ERC) [649030] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

RNA polymerase II contains a long C-terminal domain (CTD) that regulates interactions at the site of transcription. The CTD architecture remains poorly understood due to its low sequence complexity, dynamic phosphorylation patterns, and structural variability. We used integrative structural biology to visualize the architecture of the CTD in complex with Rtt103, a 3'-end RNA-processing and transcription termination factor. Rtt103 forms homodimers via its long coiled-coil domain and associates densely on the repetitive sequence of the phosphorylated CTD via its N-terminal CTD-interacting domain. The CTD-Rtt103 association opens the compact random coil structure of the CTD, leading to a beads-on-a-string topology in which the long rod-shaped Rtt103 dimers define the topological and mobility restraints of the entire assembly. These findings underpin the importance of the structural plasticity of the CTD, which is templated by a particular set of CTD-binding proteins.

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