4.8 Article

In situ structures of polymerase complex of mammalian reovirus illuminate RdRp activation and transcription regulation

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2203054119

Keywords

reovirus; cryo-em; RNA-dependent RNA polymerase; transcription

Funding

  1. Chinese Ministry of Science and Technology [2021YFA1300100, 2017YFA0504700]
  2. National Natural Science Foundation of China [31730023, 31521002]
  3. State Key Laboratory of Veterinary Biotechnology Foundation [SKLVBF201702]
  4. National Laboratory of Biomacromolecules of China [2020KF12]
  5. Chinese Academy of Sciences (CAS) [XDB37010100]

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By studying the structure of reovirus, we have identified the structures of its transcriptase complex in different states and proposed a transcriptional model with five states. Our findings reveal the key regulatory mechanisms during the transcription process of reovirus.
Mammalian reovirus (reovirus) is a multilayered, turreted member of Reoviridae characterized by transcription of dsRNA genome within the innermost capsid shell. Here, we present high-resolution in situ structures of reovirus transcriptase complex in an intact double-layered virion, and in the uncoated single-layered core particles in the unloaded, reloaded, pre-elongation, and elongation states, respectively, obtained by cryo-electron microscopy and sub-particle reconstructions. At the template entry of RNA-dependent RNA polymerase (RdRp), the RNA-loading region gets flexible after uncoating resulting in the unloading of terminal genomic RNA and inactivity of transcription. However, upon adding transcriptional substrates, the RNA-loading region is recovered leading the RNAs loaded again. The priming loop in RdRp was found to play a critical role in regulating transcription, which hinders the elongation of transcript in virion and triggers the rearrangement of RdRp C-terminal domain (CTD) during elongation, resulting in splitting of template-transcript hybrid and opening of transcript exit. With the integration of these structures, a transcriptional model of reovirus with five states is proposed. Our structures illuminate the RdRp activation and regulation of the multilayered turreted reovirus.

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