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Single cell RNA-seq uncovers the nuclear decoy lincRNA PIRAT as a regulator of systemic monocyte immunity during COVID-19
Marina Aznaourova; Nils Schmerer; Harshavardhan Janga; Zhenhua Zhang; Kim Pauck; Judith Hoppe; Sarah M Volkers; Daniel Wendisch; Philipp Georg; Margrit Guendisch; Elisabeth Mack; Chrysanthi Skevaki; Christian Keller; Christian Bauer; Wilhelm Bertrams; Andrea Nist; Thorsten Stiewe; Achim D Gruber; Clemens Ruppert; Yang Li; Holger Garn; Leif E Sander; Bernd Schmeck; Leon N Schulte.
Affiliation
  • Marina Aznaourova; Philipps University Marburg
  • Nils Schmerer; Philipps University Marburg
  • Harshavardhan Janga; Philipps University Marburg
  • Zhenhua Zhang; Helmholtz-Centre for Infection Research (HZI)
  • Kim Pauck; Philipps University Marburg
  • Judith Hoppe; Freie Universitaet Berlin
  • Sarah M Volkers; Charite Universitaetsmedizin Berlin
  • Daniel Wendisch; Charite Universitaetsmedizin Berlin
  • Philipp Georg; Charite Universitaetsmedizin Berlin
  • Margrit Guendisch; Philipps University Marburg
  • Elisabeth Mack; Philipps University Marburg
  • Chrysanthi Skevaki; Philipps University Marburg
  • Christian Keller; Philipps University Marburg
  • Christian Bauer; Philipps University Marburg
  • Wilhelm Bertrams; Philipps University Marburg
  • Andrea Nist; Philipps University Marburg
  • Thorsten Stiewe; Philipps University Marburg
  • Achim D Gruber; Freie Universitaet Berlin
  • Clemens Ruppert; Universities of Giessen and Marburg Lung Center
  • Yang Li; Radboud University Nijmegen Medical Centre
  • Holger Garn; Philipps University Marburg
  • Leif E Sander; Charite Universitaetsmedizin Berlin
  • Bernd Schmeck; Philipps University Marburg
  • Leon N Schulte; Philipps University Marburg
Preprint in English | bioRxiv | ID: ppbiorxiv-467458
ABSTRACT
The systemic immune response to viral infection is shaped by master transcription factors such as NF{kappa}B or PU.1. Although long non-coding RNAs (lncRNAs) have been suggested as important regulators of transcription factor activity, their contributions to the systemic immunopathologies observed during SARS-CoV-2 infection have remained unknown. Here, we employed a targeted single-cell RNA-seq approach to reveal lncRNAs differentially expressed in blood leukocytes during severe COVID-19. Our results uncover the lncRNA PIRAT as a major PU.1 feedback-regulator in monocytes, governing the production of the alarmins S100A8/A9 - key drivers of COVID-19 pathogenesis. Knockout and transgene expression, combined with chromatin-occupancy profiling characterized PIRAT as a nuclear decoy RNA, diverting the PU.1 transcription factor from alarmin promoters to dead-end pseudogenes in naive monocytes. NF{kappa}B-dependent PIRAT down-regulation during COVID-19 consequently releases a transcriptional brake, fueling alarmin production. Our results suggest a major role of nuclear noncoding RNA circuits in systemic antiviral responses to SARS-CoV-2 in humans.
License
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Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2021 Document type: Preprint
Full text: Available Collection: Preprints Database: bioRxiv Language: English Year: 2021 Document type: Preprint
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