<p>Tick-borne encephalitis virus (TBEV) causes tick-borne encephalitis (TBE), a severe and sometimes life-threatening disease characterized by viral invasion of the central nervous system with symptoms of neuroinflammation<sup><CitationRef CitationID="CR1">1</CitationRef>,<CitationRef CitationID="CR2">2</CitationRef></sup>. As with other orthoflaviviruses—enveloped, arthropod-borne RNA viruses—host factors required for TBEV entry remain poorly defined. Here we used a genome-scale CRISPR–Cas9-based screen to identify LRP8, an apolipoprotein E and reelin receptor with high expression in the brain, as a TBEV receptor. LRP8 downregulation reduced TBEV infection in human cells, and its overexpression enhanced infection. LRP8 bound directly to the TBEV E glycoprotein and mediated viral attachment and internalization into cells. An LRP8-based soluble decoy blocked infection of human cell lines and neuronal cells and protected mice from lethal TBEV challenge. LRP8’s role as a TBEV receptor has implications for TBEV neuropathogenesis and the development of antiviral countermeasures.</p>

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LRP8 is a receptor for tick-borne encephalitis virus

  • Eva Mittler,
  • Alexandra L. Tse,
  • Pham-Tue-Hung Tran,
  • Catalina Florez,
  • Javier Janer,
  • Renata Varnaite,
  • Ezgi Kasikci,
  • Vasantha Kumar MV,
  • Michaela Loomis,
  • Wanda Christ,
  • Erik Cazares,
  • Russell R. Bakken,
  • Caroline K. Martin,
  • Xiankun Zeng,
  • Jo Lynne Raymond,
  • Mansoureh Shahsavani,
  • Sara Khanal,
  • Eric R. Wilkinson,
  • Rischa Maya Oktavia,
  • Megan M. Slough,
  • Denise Haslwanter,
  • Julianna Han,
  • Jacob Berrigan,
  • Ebba Rosendal,
  • Margaret Kielian,
  • Balaji Manicassamy,
  • Anna K. Överby,
  • Anna Falk,
  • Giovanna Barba-Spaeth,
  • Felix A. Rey,
  • Jonas Klingström,
  • Evripidis Gavathiotis,
  • Andrew S. Herbert,
  • Kartik Chandran,
  • Sara Gredmark-Russ

摘要

Tick-borne encephalitis virus (TBEV) causes tick-borne encephalitis (TBE), a severe and sometimes life-threatening disease characterized by viral invasion of the central nervous system with symptoms of neuroinflammation1,2. As with other orthoflaviviruses—enveloped, arthropod-borne RNA viruses—host factors required for TBEV entry remain poorly defined. Here we used a genome-scale CRISPR–Cas9-based screen to identify LRP8, an apolipoprotein E and reelin receptor with high expression in the brain, as a TBEV receptor. LRP8 downregulation reduced TBEV infection in human cells, and its overexpression enhanced infection. LRP8 bound directly to the TBEV E glycoprotein and mediated viral attachment and internalization into cells. An LRP8-based soluble decoy blocked infection of human cell lines and neuronal cells and protected mice from lethal TBEV challenge. LRP8’s role as a TBEV receptor has implications for TBEV neuropathogenesis and the development of antiviral countermeasures.