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Genetic depletion studies inform receptor usage by virulent hantaviruses in human endothelial cells. | LitMetric

AI Article Synopsis

  • * Previous beliefs suggested that specific integrins (β3 and β1) and decay-accelerating factor (DAF) were key to hantavirus entry, but solid evidence for this was lacking.
  • * Using CRISPR/Cas9 technology, researchers found that while knocking out traditional receptors had minimal impact, the loss of protocadherin-1 significantly decreased hantavirus entry, indicating that other crucial receptors for these viruses are yet to be identified.

Article Abstract

Hantaviruses are RNA viruses with known epidemic threat and potential for emergence. Several rodent-borne hantaviruses cause zoonoses accompanied by severe illness and death. However, assessments of zoonotic risk and the development of countermeasures are challenged by our limited knowledge of the molecular mechanisms of hantavirus infection, including the identities of cell entry receptors and their roles in influencing viral host range and virulence. Despite the long-standing presumption that β3/β1-containing integrins are the major hantavirus entry receptors, rigorous genetic loss-of-function evidence supporting their requirement, and that of decay-accelerating factor (DAF), is lacking. Here, we used CRISPR/Cas9 engineering to knockout candidate hantavirus receptors, singly and in combination, in a human endothelial cell line that recapitulates the properties of primary microvascular endothelial cells, the major targets of viral infection in humans. The loss of β3 integrin, β1 integrin, and/or DAF had little or no effect on entry by a large panel of hantaviruses. By contrast, loss of protocadherin-1, a recently identified entry receptor for some hantaviruses, substantially reduced hantavirus entry and infection. We conclude that major host molecules necessary for endothelial cell entry by PCDH1-independent hantaviruses remain to be discovered.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8263056PMC
http://dx.doi.org/10.7554/eLife.69708DOI Listing

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