Non-neuronal expression of SARS-CoV-2 entry genes in the olfactory system suggests mechanisms underlying COVID-19-associated anosmia

Нейронеспецифическая экспрессия генов, обеспечивающих проникновение SARS-CoV-2 в клетки обонятельной системы, указывает на механизмы, лежащие в основе аносмии, ассоциированной с COVID-19
Koen Van Den Berge, Kelly Street, Davide Risso, Russell B. Fletcher, Diya Das, John Ngai, Elizabeth Purdom, Sandrine Dudoit, Bradley J. Goldstein, Jonathan Mill, Iain C. Macaulay, Caleb Weinreb, Sandeep Robert Datta, Matthew S. Grubb, Boying Gong, Rebecca K. Chance, David H. Brann, Tatsuya Tsukahara, Hector Roux de Bézieux, Marcela Lipovsek, Hsin-Jung Chou, Yoon-Gi Choi, Ralph Abi Hachem, Hiroaki Matsunami, Darren W. Logan
2020-07-24

ACE2 and TMPRSS2COVID-19-associated anosmiaSARS-CoV-2 entry genesolfactory bulb pericytesolfactory epithelial sustentacular cells
Altered olfactory function is a common symptom of COVID-19, but its etiology is unknown. A key question is whether SARS-CoV-2 (CoV-2) - the causal agent in COVID-19 - affects olfaction directly, by infecting olfactory sensory neurons or their targets in the olfactory bulb, or indirectly, through perturbation of supporting cells. Here we identify cell types in the olfactory epithelium and olfactory bulb that express SARS-CoV-2 cell entry molecules. Bulk sequencing demonstrated that mouse, non-human primate and human olfactory mucosa expresses two key genes involved in CoV-2 entry, ACE2 and TMPRSS2. However, single cell sequencing revealed that ACE2 is expressed in support cells, stem cells, and perivascular cells, rather than in neurons. Immunostaining confirmed these results and revealed pervasive expression of ACE2 protein in dorsally-located olfactory epithelial sustentacular cells and olfactory bulb pericytes in the mouse. These findings suggest that CoV-2 infection of non-neuronal cell types leads to anosmia and related disturbances in odor perception in COVID-19 patients.
1
Immunostaining identifies widespread ACE2 protein in mouse olfactory epithelial sustentacular cells and olfactory bulb pericytes.
2
Mouse, non-human primate, and human olfactory mucosa express the SARS-CoV-2 entry genes ACE2 and TMPRSS2.
3
Single-cell sequencing shows ACE2 expression in olfactory support, stem, and perivascular cells rather than olfactory neurons.
4
The findings suggest that SARS-CoV-2 disrupts olfaction primarily through infection of non-neuronal olfactory cells, providing a mechanism for COVID-19-associated anosmia.

SARS-CoV-2 entry molecule-expressing non-neuronal cells in the olfactory epithelium and olfactory bulb

Cell-type-specific expression of ACE2 and TMPRSS2 and its implications for non-neuronal infection mechanisms underlying COVID-19-associated anosmia

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2020-07-24
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Authors
Koen Van Den Berge
Kelly Street
Davide Risso
Russell B. Fletcher
Diya Das
John Ngai
Elizabeth Purdom
Sandrine Dudoit
Bradley J. Goldstein
Jonathan Mill
Iain C. Macaulay
Caleb Weinreb
Sandeep Robert Datta
Matthew S. Grubb
Boying Gong
Rebecca K. Chance
David H. Brann
Tatsuya Tsukahara
Hector Roux de Bézieux
Marcela Lipovsek
Hsin-Jung Chou
Yoon-Gi Choi
Ralph Abi Hachem
Hiroaki Matsunami
Darren W. Logan
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