HCA Data Explorer

Impaired local intrinsic immunity to SARS-CoV-2 infection in severe COVID-19

Updated May 22, 2023

SARS-CoV-2 infection can cause severe respiratory COVID-19. However, many individuals present with isolated upper respiratory symptoms, suggesting potential to constrain viral pathology to the nasopharynx. Which cells SARS-CoV-2 primarily targets and how infection influences the respiratory epithelium remains incompletely understood. We performed scRNA-seq on nasopharyngeal swabs from 58 healthy and COVID-19 participants. During COVID-19, we observe expansion of secretory, loss of ciliated, and epithelial cell repopulation via deuterosomal cell expansion. In mild and moderate COVID-19, epithelial cells express anti-viral/interferon-responsive genes, while cells in severe COVID-19 have muted anti-viral responses despite equivalent viral loads. SARS-CoV-2 RNA+ host-target cells are highly heterogenous, including developing ciliated, interferon-responsive ciliated, AZGP1high goblet, and KRT13+ "hillock"-like cells, and we identify genes associated with susceptibility, resistance, or infection response. Our study defines protective and detrimental responses to SARS-CoV-2, the direct viral targets of infection, and suggests that failed nasal epithelial anti-viral immunity may underlie and precede severe COVID-19.

Alex K ShalekHarvard Medical School & MITshalek@mit.edu
Sarah C GloverUniversity of Mississippi Medical Center
Bruce H HorwitzBoston Children’s Hospitalbruce.horwitz@childrens.harvard.edu
Jose Ordovas-MontanesBroad Institute of MIT and Harvardjose.ordovas-montanes@childrens.harvard.edu
Carly GK Ziegler (Co-Investigator)1
Vincent N Miao (Co-Investigator)1
Anna H Owings (Co-Investigator)2
Andrew W Navia (Co-Investigator)3
Ying Tang (Co-Investigator)4
Joshua D Bromley (Co-Investigator)3
Peter Lotfy5
Meredith Sloan2
Hannah Laird2
Haley B Williams2
Micayla George2
Riley S Drake3
Taylor Christian2
Adam Parker2
Campbell B Sindel2
Molly W Burger2
Yilianys Pride2
Mohammad Hasan2
George E Abraham III2
Michal Senitko2
Tanya O Robinson2
Alex K Shalek (Principal Investigator)1
Sarah C Glover (Principal Investigator)2
Bruce H Horwitz (Principal Investigator)4
Jose Ordovas-Montanes (Principal Investigator)5
1Harvard Medical School & MIT
2University of Mississippi Medical Center
3Ragon Institute of MGH, MIT, and Harvard
4Boston Children’s Hospital
5Broad Institute of MIT and Harvard
Arsenios Chatzigeorgiou

To reference this project, please use the following link:

https://explore.data.humancellatlas.org/projects/111d272b-c25a-49ac-9b25-e062b70d66e0

Supplementary links are provided by contributors and represent items such as additional data which can’t be hosted here; code that was used to analyze this data; or tools and visualizations associated with this specific dataset.

1.https://singlecell.broadinstitute.org/single_cell/study/SCP1289/impaired-local-intrinsic-immunity-to-sars-cov-2-infection-in-severe-covid-19
None

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Analysis Portals

CZ CELLxGENECZ CELLxGENE

Project Label

Shalek-Human-SeqWellS3

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

nasopharynx

Organ Part

mucosa of nasopharynx

Selected Cell Types

Unspecified

Disease Status (Specimen)

4 disease statuses

Disease Status (Donor)

4 disease statuses

Development Stage

human adult stage

Library Construction Method

Seq-Well S3

Nucleic Acid Source

single cell

Paired End

false

Analysis Protocol

downstream_analysis, normalized_matrix_generation, raw_matrix_generation

File Format

2 file formats

Cell Count Estimate

32.6k

Donor Count

58
txt4 file(s)xlsx1 file(s)