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SARS-CoV-2 infectivity can be modulated through bacterial grooming of the glycocalyx

Articolo
Data di Pubblicazione:
2025
Citazione:
SARS-CoV-2 infectivity can be modulated through bacterial grooming of the glycocalyx / C. Martino, B.P. Kellman, D.R. Sandoval, T.M. Clausen, R. Cooper, A. Benjdia, F. Soualmia, A.E. Clark, A.F. Garretson, C.A. Marotz, S.J. Song, S. Wandro, L.S. Zaramela, R.A. Salido, Q. Zhu, E. Armingol, Y. Vázquez-Baeza, D. Mcdonald, J.T. Sorrentino, B. Taylor, P. Belda-Ferre, P. Das, F. Ali, C. Liang, Y. Zhang, L. Schifanella, A. Covizzi, A. Lai, A. Riva, C. Basting, C.A. Broedlow, A.S. Havulinna, P. Jousilahti, M. Estaki, T. Kosciolek, R. Kuplicki, T.A. Victor, M.P. Paulus, K.E. Savage, J.L. Benbow, E.S. Spielfogel, C.A.M. Anderson, M.E. Martinez, J.V. Lacey, S. Huang, N. Haiminen, L. Parida, H. Kim, J.A. Gilbert, D.A. Sweeney, S.M. Allard, A.D. Swafford, S. Cheng, M. Inouye, T. Niiranen, M. Jain, V. Salomaa, K. Zengler, N.R. Klatt, J. Hasty, O. Berteau, A.F. Carlin, J.D. Esko, N.E. Lewis, R. Knight. - In: MBIO. - ISSN 2150-7511. - 16:4(2025 Apr), pp. e0401524.1-e0401524.22. [10.1128/mbio.04015-24]
Abstract:
The gastrointestinal (GI) tract is a site of replication of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and GI symptoms are often reported by patients. SARS-CoV-2 cell entry depends upon heparan sulfate (HS) proteoglycans, which commensal bacteria that bathe the human mucosa are known to modify. To explore human gut HS-modifying bacterial abundances and how their presence may impact SARS-CoV-2 infection, we developed a task-based analysis of proteoglycan degradation on large-scale shotgun metagenomic data. We observed that gut bacteria with high predicted catabolic capacity for HS differ by age and sex, factors associated with coronavirus disease 2019 (COVID-19) severity, and directly by disease severity during/after infection, but do not vary between subjects with COVID-19 comorbidities or by diet. Gut commensal bacterial HS-modifying enzymes reduce spike protein binding and infection of authentic SARS-CoV-2, suggesting that bacterial grooming of the GI mucosa may impact viral susceptibility.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
SARS-CoV-2; Covid; human microbiome; aging; heparan sulfate
Elenco autori:
C. Martino, B.P. Kellman, D.R. Sandoval, T.M. Clausen, R. Cooper, A. Benjdia, F. Soualmia, A.E. Clark, A.F. Garretson, C.A. Marotz, S.J. Song, S. Wandro, L.S. Zaramela, R.A. Salido, Q. Zhu, E. Armingol, Y. Vázquez-Baeza, D. Mcdonald, J.T. Sorrentino, B. Taylor, P. Belda-Ferre, P. Das, F. Ali, C. Liang, Y. Zhang, L. Schifanella, A. Covizzi, A. Lai, A. Riva, C. Basting, C.A. Broedlow, A.S. Havulinna, P. Jousilahti, M. Estaki, T. Kosciolek, R. Kuplicki, T.A. Victor, M.P. Paulus, K.E. Savage, J.L. Benbow, E.S. Spielfogel, C.A.M. Anderson, M.E. Martinez, J.V. Lacey, S. Huang, N. Haiminen, L. Parida, H. Kim, J.A. Gilbert, D.A. Sweeney, S.M. Allard, A.D. Swafford, S. Cheng, M. Inouye, T. Niiranen, M. Jain, V. Salomaa, K. Zengler, N.R. Klatt, J. Hasty, O. Berteau, A.F. Carlin, J.D. Esko, N.E. Lewis, R. Knight
Autori di Ateneo:
RIVA AGOSTINO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1157431
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1157431/2755289/martino-et-al-2025-sars-cov-2-infectivity-can-be-modulated-through-bacterial-grooming-of-the-glycocalyx.pdf
Progetto:
EU-Africa Concerted Action on SAR-CoV-2 Virus Variant and Immunological Surveillance (CoVICIS)
  • Aree Di Ricerca

Aree Di Ricerca

Settori (3)


Settore MEDS-03/A - Microbiologia e microbiologia clinica

Settore MEDS-10/B - Malattie infettive

Settore MEDS-24/B - Igiene generale e applicata
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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0