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Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions

In less than nine months, the Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) killed over a million people, including >25,000 in New York City (NYC) alone. The COVID-19 pandemic caused by SARS-CoV-2 highlights clinical needs to detect infection, track strain evolution, and identify b...

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Autores principales: Butler, Daniel, Mozsary, Christopher, Meydan, Cem, Foox, Jonathan, Rosiene, Joel, Shaiber, Alon, Danko, David, Afshinnekoo, Ebrahim, MacKay, Matthew, Sedlazeck, Fritz J., Ivanov, Nikolay A., Sierra, Maria, Pohle, Diana, Zietz, Michael, Gisladottir, Undina, Ramlall, Vijendra, Sholle, Evan T., Schenck, Edward J., Westover, Craig D., Hassan, Ciaran, Ryon, Krista, Young, Benjamin, Bhattacharya, Chandrima, Ng, Dianna L., Granados, Andrea C., Santos, Yale A., Servellita, Venice, Federman, Scot, Ruggiero, Phyllis, Fungtammasan, Arkarachai, Chin, Chen-Shan, Pearson, Nathaniel M., Langhorst, Bradley W., Tanner, Nathan A., Kim, Youngmi, Reeves, Jason W., Hether, Tyler D., Warren, Sarah E., Bailey, Michael, Gawrys, Justyna, Meleshko, Dmitry, Xu, Dong, Couto-Rodriguez, Mara, Nagy-Szakal, Dorottya, Barrows, Joseph, Wells, Heather, O’Hara, Niamh B., Rosenfeld, Jeffrey A., Chen, Ying, Steel, Peter A. D., Shemesh, Amos J., Xiang, Jenny, Thierry-Mieg, Jean, Thierry-Mieg, Danielle, Iftner, Angelika, Bezdan, Daniela, Sanchez, Elizabeth, Campion, Thomas R., Sipley, John, Cong, Lin, Craney, Arryn, Velu, Priya, Melnick, Ari M., Shapira, Sagi, Hajirasouliha, Iman, Borczuk, Alain, Iftner, Thomas, Salvatore, Mirella, Loda, Massimo, Westblade, Lars F., Cushing, Melissa, Wu, Shixiu, Levy, Shawn, Chiu, Charles, Schwartz, Robert E., Tatonetti, Nicholas, Rennert, Hanna, Imielinski, Marcin, Mason, Christopher E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7954844/
https://www.ncbi.nlm.nih.gov/pubmed/33712587
http://dx.doi.org/10.1038/s41467-021-21361-7
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author Butler, Daniel
Mozsary, Christopher
Meydan, Cem
Foox, Jonathan
Rosiene, Joel
Shaiber, Alon
Danko, David
Afshinnekoo, Ebrahim
MacKay, Matthew
Sedlazeck, Fritz J.
Ivanov, Nikolay A.
Sierra, Maria
Pohle, Diana
Zietz, Michael
Gisladottir, Undina
Ramlall, Vijendra
Sholle, Evan T.
Schenck, Edward J.
Westover, Craig D.
Hassan, Ciaran
Ryon, Krista
Young, Benjamin
Bhattacharya, Chandrima
Ng, Dianna L.
Granados, Andrea C.
Santos, Yale A.
Servellita, Venice
Federman, Scot
Ruggiero, Phyllis
Fungtammasan, Arkarachai
Chin, Chen-Shan
Pearson, Nathaniel M.
Langhorst, Bradley W.
Tanner, Nathan A.
Kim, Youngmi
Reeves, Jason W.
Hether, Tyler D.
Warren, Sarah E.
Bailey, Michael
Gawrys, Justyna
Meleshko, Dmitry
Xu, Dong
Couto-Rodriguez, Mara
Nagy-Szakal, Dorottya
Barrows, Joseph
Wells, Heather
O’Hara, Niamh B.
Rosenfeld, Jeffrey A.
Chen, Ying
Steel, Peter A. D.
Shemesh, Amos J.
Xiang, Jenny
Thierry-Mieg, Jean
Thierry-Mieg, Danielle
Iftner, Angelika
Bezdan, Daniela
Sanchez, Elizabeth
Campion, Thomas R.
Sipley, John
Cong, Lin
Craney, Arryn
Velu, Priya
Melnick, Ari M.
Shapira, Sagi
Hajirasouliha, Iman
Borczuk, Alain
Iftner, Thomas
Salvatore, Mirella
Loda, Massimo
Westblade, Lars F.
Cushing, Melissa
Wu, Shixiu
Levy, Shawn
Chiu, Charles
Schwartz, Robert E.
Tatonetti, Nicholas
Rennert, Hanna
Imielinski, Marcin
Mason, Christopher E.
author_facet Butler, Daniel
Mozsary, Christopher
Meydan, Cem
Foox, Jonathan
Rosiene, Joel
Shaiber, Alon
Danko, David
Afshinnekoo, Ebrahim
MacKay, Matthew
Sedlazeck, Fritz J.
Ivanov, Nikolay A.
Sierra, Maria
Pohle, Diana
Zietz, Michael
Gisladottir, Undina
Ramlall, Vijendra
Sholle, Evan T.
Schenck, Edward J.
Westover, Craig D.
Hassan, Ciaran
Ryon, Krista
Young, Benjamin
Bhattacharya, Chandrima
Ng, Dianna L.
Granados, Andrea C.
Santos, Yale A.
Servellita, Venice
Federman, Scot
Ruggiero, Phyllis
Fungtammasan, Arkarachai
Chin, Chen-Shan
Pearson, Nathaniel M.
Langhorst, Bradley W.
Tanner, Nathan A.
Kim, Youngmi
Reeves, Jason W.
Hether, Tyler D.
Warren, Sarah E.
Bailey, Michael
Gawrys, Justyna
Meleshko, Dmitry
Xu, Dong
Couto-Rodriguez, Mara
Nagy-Szakal, Dorottya
Barrows, Joseph
Wells, Heather
O’Hara, Niamh B.
Rosenfeld, Jeffrey A.
Chen, Ying
Steel, Peter A. D.
Shemesh, Amos J.
Xiang, Jenny
Thierry-Mieg, Jean
Thierry-Mieg, Danielle
Iftner, Angelika
Bezdan, Daniela
Sanchez, Elizabeth
Campion, Thomas R.
Sipley, John
Cong, Lin
Craney, Arryn
Velu, Priya
Melnick, Ari M.
Shapira, Sagi
Hajirasouliha, Iman
Borczuk, Alain
Iftner, Thomas
Salvatore, Mirella
Loda, Massimo
Westblade, Lars F.
Cushing, Melissa
Wu, Shixiu
Levy, Shawn
Chiu, Charles
Schwartz, Robert E.
Tatonetti, Nicholas
Rennert, Hanna
Imielinski, Marcin
Mason, Christopher E.
author_sort Butler, Daniel
collection PubMed
description In less than nine months, the Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) killed over a million people, including >25,000 in New York City (NYC) alone. The COVID-19 pandemic caused by SARS-CoV-2 highlights clinical needs to detect infection, track strain evolution, and identify biomarkers of disease course. To address these challenges, we designed a fast (30-minute) colorimetric test (LAMP) for SARS-CoV-2 infection from naso/oropharyngeal swabs and a large-scale shotgun metatranscriptomics platform (total-RNA-seq) for host, viral, and microbial profiling. We applied these methods to clinical specimens gathered from 669 patients in New York City during the first two months of the outbreak, yielding a broad molecular portrait of the emerging COVID-19 disease. We find significant enrichment of a NYC-distinctive clade of the virus (20C), as well as host responses in interferon, ACE, hematological, and olfaction pathways. In addition, we use 50,821 patient records to find that renin–angiotensin–aldosterone system inhibitors have a protective effect for severe COVID-19 outcomes, unlike similar drugs. Finally, spatial transcriptomic data from COVID-19 patient autopsy tissues reveal distinct ACE2 expression loci, with macrophage and neutrophil infiltration in the lungs. These findings can inform public health and may help develop and drive SARS-CoV-2 diagnostic, prevention, and treatment strategies.
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spelling pubmed-79548442021-03-28 Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions Butler, Daniel Mozsary, Christopher Meydan, Cem Foox, Jonathan Rosiene, Joel Shaiber, Alon Danko, David Afshinnekoo, Ebrahim MacKay, Matthew Sedlazeck, Fritz J. Ivanov, Nikolay A. Sierra, Maria Pohle, Diana Zietz, Michael Gisladottir, Undina Ramlall, Vijendra Sholle, Evan T. Schenck, Edward J. Westover, Craig D. Hassan, Ciaran Ryon, Krista Young, Benjamin Bhattacharya, Chandrima Ng, Dianna L. Granados, Andrea C. Santos, Yale A. Servellita, Venice Federman, Scot Ruggiero, Phyllis Fungtammasan, Arkarachai Chin, Chen-Shan Pearson, Nathaniel M. Langhorst, Bradley W. Tanner, Nathan A. Kim, Youngmi Reeves, Jason W. Hether, Tyler D. Warren, Sarah E. Bailey, Michael Gawrys, Justyna Meleshko, Dmitry Xu, Dong Couto-Rodriguez, Mara Nagy-Szakal, Dorottya Barrows, Joseph Wells, Heather O’Hara, Niamh B. Rosenfeld, Jeffrey A. Chen, Ying Steel, Peter A. D. Shemesh, Amos J. Xiang, Jenny Thierry-Mieg, Jean Thierry-Mieg, Danielle Iftner, Angelika Bezdan, Daniela Sanchez, Elizabeth Campion, Thomas R. Sipley, John Cong, Lin Craney, Arryn Velu, Priya Melnick, Ari M. Shapira, Sagi Hajirasouliha, Iman Borczuk, Alain Iftner, Thomas Salvatore, Mirella Loda, Massimo Westblade, Lars F. Cushing, Melissa Wu, Shixiu Levy, Shawn Chiu, Charles Schwartz, Robert E. Tatonetti, Nicholas Rennert, Hanna Imielinski, Marcin Mason, Christopher E. Nat Commun Article In less than nine months, the Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) killed over a million people, including >25,000 in New York City (NYC) alone. The COVID-19 pandemic caused by SARS-CoV-2 highlights clinical needs to detect infection, track strain evolution, and identify biomarkers of disease course. To address these challenges, we designed a fast (30-minute) colorimetric test (LAMP) for SARS-CoV-2 infection from naso/oropharyngeal swabs and a large-scale shotgun metatranscriptomics platform (total-RNA-seq) for host, viral, and microbial profiling. We applied these methods to clinical specimens gathered from 669 patients in New York City during the first two months of the outbreak, yielding a broad molecular portrait of the emerging COVID-19 disease. We find significant enrichment of a NYC-distinctive clade of the virus (20C), as well as host responses in interferon, ACE, hematological, and olfaction pathways. In addition, we use 50,821 patient records to find that renin–angiotensin–aldosterone system inhibitors have a protective effect for severe COVID-19 outcomes, unlike similar drugs. Finally, spatial transcriptomic data from COVID-19 patient autopsy tissues reveal distinct ACE2 expression loci, with macrophage and neutrophil infiltration in the lungs. These findings can inform public health and may help develop and drive SARS-CoV-2 diagnostic, prevention, and treatment strategies. Nature Publishing Group UK 2021-03-12 /pmc/articles/PMC7954844/ /pubmed/33712587 http://dx.doi.org/10.1038/s41467-021-21361-7 Text en © The Author(s) 2021 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Butler, Daniel
Mozsary, Christopher
Meydan, Cem
Foox, Jonathan
Rosiene, Joel
Shaiber, Alon
Danko, David
Afshinnekoo, Ebrahim
MacKay, Matthew
Sedlazeck, Fritz J.
Ivanov, Nikolay A.
Sierra, Maria
Pohle, Diana
Zietz, Michael
Gisladottir, Undina
Ramlall, Vijendra
Sholle, Evan T.
Schenck, Edward J.
Westover, Craig D.
Hassan, Ciaran
Ryon, Krista
Young, Benjamin
Bhattacharya, Chandrima
Ng, Dianna L.
Granados, Andrea C.
Santos, Yale A.
Servellita, Venice
Federman, Scot
Ruggiero, Phyllis
Fungtammasan, Arkarachai
Chin, Chen-Shan
Pearson, Nathaniel M.
Langhorst, Bradley W.
Tanner, Nathan A.
Kim, Youngmi
Reeves, Jason W.
Hether, Tyler D.
Warren, Sarah E.
Bailey, Michael
Gawrys, Justyna
Meleshko, Dmitry
Xu, Dong
Couto-Rodriguez, Mara
Nagy-Szakal, Dorottya
Barrows, Joseph
Wells, Heather
O’Hara, Niamh B.
Rosenfeld, Jeffrey A.
Chen, Ying
Steel, Peter A. D.
Shemesh, Amos J.
Xiang, Jenny
Thierry-Mieg, Jean
Thierry-Mieg, Danielle
Iftner, Angelika
Bezdan, Daniela
Sanchez, Elizabeth
Campion, Thomas R.
Sipley, John
Cong, Lin
Craney, Arryn
Velu, Priya
Melnick, Ari M.
Shapira, Sagi
Hajirasouliha, Iman
Borczuk, Alain
Iftner, Thomas
Salvatore, Mirella
Loda, Massimo
Westblade, Lars F.
Cushing, Melissa
Wu, Shixiu
Levy, Shawn
Chiu, Charles
Schwartz, Robert E.
Tatonetti, Nicholas
Rennert, Hanna
Imielinski, Marcin
Mason, Christopher E.
Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title_full Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title_fullStr Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title_full_unstemmed Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title_short Shotgun transcriptome, spatial omics, and isothermal profiling of SARS-CoV-2 infection reveals unique host responses, viral diversification, and drug interactions
title_sort shotgun transcriptome, spatial omics, and isothermal profiling of sars-cov-2 infection reveals unique host responses, viral diversification, and drug interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7954844/
https://www.ncbi.nlm.nih.gov/pubmed/33712587
http://dx.doi.org/10.1038/s41467-021-21361-7
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