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Large-Scale Multi-omic Analysis of COVID-19 Severity

We performed RNA-seq and high-resolution mass spectrometry on 128 blood samples from COVID-19-positive and COVID-19-negative patients with diverse disease severities and outcomes. Quantified transcripts, proteins, metabolites, and lipids were associated with clinical outcomes in a curated relational...

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Autores principales: Overmyer, Katherine A., Shishkova, Evgenia, Miller, Ian J., Balnis, Joseph, Bernstein, Matthew N., Peters-Clarke, Trenton M., Meyer, Jesse G., Quan, Qiuwen, Muehlbauer, Laura K., Trujillo, Edna A., He, Yuchen, Chopra, Amit, Chieng, Hau C., Tiwari, Anupama, Judson, Marc A., Paulson, Brett, Brademan, Dain R., Zhu, Yunyun, Serrano, Lia R., Linke, Vanessa, Drake, Lisa A., Adam, Alejandro P., Schwartz, Bradford S., Singer, Harold A., Swanson, Scott, Mosher, Deane F., Stewart, Ron, Coon, Joshua J., Jaitovich, Ariel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Authors. Published by Elsevier Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7543711/
https://www.ncbi.nlm.nih.gov/pubmed/33096026
http://dx.doi.org/10.1016/j.cels.2020.10.003
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author Overmyer, Katherine A.
Shishkova, Evgenia
Miller, Ian J.
Balnis, Joseph
Bernstein, Matthew N.
Peters-Clarke, Trenton M.
Meyer, Jesse G.
Quan, Qiuwen
Muehlbauer, Laura K.
Trujillo, Edna A.
He, Yuchen
Chopra, Amit
Chieng, Hau C.
Tiwari, Anupama
Judson, Marc A.
Paulson, Brett
Brademan, Dain R.
Zhu, Yunyun
Serrano, Lia R.
Linke, Vanessa
Drake, Lisa A.
Adam, Alejandro P.
Schwartz, Bradford S.
Singer, Harold A.
Swanson, Scott
Mosher, Deane F.
Stewart, Ron
Coon, Joshua J.
Jaitovich, Ariel
author_facet Overmyer, Katherine A.
Shishkova, Evgenia
Miller, Ian J.
Balnis, Joseph
Bernstein, Matthew N.
Peters-Clarke, Trenton M.
Meyer, Jesse G.
Quan, Qiuwen
Muehlbauer, Laura K.
Trujillo, Edna A.
He, Yuchen
Chopra, Amit
Chieng, Hau C.
Tiwari, Anupama
Judson, Marc A.
Paulson, Brett
Brademan, Dain R.
Zhu, Yunyun
Serrano, Lia R.
Linke, Vanessa
Drake, Lisa A.
Adam, Alejandro P.
Schwartz, Bradford S.
Singer, Harold A.
Swanson, Scott
Mosher, Deane F.
Stewart, Ron
Coon, Joshua J.
Jaitovich, Ariel
author_sort Overmyer, Katherine A.
collection PubMed
description We performed RNA-seq and high-resolution mass spectrometry on 128 blood samples from COVID-19-positive and COVID-19-negative patients with diverse disease severities and outcomes. Quantified transcripts, proteins, metabolites, and lipids were associated with clinical outcomes in a curated relational database, uniquely enabling systems analysis and cross-ome correlations to molecules and patient prognoses. We mapped 219 molecular features with high significance to COVID-19 status and severity, many of which were involved in complement activation, dysregulated lipid transport, and neutrophil activation. We identified sets of covarying molecules, e.g., protein gelsolin and metabolite citrate or plasmalogens and apolipoproteins, offering pathophysiological insights and therapeutic suggestions. The observed dysregulation of platelet function, blood coagulation, acute phase response, and endotheliopathy further illuminated the unique COVID-19 phenotype. We present a web-based tool (covid-omics.app) enabling interactive exploration of our compendium and illustrate its utility through a machine learning approach for prediction of COVID-19 severity.
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spelling pubmed-75437112020-10-09 Large-Scale Multi-omic Analysis of COVID-19 Severity Overmyer, Katherine A. Shishkova, Evgenia Miller, Ian J. Balnis, Joseph Bernstein, Matthew N. Peters-Clarke, Trenton M. Meyer, Jesse G. Quan, Qiuwen Muehlbauer, Laura K. Trujillo, Edna A. He, Yuchen Chopra, Amit Chieng, Hau C. Tiwari, Anupama Judson, Marc A. Paulson, Brett Brademan, Dain R. Zhu, Yunyun Serrano, Lia R. Linke, Vanessa Drake, Lisa A. Adam, Alejandro P. Schwartz, Bradford S. Singer, Harold A. Swanson, Scott Mosher, Deane F. Stewart, Ron Coon, Joshua J. Jaitovich, Ariel Cell Syst Article We performed RNA-seq and high-resolution mass spectrometry on 128 blood samples from COVID-19-positive and COVID-19-negative patients with diverse disease severities and outcomes. Quantified transcripts, proteins, metabolites, and lipids were associated with clinical outcomes in a curated relational database, uniquely enabling systems analysis and cross-ome correlations to molecules and patient prognoses. We mapped 219 molecular features with high significance to COVID-19 status and severity, many of which were involved in complement activation, dysregulated lipid transport, and neutrophil activation. We identified sets of covarying molecules, e.g., protein gelsolin and metabolite citrate or plasmalogens and apolipoproteins, offering pathophysiological insights and therapeutic suggestions. The observed dysregulation of platelet function, blood coagulation, acute phase response, and endotheliopathy further illuminated the unique COVID-19 phenotype. We present a web-based tool (covid-omics.app) enabling interactive exploration of our compendium and illustrate its utility through a machine learning approach for prediction of COVID-19 severity. The Authors. Published by Elsevier Inc. 2021-01-20 2020-10-08 /pmc/articles/PMC7543711/ /pubmed/33096026 http://dx.doi.org/10.1016/j.cels.2020.10.003 Text en © 2020 The Authors Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.
spellingShingle Article
Overmyer, Katherine A.
Shishkova, Evgenia
Miller, Ian J.
Balnis, Joseph
Bernstein, Matthew N.
Peters-Clarke, Trenton M.
Meyer, Jesse G.
Quan, Qiuwen
Muehlbauer, Laura K.
Trujillo, Edna A.
He, Yuchen
Chopra, Amit
Chieng, Hau C.
Tiwari, Anupama
Judson, Marc A.
Paulson, Brett
Brademan, Dain R.
Zhu, Yunyun
Serrano, Lia R.
Linke, Vanessa
Drake, Lisa A.
Adam, Alejandro P.
Schwartz, Bradford S.
Singer, Harold A.
Swanson, Scott
Mosher, Deane F.
Stewart, Ron
Coon, Joshua J.
Jaitovich, Ariel
Large-Scale Multi-omic Analysis of COVID-19 Severity
title Large-Scale Multi-omic Analysis of COVID-19 Severity
title_full Large-Scale Multi-omic Analysis of COVID-19 Severity
title_fullStr Large-Scale Multi-omic Analysis of COVID-19 Severity
title_full_unstemmed Large-Scale Multi-omic Analysis of COVID-19 Severity
title_short Large-Scale Multi-omic Analysis of COVID-19 Severity
title_sort large-scale multi-omic analysis of covid-19 severity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7543711/
https://www.ncbi.nlm.nih.gov/pubmed/33096026
http://dx.doi.org/10.1016/j.cels.2020.10.003
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