Elsevier

Gene Reports

Volume 27, June 2022, 101597
Gene Reports

Using bioinformatics and systems biology to discover common pathogenetic processes between sarcoidosis and COVID-19

https://doi.org/10.1016/j.genrep.2022.101597Get rights and content

Highlights

  • This study identified vital transcriptional signatures and pathways for COVID-19 and sarcoidosis.

  • We performed comprehensive bioinformatics analysis on COVID-19 and sarcoidosis transcriptomic datasets.

  • This study reveals the pathological association between COVID-19 and sarcoidosis.

Abstract

The coronavirus disease (COVID-19) pandemic caused by SARS-CoV-2 is ongoing. Individuals with sarcoidosis tend to develop severe COVID-19; however, the underlying pathological mechanisms remain elusive. To determine common transcriptional signatures and pathways between sarcoidosis and COVID-19, we investigated the whole-genome transcriptome of peripheral blood mononuclear cells (PBMCs) from patients with COVID-19 and sarcoidosis and conducted bioinformatic analysis, including gene ontology and pathway enrichment, protein-protein interaction (PPI) network, and gene regulatory network (GRN) construction. We identified 33 abnormally expressed genes that were common between COVID-19 and sarcoidosis. Functional enrichment analysis showed that these differentially expressed genes were associated with cytokine production involved in the immune response and T cell cytokine production. We identified several hub genes from the PPI network encoded by the common genes. These hub genes have high diagnostic potential for COVID-19 and sarcoidosis and can be potential biomarkers. Moreover, GRN analysis identified important microRNAs and transcription factors that regulate the common genes. This study provides a novel characterization of the transcriptional signatures and biological processes commonly dysregulated in sarcoidosis and COVID-19 and identified several critical regulators and biomarkers. This study highlights a potential pathological association between COVID-19 and sarcoidosis, establishing a theoretical basis for future clinical trials.

Abbreviations

AUC
area under the ROC curve
CC
cellular component
DEG
differentially expressed gene
GO
Gene Ontology
PBMC
peripheral blood mononuclear cell
GRN
gene regulatory network
KEGG
Kyoto Encyclopedia of Genes and Genomes
MCC
maximal clique centrality
MF
molecular function
ROC
receiver operating characteristic
TF
transcription factor

Keywords

SARS-CoV-2
Sarcoidosis
Transcriptional signature
Molecular pathway
COVID-19

Cited by (0)

1

These authors contributed equally to this work and should be considered co-first authors.

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