ArticleInternational journal of molecular sciences2020
Putative Roles for Peptidylarginine Deiminases in COVID-19.
Article in International journal of molecular sciences, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 25 papers.
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Who cites it
25 citing papers in PubMed, 36 citations in OpenAlex.
- Bibliometric and visualization analysis of arginine deiminase research from 2006 to 2025: trends, collaboration networks and emerging frontiers.Frontiers in immunology · 2026Article
- Roles of peptidylarginine deiminase (PAD) and protein citrullination in viral infections.Frontiers in microbiology · 2026Review
- Article
- Placental Protein Citrullination Signatures Are Modified in Early- and Late-Onset Fetal Growth Restriction.International journal of molecular sciences · 2025Article
- Brain-Region-Specific Differences in Protein Citrullination/Deimination in a Pre-Motor Parkinson's Disease Rat Model.International journal of molecular sciences · 2024Article
- Association ofHeliyon · 2024Article
- Citrullination profile analysis reveals peptidylarginine deaminase 3 as an HSV-1 target to dampen the activity of candidate antiviral restriction factors.PLoS pathogens · 2023Article
- The role of cell death in SARS-CoV-2 infection.Signal transduction and targeted therapy · 2023Review
- Inflammatory Arthritis After COVID-19: A Case Series.The American journal of case reports · 2023Article
- Regulating Neutrophil PAD4/NOX-Dependent Cerebrovasular Thromboinflammation.International journal of biological sciences · 2023Article
- Therapeutic use of calpeptin in COVID-19 infection.Clinical science (London, England : 1979) · 2022Article
- Chronic Exposure to the Food Additive tBHQ Modulates Expression of Genes Related to SARS-CoV-2 and Influenza Viruses.Life (Basel, Switzerland) · 2022Article
- Novel antiviral activity of PAD inhibitors against human beta-coronaviruses HCoV-OC43 and SARS-CoV-2.Antiviral research · 2022Article
- Citrullination in the pathology of inflammatory and autoimmune disorders: recent advances and future perspectives.Cellular and molecular life sciences : CMLS · 2022Review
- SARS-Cov2 acute and post-active infection in the context of autoimmune and chronic inflammatory diseases.Journal of translational autoimmunity · 2022Article
- NETosis and Neutrophil Extracellular Traps in COVID-19: Immunothrombosis and Beyond.Frontiers in immunology · 2022Review
- SARS-CoV-2 induced post-translational protein modifications: A trigger for developing autoimmune diabetes?Diabetes/metabolism research and reviews · 2022Article
- Role of neutrophils, platelets, and extracellular vesicles and their interactions in COVID-19-associated thrombopathy.Journal of thrombosis and haemostasis : JTH · 2022Review
- Screening of Gene Expression Markers for Corona Virus Disease 2019 Through Boruta_MCFS Feature Selection.Frontiers in public health · 2022Article
- PAD Inhibitors as a Potential Treatment for SARS-CoV-2 Immunothrombosis.Biomedicines · 2021Review
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Authors and funding
3 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Peptidylarginine deiminases (PADs) are a family of calcium-regulated enzymes that are phylogenetically conserved and cause post-translational deimination/citrullination, contributing to protein moonlighting in health and disease. PADs are implicated in a range of inflammatory and autoimmune conditions, in the regulation of extracellular vesicle (EV) release, and their roles in infection and immunomodulation are known to some extent, including in viral infections. In the current study we describe putative roles for PADs in COVID-19, based on in silico analysis of BioProject transcriptome data (PRJNA615032 BioProject), including lung biopsies from healthy volunteers and SARS-CoV-2-infected patients, as well as SARS-CoV-2-infected, and mock human bronchial epithelial NHBE and adenocarcinoma alveolar basal epithelial A549 cell lines. In addition, BioProject Data PRJNA631753, analysing patients tissue biopsy data (n = 5), was utilised. We report a high individual variation observed for all PADI isozymes in the patients' tissue biopsies, including lung, in response to SARS-CoV-2 infection, while PADI2 and PADI4 mRNA showed most variability in lung tissue specifically. The other tissues assessed were heart, kidney, marrow, bowel, jejunum, skin and fat, which all varied with respect to mRNA levels for the different PADI isozymes. In vitro lung epithelial and adenocarcinoma alveolar cell models revealed that PADI1, PADI2 and PADI4 mRNA levels were elevated, but PADI3 and PADI6 mRNA levels were reduced in SARS-CoV-2-infected NHBE cells. In A549 cells, PADI2 mRNA was elevated, PADI3 and PADI6 mRNA was downregulated, and no effect was observed on the PADI4 or PADI6 mRNA levels in infected cells, compared with control mock cells. Our findings indicate a link between PADI expression changes, including modulation of PADI2 and PADI4, particularly in lung tissue, in response to SARS-CoV-2 infection. PADI isozyme 1-6 expression in other organ biopsies also reveals putative links to COVID-19 symptoms, including vascular, cardiac and cutaneous responses, kidney injury and stroke. KEGG and GO pathway analysis furthermore identified links between PADs and inflammatory pathways, in particular between PAD4 and viral infections, as well as identifying links for PADs with a range of comorbidities. The analysis presented here highlights roles for PADs in-host responses to SARS-CoV-2, and their potential as therapeutic targets in COVID-19.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.