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Published on: November 5, 2021
Targeting Doublecortin-Like Kinase 1 (DCLK1)-Regulated SARS-CoV-2 Pathogenesis in COVID-19
Ram Babu Undi1,2, Jason L Larabee3, Adrian Filiberti1,2,4
1Department of Radiation Oncology, University of Oklahoma Health Sciences Centergrid.266902.9, Oklahoma City, Oklahoma, USA.
Abstract:
Host factors play critical roles in SARS-CoV-2 infection-associated pathology and the severity of COVID-19. In this study, we systematically analyzed the roles of SARS-CoV-2-induced host factors, doublecortin-like kinase 1 (DCLK1), and S100A9 in viral pathogenesis. In autopsied subjects with COVID-19 and pre-existing chronic liver disease, we observed high levels of DCLK1 and S100A9 expression and immunosuppressive (DCLK1+S100A9+CD206+) M2-like macrophages and N2-like neutrophils in lungs and livers. DCLK1 and S100A9 expression were rarely observed in normal controls, COVID-19-negative subjects with chronic lung disease, or COVID-19 subjects without chronic liver disease. In hospitalized patients with COVID-19, we detected 2 to 3-fold increased levels of circulating DCLK1+S100A9+ mononuclear cells that correlated with disease severity. We validated the SARS-CoV-2-dependent generation of these double-positive immune cells in coculture. SARS-CoV-2-induced DCLK1 expression correlated with the activation of β-catenin, a known regulator of the DCLK1 promoter. Gain and loss of function studies showed that DCLK1 kinase amplified live virus production and promoted cytokine, chemokine, and growth factor secretion by peripheral blood mononuclear cells. Inhibition of DCLK1 kinase blocked pro-inflammatory caspase-1/interleukin-1β signaling in infected cells. Treatment of SARS-CoV-2-infected cells with inhibitors of DCLK1 kinase and S100A9 normalized cytokine/chemokine profiles and attenuated DCLK1 expression and β-catenin activation. In conclusion, we report previously unidentified roles of DCLK1 in augmenting SARS-CoV-2 viremia, inflammatory cytokine expression, and dysregulation of immune cells involved in innate immunity. DCLK1 could be a potential therapeutic target for COVID-19, especially in patients with underlying comorbid diseases associated with DCLK1 expression. IMPORTANCE High mortality in COVID-19 is associated with underlying comorbidities such as chronic liver diseases. Successful treatment of severe/critical COVID-19 remains challenging. Herein, we report a targetable host factor, DCLK1, that amplifies SARS-CoV-2 production, cytokine secretion, and inflammatory pathways via activation of β-catenin(p65)/DCLK1/S100A9/NF-κB signaling. Furthermore, we observed in the lung, liver, and blood an increased prevalence of immune cells coexpressing DCLK1 and S100A9, a myeloid-derived proinflammatory protein. These cells were associated with increased disease severity in COVID-19 patients. Finally, we used a novel small-molecule inhibitor of DCLK1 kinase (DCLK1-IN-1) and S100A9 inhibitor (tasquinimod) to decrease virus production in vitro and normalize hyperinflammatory responses known to contribute to disease severity in COVID-19.
Insights
Doublecortin-like kinase 1 (DCLK1) amplifies SARS-CoV-2 production and inflammation, particularly in patients with chronic liver disease. Inhibiting DCLK1 kinase and S100A9 shows promise for treating severe COVID-19 by reducing viral load and normalizing immune responses.
Area of Science:
- Virology and Immunology
- Host-pathogen interactions
- Molecular mechanisms of viral pathogenesis
Background:
- Host factors significantly influence SARS-CoV-2 infection severity and COVID-19 pathology.
- Chronic liver disease is a comorbidity associated with high COVID-19 mortality.
- Understanding host-driven mechanisms is crucial for developing effective COVID-19 treatments.
Purpose of the Study:
- To systematically analyze the roles of SARS-CoV-2-induced host factors, doublecortin-like kinase 1 (DCLK1) and S100A9, in viral pathogenesis.
- To investigate the therapeutic potential of targeting DCLK1 and S100A9 in COVID-19.
Main Methods:
- Analysis of DCLK1 and S100A9 expression in autopsied subjects with and without COVID-19 and chronic liver disease.
- Quantification of circulating DCLK1+S100A9+ mononuclear cells in hospitalized COVID-19 patients.
- In vitro validation using co-culture models, gain/loss of function studies, and treatment with DCLK1 kinase and S100A9 inhibitors.
Main Results:
- High DCLK1 and S100A9 expression, along with immunosuppressive M2-like macrophages and N2-like neutrophils, were observed in lungs and livers of COVID-19 patients with chronic liver disease.
- Increased circulating DCLK1+S100A9+ mononuclear cells correlated with COVID-19 disease severity.
- DCLK1 kinase activity amplified SARS-CoV-2 production and promoted pro-inflammatory cytokine secretion; inhibition of DCLK1 and S100A9 normalized cytokine profiles and reduced viral load in vitro.
Conclusions:
- DCLK1 plays a previously unrecognized role in augmenting SARS-CoV-2 viremia and inflammatory responses via β-catenin/DCLK1/S100A9/NF-κB signaling.
- DCLK1 and S100A9-expressing immune cells are associated with increased COVID-19 severity.
- DCLK1 represents a potential therapeutic target for COVID-19, particularly in patients with comorbid conditions like chronic liver disease.

