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A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
Suppression of µ1 subunit of the adaptor protein complex 2 reduces dengue virus release
Nopprarat Tongmuang1,2, Umpa Yasamut1,3, Sansanee Noisakran4
1Division of Molecular Medicine, Department of Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.
Abstract:
Dengue virus (DENV) requires clathrin-mediated endocytosis for its entry into the cells where the adaptor protein complex (AP) is vital for the clathrin-coated vesicle formation. The role of AP-2 was previously examined in the early stages of DENV infection; however, the role of AP-2 in the late stage of DENV infection was not determined. The µ1 subunit of AP-2 (AP2M1) is one of the most important cytoplasmic carrier domains in clathrin-mediated endocytosis and the phosphorylation of this subunit by the kinase enzyme, AP-2 associated protein kinase 1 (AAK1), stimulates clathrin and supports the cell surface receptor incorporation. In the present study, we primarily aimed to investigate the role of AP2M1 by gene silencing approach as well as using naked DENV RNA transfection into AP2M1 knockdown cells. Secondarily, an inhibitor of AAK1, sunitinib was used to investigate whether AAK1 could influence the virus production in DENV-infected Huh7 cells. The knockdown of AP2M1 in the DENV-infected Huh7 cells displayed a reduction in the viral titer at 24 h post-infection. Furthermore, experiments were conducted to bypass the DENV internalization using a naked DENV RNA transfection into the AP2M1 knockdown cells. Higher intracellular DENV RNA, DENV E protein, and intracellular virion were observed, whereas the extracellular virion production was comparably less than that of control. Treatment with sunitinib in DENV-infected Huh7 cells was able to reduce extracellular virion production and was consistent with all four serotypes of DENV. Therefore, our findings demonstrate the role of AP2M1 in the exocytosis step of DENV replication leading to infectious DENV production and the efficacy of sunitinib in suppressing virus production during the infection with different serotypes of DENV.
Insights
The adaptor protein complex AP-2 µ1 subunit (AP2M1) is crucial for Dengue virus (DENV) exocytosis. Inhibiting AP-2 associated protein kinase 1 (AAK1) with sunitinib reduces DENV production across all serotypes.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Dengue virus (DENV) entry into cells relies on clathrin-mediated endocytosis, involving adaptor protein complexes (APs).
- The role of AP-2 in DENV's late-stage infection, specifically exocytosis, remained largely undetermined.
- The AP-2 µ1 subunit (AP2M1) is key in endocytosis, and its phosphorylation by AP-2 associated protein kinase 1 (AAK1) is vital for cellular processes.
Purpose of the Study:
- To investigate the function of AP2M1 in DENV replication, particularly its role in virus exocytosis.
- To determine if AAK1 influences DENV production using the kinase inhibitor sunitinib.
- To assess the impact of AP2M1 knockdown and AAK1 inhibition on DENV production across different serotypes.
Main Methods:
- Gene silencing of AP2M1 in Huh7 cells followed by DENV infection.
- Transfection of naked DENV RNA into AP2M1 knockdown cells to bypass viral entry.
- Treatment of DENV-infected Huh7 cells with the AAK1 inhibitor sunitinib.
Main Results:
- AP2M1 knockdown reduced viral titer in DENV-infected cells.
- Bypassing DENV entry via RNA transfection into AP2M1 knockdown cells showed increased intracellular viral components but reduced extracellular virion release.
- Sunitinib treatment significantly decreased extracellular DENV production in all four serotypes.
Conclusions:
- AP2M1 plays a critical role in the exocytosis of Dengue virus, impacting infectious virus production.
- AAK1 inhibition using sunitinib is an effective strategy to suppress DENV production, regardless of serotype.
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