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Updated: Jul 4, 2025

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Newcastle disease virus activates diverse signaling pathways via Src to facilitate virus entry into host macrophages
Qiankai Shi1, Ran Zhao1, Linna Chen1
1Division of Avian Infectious Diseases, State Key Laboratory of Animal Disease Control and Prevention, Harbin Veterinary Research Institute, the Chinese Academy of Agricultural Sciences, Harbin, China.
Abstract:
As an intrinsic cellular mechanism responsible for the internalization of extracellular ligands and membrane components, caveolae-mediated endocytosis (CavME) is also exploited by certain pathogens for endocytic entry [e.g., Newcastle disease virus (NDV) of paramyxovirus]. However, the molecular mechanisms of NDV-induced CavME remain poorly understood. Herein, we demonstrate that sialic acid-containing gangliosides, rather than glycoproteins, were utilized by NDV as receptors to initiate the endocytic entry of NDV into HD11 cells. The binding of NDV to gangliosides induced the activation of a non-receptor tyrosine kinase, Src, leading to the phosphorylation of caveolin-1 (Cav1) and dynamin-2 (Dyn2), which contributed to the endocytic entry of NDV. Moreover, an inoculation of cells with NDV-induced actin cytoskeletal rearrangement through Src to facilitate NDV entry via endocytosis and direct fusion with the plasma membrane. Subsequently, unique members of the Rho GTPases family, RhoA and Cdc42, were activated by NDV in a Src-dependent manner. Further analyses revealed that RhoA and Cdc42 regulated the activities of specific effectors, cofilin and myosin regulatory light chain 2, responsible for actin cytoskeleton rearrangement, through diverse intracellular signaling cascades. Taken together, our results suggest that an inoculation of NDV-induced Src-mediated cellular activation by binding to ganglioside receptors. This process orchestrated NDV endocytic entry by modulating the activities of caveolae-associated Cav1 and Dyn2, as well as specific Rho GTPases and downstream effectors.
Importance:
In general, it is known that the paramyxovirus gains access to host cells through direct penetration at the plasma membrane; however, emerging evidence suggests more complex entry mechanisms for paramyxoviruses. The endocytic entry of Newcastle disease virus (NDV), a representative member of the paramyxovirus family, into multiple types of cells has been recently reported. Herein, we demonstrate the binding of NDV to induce ganglioside-activated Src signaling, which is responsible for the endocytic entry of NDV through caveolae-mediated endocytosis. This process involved Src-dependent activation of the caveolae-associated Cav1 and Dyn2, as well as specific Rho GTPase and downstream effectors, thereby orchestrating the endocytic entry process of NDV. Our findings uncover a novel molecular mechanism of endocytic entry of NDV into host cells and provide novel insight into paramyxovirus mechanisms of entry.
Insights
Newcastle disease virus (NDV) enters cells using gangliosides as receptors, triggering Src signaling for caveolae-mediated endocytosis. This pathway involves key proteins like caveolin-1 and dynamin-2, orchestrating viral entry.
Area of Science:
- Cell biology
- Virology
- Molecular mechanisms of viral entry
Background:
- Caveolae-mediated endocytosis (CavME) is a cellular process for internalization.
- Pathogens like Newcastle disease virus (NDV) exploit CavME for entry.
- Molecular mechanisms of NDV-induced CavME are not fully understood.
Purpose of the Study:
- To elucidate the molecular mechanisms of NDV entry into host cells via CavME.
- To identify the specific receptors and signaling pathways involved in NDV-induced endocytosis.
- To provide novel insights into paramyxovirus entry mechanisms.
Main Methods:
- Investigated NDV binding to cell surface receptors (gangliosides vs. glycoproteins).
- Analyzed the role of Src kinase in NDV entry and protein phosphorylation (Cav1, Dyn2).
- Examined the involvement of Rho GTPases (RhoA, Cdc42) and actin cytoskeleton rearrangement.
Main Results:
- NDV utilizes sialic acid-containing gangliosides, not glycoproteins, as receptors.
- NDV binding activates Src kinase, leading to Cav1 and Dyn2 phosphorylation, crucial for endocytosis.
- Src-dependent activation of RhoA and Cdc42 regulates actin cytoskeleton dynamics for NDV entry.
Conclusions:
- NDV entry is mediated by ganglioside binding and subsequent Src-activated signaling.
- The process involves caveolae-associated proteins (Cav1, Dyn2) and Rho GTPases.
- This study reveals a novel molecular mechanism for NDV endocytic entry into host cells.
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