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Published on: March 8, 2018
Targeting viral proteins using insulin-like growth factor 2-fused lysosomal targeting chimera platform to combat
Saiya Ma1, Jie Zhang1, Sijie Zhou2
1College of Life Sciences, Hebei University, Baoding, 071002, China.
Targeted protein degradation (TPD) enables selective elimination of disease-related proteins, including viral proteins. Here, we evaluated the antiviral potential of an IGF2-fused lysosomal targeting chimera (iLYTAC) in ZIKV- and IAV-infected models. We first confirmed that iLYTAC efficiently mediates uptake of extracellular proteins via the IGF2-IGF2R pathway and traffics to lysosomes. In combination with anti-E-cadherin antibody, iLYTAC reduced E-cadherin levels by 2-fold, indicating functional lysosomal targeting. For antiviral application, iLYTAC combined with non-neutralizing anti-ZIKV E IgG significantly reduced viral titers (106.25 to 105.05 PFU/mL), decreased viral RNA and protein levels, and promoted lysosomal colocalization of E protein, which was abolished by lysosome inhibition. In ZIKV-infected mice, iLYTAC combined with anti-E IgG reduced viral loads across tissues and blood, alleviated organ pathology and inflammation. Similarly, in H1N1-infected A549 cells, iLYTAC with non-neutralizing anti-HA IgG reduced cytopathic effects and viral titers, while selectively degrading HA via lysosomes without affecting NP. Overall, iLYTAC converts non-neutralizing antibodies into functional degraders of viral proteins, enabling effective suppression of infection and providing a potential platform for broad-spectrum antiviral therapeutics.
Targeted protein degradation (TPD) enables selective elimination of disease-related proteins, including viral proteins. Here, we evaluated the antiviral potential of an IGF2-fused lysosomal targeting chimera (iLYTAC) in ZIKV- and IAV-infected models. We first confirmed that iLYTAC efficiently mediates uptake of extracellular proteins via the IGF2-IGF2R pathway and traffics to lysosomes. In combination with anti-E-cadherin antibody, iLYTAC reduced E-cadherin levels by 2-fold, indicating functional lysosomal targeting. For antiviral application, iLYTAC combined with non-neutralizing anti-ZIKV E IgG significantly reduced viral titers (106.25 to 105.05 PFU/mL), decreased viral RNA and protein levels, and promoted lysosomal colocalization of E protein, which was abolished by lysosome inhibition. In ZIKV-infected mice, iLYTAC combined with anti-E IgG reduced viral loads across tissues and blood, alleviated organ pathology and inflammation. Similarly, in H1N1-infected A549 cells, iLYTAC with non-neutralizing anti-HA IgG reduced cytopathic effects and viral titers, while selectively degrading HA via lysosomes without affecting NP. Overall, iLYTAC converts non-neutralizing antibodies into functional degraders of viral proteins, enabling effective suppression of infection and providing a potential platform for broad-spectrum antiviral therapeutics.
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