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Fusion activity of influenza virus. A comparison between biological and artificial target membrane vesicles
Abstract:
We have investigated the pH-dependent fusion activity of influenza virus toward human erythrocyte ghosts, utilizing a recently developed fluorescence assay, which permits continuous monitoring of the fusion reaction. The rate of fusion is negligible at neutral pH but shows a sharp increase at pH values just below 5.5. This pH dependence profile closely corresponds to that of virus-induced hemolysis. Fusion is rapidly inactivated by a low-pH preincubation of the virus alone either at 37 or at 0 degrees C. The presence of ghosts during this low-pH preincubation, carried out at 0 degree C under which condition there is hardly any fusion, causes a significant protection of the viral fusion activity against inactivation. Fusion initiated at low pH can be arrested instantaneously by readjustment of the pH to neutral. The characteristics of fusion of influenza virus with ghosts deviate from those of fusion with cardiolipin liposomes (Stegmann, T., Hoekstra, D., Scherphof, G., and Wilschut, J. (1985) Biochemistry 24, 3107-3113). Fusion with ghosts is consistent with a requirement of the well-documented pH-dependent conformational change in the viral hemagglutinin, whereas fusion with cardiolipin liposomes does not exhibit a strict dependence on the conformational change. Rather, the negative surface charge on the liposomes plays a critical role, as zwitterionic liposomes containing gangliosides show fusion behavior similar to that of erythrocyte ghosts.
Insights
Influenza virus fusion with red blood cells requires acidic pH, similar to hemolysis. This process is pH-dependent and involves conformational changes in viral hemagglutinin.
Area of Science:
- Virology
- Biochemistry
- Cell Biology
Background:
- Influenza virus entry into host cells is a critical step in infection.
- Understanding the mechanisms of viral fusion is essential for developing antiviral strategies.
Purpose of the Study:
- To investigate the pH-dependent fusion activity of influenza virus with human erythrocyte ghosts.
- To characterize the kinetics and conditions influencing influenza virus-erythrocyte fusion.
Main Methods:
- Utilized a novel fluorescence assay for continuous monitoring of viral fusion.
- Investigated fusion rates at various pH levels and temperatures.
- Assessed the impact of low-pH preincubation on viral fusion activity.
Main Results:
- Fusion activity is negligible at neutral pH and increases significantly below pH 5.5.
- Low-pH preincubation inactivates viral fusion, but this can be prevented by the presence of erythrocyte ghosts.
- Fusion can be instantaneously halted by returning to neutral pH.
Conclusions:
- Influenza virus-erythrocyte fusion is highly pH-dependent, correlating with virus-induced hemolysis.
- The fusion process likely involves pH-induced conformational changes in the viral hemagglutinin.
- Fusion with erythrocyte ghosts differs from fusion with cardiolipin liposomes, highlighting the role of specific membrane components.