k SARSCoV2 virus spike protein and antibodies, illustration Molecular model of antibodies blue attached to the Nterminal domain of the SARSCoV2 coronavirus spike S protein yellow. S proteins are found in the viral membrane, they bind to receptors on host cell membranes and facilitate the viruss entry to the cell. These antibodies, named 4A8, bind to the virus and neutralise it, preventing it from causing infection. SARSCoV2 emerged in Wuhan, China, in December 2019. The virus causes the disease Covid19, a respiratory illness that can lead to pneumonia and can be fatal in some cases. Stock Photo - Afloimages
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SARS CoV 2 virus spike protein and antibodies, illustration Molecular model of antibodies  blue  attached to the N terminal domain of the SARS CoV 2 coronavirus spike  S  protein  yellow . S proteins are found in the viral membrane, they bind to receptors on host cell membranes and facilitate the virus s entry to the cell. These antibodies, named 4A8, bind to the virus and neutralise it, preventing it from causing infection. SARS CoV 2 emerged in Wuhan, China, in December 2019. The virus causes the disease Covid 19, a respiratory illness that can lead to pneumonia and can be fatal in some cases.
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SARS-CoV-2 virus spike protein and antibodies, illustration

Molecular model of antibodies (blue) attached to the N-terminal domain of the SARS-CoV-2 coronavirus spike (S) protein (yellow). S proteins are found in the viral membrane, they bind to receptors on host cell membranes and facilitate the virus's entry to the cell. These antibodies, named 4A8, bind to the virus and neutralise it, preventing it from causing infection. SARS-CoV-2 emerged in Wuhan, China, in December 2019. The virus causes the disease Covid-19, a respiratory illness that can lead to pneumonia and can be fatal in some cases.

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