Timestamping Integrative Approach to Understand Secondary Envelopment of Human Cytomegalovirus
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AI plain-English summaryA single virus particle assembles inside a human cell in a precise, step-by-step process that scientists have never been able to watch in real time. Human cytomegalovirus (HCMV) infects most people worldwide and can cause severe disease in newborns and people with weakened immune systems. The final stage of its assembly—called secondary envelopment—takes place in the cell’s cytoplasm, where the virus wraps itself in a membrane stolen from the host. Researchers have known this happens for decades, but they have been stuck using bulk methods that average together thousands of particles at different stages, blurring the sequence of events. This team will build a new toolkit to freeze individual virus particles at different moments during assembly. They will combine flow-virometry, cryo-electron microscopy, crosslinking mass spectrometry, and computational modelling to map exactly which proteins touch which, in what order, and where they sit in space. The result will be the first spatiotemporal model of HCMV secondary envelopment. This is fundamental science. It will not produce a drug tomorrow. But herpesviruses share a common assembly mechanism, and every antiviral drug ever developed began with a molecular blueprint of how a virus works. Understanding the choreography of envelopment opens the door to blocking it.
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