Coronaviruses: linking polyprotein processing and replication complex function
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AI plain-English summaryCoronaviruses chop their own long protein chains into specific fragments to control whether they copy their genetic material early or late in infection, but no one knows exactly which fragments do what. This matters because the two main proteases that perform the chopping are already targets of existing drugs like Paxlovid, yet the precise roles of the dozens of resulting protein pieces—especially the partially-cut "precursors"—remain a black box. Without knowing which fragments direct early versus late replication, researchers cannot rationally design the next generation of antiviral compounds. If this project succeeds, it will map the timing, location, and function of these precursors across three coronavirus families. That mechanistic map could reveal new drug targets hidden in the replication cycle itself, not just in the proteases. The work is fundamental science: it asks how a virus’s own molecular machinery switches modes. Similar fundamental studies of viral replication enzymes have previously underpinned the development of treatments for HIV and hepatitis C. A clearer picture of coronavirus polyprotein processing could lay the same kind of groundwork for future pandemic preparedness.
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