Jennifer Doudna’s team finds ancient CRISPR ancestor that may aid gene editing
Researchers at the Innovative Genomics Institute have discovered a viral system called VIPR that uses a unique 'gapped' coding strategy. This finding provides new insights into the evolution of CRISPR and offers a potential new pathway for advanced genome engineering.
Why it matters
Advancements in CRISPR technology have profound implications for medicine, agriculture, and biotechnology by allowing for more precise genetic modifications.
The genetic code is usually described as an orderly language, read one letter after another in precise three-letter units. But nature has never been particularly interested in following the rules humans use to describe it. Researchers at the Innovative Genomics Institute (IGI), founded by Jennifer Doudna, have now uncovered a viral system that appears to rewrite some of those assumptions. Called VIPR, the system uses a previously unknown “gapped” coding strategy to recognise DNA, offering clues about the ancient origins of CRISPR and potentially opening another route to genome engineering. The findings were reported in two connected papers in Science in September 2026.A mystery hidden in viral RNAThe discovery began with a search for ancient relatives of Class 1 CRISPR systems, the older and more widespread branch of CRISPR biology.
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