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Recurrent acquisition of nuclease-protease pairs in antiviral immunity
- Tuck, Owen T;
- Hu, Jason J;
- Lopez, Santiago C;
- Adler, Benjamin A;
- O’Brien, Claire E;
- Hsieh, Kendall;
- Meredith, Charlotte;
- Loi, Kenneth J;
- Yoon, Peter H;
- Doherty, Erin E;
- Lahiri, Arushi;
- Doudna, Jennifer A
Published Web Location
https://doi.org/10.1126/science.aea8769Abstract
Antiviral immune systems diversify by integrating new genes into existing pathways, creating new mechanisms of viral resistance. We identified genes encoding a predicted nuclease paired with a trypsin-like protease repeatedly acquired by multiple, otherwise unrelated antiviral immune systems in bacteria. Cell-based and biochemical assays revealed that the nuclease is a proenzyme that cleaves DNA only after activation by its partner protease. Two distinct immune systems, Hachiman and AVAST (antiviral adenosine triphosphatase/nucleoside triphosphatase of the STAND superfamily, Avs), use the same mechanism of proteolytic activation despite their independent evolutionary origins. Examination of nuclease-protease inheritance patterns identified caspase-nuclease (canu) genomic loci that confer antiviral defense in a pathway reminiscent of eukaryotic caspase activation. These results uncover the coordinated activities of pronucleases and their activating proteases within different immune systems and show how coevolution enables defense system innovation.
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