PT - JOURNAL ARTICLE AU - Adair L. Borges AU - Jenny Y. Zhang AU - MaryClare F. Rollins AU - Beatriz A. Osuna AU - Blake Wiedenheft AU - Joseph Bondy-Denomy TI - Bacteriophage cooperation suppresses CRISPR-Cas3 and Cas9 immunity AID - 10.1101/279141 DP - 2018 Jan 01 TA - bioRxiv PG - 279141 4099 - http://biorxiv.org/content/early/2018/03/10/279141.short 4100 - http://biorxiv.org/content/early/2018/03/10/279141.full AB - >Bacteria utilize CRISPR-Cas adaptive immune systems for protection from bacteriophages (phages), and some phages produce anti-CRISPR (Acr) proteins that inhibit immune function. Despite thorough mechanistic and structural information for some Acr proteins, how they are deployed and utilized by a phage during infection is unknown. Here, we show that Acr production does not guarantee phage replication, but instead, infections fail when phage population numbers fall below a critical threshold. Failing infections can be rescued by related phages that act as Acr donors, demonstrating that infections succeed if a sufficient Acr dose is contributed to a single cell by multiple phage genomes. The production of Acr proteins by phage genomes that fail to replicate leave the cell immunosuppressed, which predisposes the cell for successful infection by other phages in the population. This “cooperative” phage mechanism for CRISPR-Cas inhibition demonstrates inter-virus cooperation that may also manifest in other host-parasite interactions.