H-NS silences antiviral immunity through 3D chromatin compaction
Bacterial antiviral immunity systems can be toxic to their hosts and must be tightly regulated. Immunity genes are often encoded by AT-rich mobile genetic elements subjected to silencing by nucleoid binding protein H-NS. Using RNA-seq, ChIP-seq, and chromosome 3D reconstruction with Micro-C, we find that H-NS binds and compacts bacterial immunity loci. H-NS deletion reveals anti-phage activity in model Escherichia coli strains generally considered phage-sensitive. Extending this approach to environmental isolates, we show that removal of H-NS silencing enhances defense, allowing bacteria to restrict phages with anti-defense proteins. We also discover Madara, a novel immunity system that complements the co-regulated BREX defense. Our results establish H-NS as a master regulator of bacterial immunity and highlight the importance of expression levels for anti-phage activity in native hosts.