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Biology subjects

Iarema, P.

Publications and source records attributed to Iarema, P..

2 recordsLinked to original sources

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.

molecular biology↗

Phages infecting the common gut commensal Escherichia coli HS reveal tropism for its Klebsiella-like capsule

Tailed dsDNA phages are ubiquitous and thought to infect almost any bacterial species. Escherichia coli HS - a commensal strain used as a model in gut colonization studies - has not been reported as a host for dsDNA phages and is resistant to more than 100 coliphages from the BASEL collection. Here, we report the first phages infecting E. coli HS, characterize their interaction with an endogenous BREX system, and provide a detailed genomic and phylogenetic description. Phages {phi}HS1 (Queuovirinae) and {phi}HS2 (Ackermannviridae) possess dPreQ and 5-NeOmdU modifications that confer resistance to restriction digestion. {phi}HS3 is a temperate phage, related to the native HS prophage {phi}HS4, and represents a founding member of a novel genus (Hueyvirus) of P22-like phages capable of lateral transduction. We reveal exchange of tailspike genes between {phi}HS2, {phi}HS3, and Klebsiella-specific phages. Furthermore, we demonstrate that E. coli HS encodes a Klebsiella-like K47 capsule required for phage infection. These results suggest that the broad phage resistance of E. coli HS may be linked to its capsular type.

microbiology↗