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Biology subjects

Andriianov, A.

Publications and source records attributed to Andriianov, A..

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↗

Phage T3 overcomes the BREX defence through SAM cleavage and inhibition of SAM synthesis

Bacteriophage T3 encodes a SAMase that through cleavage of S-adenosyl-methionine (SAM) circumvents the SAM-dependent Type I Restriction-Modification defence of the host bacterium Escherichia coli. Here, we show that the SAMase also allows T3 to evade BREX defence. SAM degradation weakly affects BREX methylation of host DNA, but completely inhibits the defensive function of BREX, suggesting that SAM is required as a co-factor for BREX-mediated exclusion of phage DNA. The anti-BREX activity of the T3 SAMase is mediated by two independent mechanisms: enzymatic degradation of SAM and downregulation of SAM synthesis through direct inhibition of the host SAM synthase MetK. We determined a 2.8 [A] cryo-EM structure of the eight-subunit T3 SAMase-MetK complex. Structure guided mutagenesis of the SAMase-MetK interface revealed that the interaction with MetK stabilizes the T3 SAMase in vivo, thus further stimulating its anti-BREX activity. This work provides insights in the versatility and intricacy of bacteriophage counter-defence mechanisms and highlights the role of SAM as an important co-factor of diverse phage-defence systems.

microbiology↗