bioRxiv · 10.64898/2026.09.23.753747
Dual ATPase-activated DNA hemimethylation and cleavage by the MANTIS defence system
Abstract
Bacterial defence systems are diverse and form major barriers to horizontal gene transfer and bacteriophage (phage) infection. Though restriction-modification systems were the first such defences discovered and remain the most widespread, the basis of self/non-self discrimination in many newly identified methylation-based systems remains unclear. Here, we define the mechanism of a widely distributed BREX-related defence family, previously termed Gao_RL, which we rename MANTIS (Methyltransferase, ATPases and Nuclease Targeting Inverted-repeat Sequences). Using phage infection and plasmid transformation assays in Pseudomonas aeruginosa, biochemical reconstitution, and structural biology, we show that MANTIS establishes self-identity through adenine hemimethylation of short asymmetric DNA sequences. Unexpectedly, a AAA+ ATPase (MtsA) and a co-regulator (MtsB) are both required to recruit and activate the methyltransferase MtsC, revealing a previously unknown ATP-dependent mode of epigenetic modification. DNA recognition by the MtsABC complex then triggers restriction by a dimeric helicase-nuclease effector (MtsD), with activity dependent on target-site architecture: inverted pairs of unmodified sites support robust restriction, whereas direct repeats or single sites are restricted less efficiently. Consistent with this model, virulent phages show strand-biased depletion of MANTIS target sites, indicating evolutionary pressure to evade restriction. Together, these findings reveal how dual ATPases couple self-modification to non-self restriction and provide a framework for understanding the expanding landscape of methylation-based defence systems.
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Shaw, S. J., Went, S. C., Agapov, A., Westley, J., Olina, A., Graham, S., Chong, C. E., MultiDefence Consortium,, Baker, K. S., White, M. F., van Houte, S., Westra, E. R., Blower, T. R., Szczelkun, M. D.. 2026-09-24. Dual ATPase-activated DNA hemimethylation and cleavage by the MANTIS defence system. https://doi.org/10.64898/2026.09.23.753747
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