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SspABCD-SspFGH Constitutes a New Type of DNA Phosphorothioate-Based Bacterial Defense System

机译:SSPABCD-SSPFGH构成了一种新型的DNA硫代磷酸酯基细菌防御系统

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We recently found that SspABCD, catalyzing single-stranded (ss) DNA phosphorothioate (PT) modification, coupled with SspE provides protection against phage infection. SspE performs both PT-simulated NTPase and DNA-nicking nuclease activities to damage phage DNA, rendering SspA-E a PT-sensing defense system. ABSTRACT Unlike nucleobase modifications in canonical restriction-modification systems, DNA phosphorothioate (PT) epigenetic modification occurs in the DNA sugar-phosphate backbone when the nonbridging oxygen is replaced by sulfur in a double-stranded (ds) or single-stranded (ss) manner governed by DndABCDE or SspABCD, respectively. SspABCD coupled with SspE constitutes a defense barrier in which SspE depends on sequence-specific PT modifications to exert its antiphage activity. Here, we identified a new type of ssDNA PT-based SspABCD-SspFGH defense system capable of providing protection against phages through a mode of action different from that of SspABCD-SspE. We provide further evidence that SspFGH damages non-PT-modified DNA and exerts antiphage activity by suppressing phage DNA replication. Despite their different defense mechanisms, SspFGH and SspE are compatible and pair simultaneously with one SspABCD module, greatly enhancing the protection against phages. Together with the observation that the sspBCD-sspFGH cassette is widely distributed in bacterial genomes, this study highlights the diversity of PT-based defense barriers and expands our knowledge of the arsenal of phage defense mechanisms.
机译:我们最近发现SSPABCD,催化单链(SS)DNA硫代磷酸酯(PT)改性,偶联与SSPE提供防止噬菌体感染的保护。 SSPE对PT模拟的NTPA酶和DNA切口核酸酶活性进行损伤噬菌体DNA,渲染SSPA-E一种PT传感防御系统。摘要与典型限制性修饰系统中的核碱基修饰不同,当非批示氧气以双链(DS)或单链(SS)方式含硫时,在DNA糖磷酸酯骨架中发生DNA硫代磷酸酯(PT)表观遗传修饰分别由DNDABCDE或SSPABCD管理。 SSPABC与SSPE耦合构成防御屏障,其中SSPE取决于序列特异性Pt修饰以发挥其抗噬菌体活动。在这里,我们确定了一种新型的基于SSDNA PT的SSPABCD-SSPFGH防御系统,能够通过与SSPABCD-SSPE不同的作用方式通过不同的行动方式提供保护。我们提供了进一步的证据,即SSPFGH损害非Pt改性的DNA,通过抑制噬菌体DNA复制来施加抗噬菌体活性。尽管他们不同的防御机制,SSPFGH和SSPE兼容,并与一个SSPABCD模块同时兼容,大大提高了对噬菌体的保护。该研究突出了SSPBCD-SSPFGH盒在细菌基因组中广泛分布的观察结果,突出了PT的防御障碍的多样性,并扩大了我们对噬菌体防御机制库的了解。

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