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Evolution of the deaminase fold and multiple origins of eukaryotic editing and mutagenic nucleic acid deaminases from bacterial toxin systems

机译:脱氨酶折叠的进化以及细菌毒素系统中真核编辑和诱变核酸脱氨酶的多种起源

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摘要

The deaminase-like fold includes, in addition to nucleic aciducleotide deaminases, several catalytic domains such as the JAB domain, and others involved in nucleotide and ADP-ribose metabolism. Using sensitive sequence and structural comparison methods, we develop a comprehensive natural classification of the deaminase-like fold and show that its ancestral version was likely to operate on nucleotides or nucleic acids. Consequently, we present evidence that a specific group of JAB domains are likely to possess a DNA repair function, distinct from the previously known deubiquitinating peptidase activity. We also identified numerous previously unknown clades of nucleic acid deaminases. Using inference based on contextual information, we suggest that most of these clades are toxin domains of two distinct classes of bacterial toxin systems, namely polymorphic toxins implicated in bacterial interstrain competition and those that target distantly related cells. Genome context information suggests that these toxins might be delivered via diverse secretory systems, such as Type V, Type VI, PVC and a novel PrsW-like intramembrane peptidase-dependent mechanism. We propose that certain deaminase toxins might be deployed by diverse extracellular and intracellular pathogens as also endosymbionts as effectors targeting nucleic acids of host cells. Our analysis suggests that these toxin deaminases have been acquired by eukaryotes on several independent occasions and recruited as organellar or nucleo-cytoplasmic RNA modifiers, operating on tRNAs, mRNAs and short non-coding RNAs, and also as mutators of hyper-variable genes, viruses and selfish elements. This scenario potentially explains the origin of mutagenic AID/APOBEC-like deaminases, including novel versions from Caenorhabditis, Nematostella and diverse algae and a large class of fast-evolving fungal deaminases. These observations greatly expand the distribution of possible unidentified mutagenic processes catalyzed by nucleic acid deaminases.
机译:除核酸/核苷酸脱氨基酶外,类似脱氨酶的折叠还包括几个催化结构域,例如JAB结构域,以及其他涉及核苷酸和ADP-核糖代谢的结构域。使用敏感的序列和结构比较方法,我们开发了脱氨酶样折叠的全面自然分类,并显示其祖先版本可能在核苷酸或核酸上起作用。因此,我们提供的证据表明,一组特定的JAB域可能具有DNA修复功能,这与先前已知的去泛肽肽酶活性不同。我们还确定了核酸脱氨酶的众多先前未知的进化枝。使用基于上下文信息的推论,我们建议这些进化枝中的大多数是两类不同的细菌毒素系统的毒素域,即涉及细菌间竞争的多态毒素和针对远距离相关细胞的毒素。基因组背景信息表明,这些毒素可能通过多种分泌系统(例如V型,VI型,PVC和新型的PrsW样膜内肽酶依赖性机制)传递。我们提出某些脱氨酶毒素可能被多种细胞外和细胞内病原体以及内共生体作为靶向宿主细胞核酸的效应子而部署。我们的分析表明,这些毒素脱氨酶已被真核生物在数个独立的场合获得,并被募集为细胞质或核质RNA修饰剂,可在tRNA,mRNA和短非编码RNA上运行,还可以作为高变基因,病毒的突变体和自私的元素。这种情况可能解释了诱变的AID / APOBEC样脱氨酶的起源,包括来自食蟹孢子虫,线虫和各种藻类的新版本以及一大类快速发展的真菌脱氨酶。这些观察结果极大地扩展了核酸脱氨酶催化的可能的未确定的诱变过程的分布。

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