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Molecular basis of ribosome recognition and mRNA hydrolysis by the E-coli YafQ toxin

机译:大肠杆菌YafQ毒素对核糖体识别和mRNA水解的分子基础

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Bacterial type II toxin- antitoxin modules are proteinprotein complexes whose functions are finely tuned by rapidly changing environmental conditions. E. coli toxin YafQ is suppressed under steady state growth conditions by virtue of its interaction with its cognate antitoxin, DinJ. During stress, DinJ is proteolytically degraded and free YafQ halts translation by degrading ribosome- bound mRNA to slow growth until the stress has passed. Although structures of the ribosome with toxins RelE and YoeB have been solved, it is unclear what residues among ribosomedependent toxins are essential for mediating both recognition of the ribosome and the mRNA substrate given their low sequence identities. Here we show that YafQ coordinates binding to the 70S ribosome via three surface- exposed patches of basic residues that we propose directly interact with 16S rRNA. We demonstrate that YafQ residues H50, H63, D67 and H87 participate in acid- base catalysis during mRNA hydrolysis and further show that H50 and H63 functionally complement as general bases to initiate the phosphodiester cleavage reaction. Moreover YafQ residue F91 likely plays an important role in mRNA positioning. In summary, our findings demonstrate the plasticity of ribosome- dependent toxin active site residues and further our understanding of which toxin residues are important for function.
机译:II型细菌毒素-抗毒素模块是蛋白质复合物,其功能可以通过迅速变化的环境条件进行微调。大肠杆菌毒素YafQ由于其与其同类抗毒素DinJ的相互作用而在稳态生长条件下受到抑制。在胁迫期间,DinJ会被蛋白水解降解,而游离的YafQ通过降解核糖体结合的mRNA来减缓翻译,以减缓生长,直到胁迫消失为止。尽管已经解决了具有毒素RelE和YoeB的核糖体的结构,但目前尚不清楚核糖体依赖性毒素中的哪些残基对于介导核糖体和mRNA底物的识别具有重要的作用,因为它们具有较低的序列同一性。在这里,我们显示YafQ通过我们建议直接与16S rRNA相互作用的三个基本残基的表面暴露斑块协调与70S核糖体的结合。我们证明YafQ残基H50,H63,D67和H87参与mRNA水解过程中的酸碱催化作用,并进一步表明H50和H63功能上互补作为一般碱基,以启动磷酸二酯裂解反应。此外,YafQ残基F91可能在mRNA定位中起重要作用。总而言之,我们的发现证明了核糖体依赖性毒素活性位点残基的可塑性,并且进一步使我们了解了哪些毒素残基对功能很重要。

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