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Assembly Dynamics and Stability of the Pneumococcal Epsilon Zeta Antitoxin Toxin (PezAT) System from Streptococcus pneumoniae

机译:肺炎链球菌的肺炎球菌Epsilon Zeta抗毒素毒素(PezAT)系统的组装动力学和稳定性。

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摘要

The pneumococcal epsilon zeta antitoxin toxin (PezAT) system is a chromosomally encoded, class II toxin antitoxin system from the human pathogen Streptococcus pneumnoniae. Neutralization of the bacteriotoxic protein PezT is carried out by complex formation with its cognate antitoxin PezA. Here we study the stability of the inhibitory complex in vivo and in vitro. We found that toxin release is impeded in Escherichia coli and Bacillus subtilis due to the proteolytic resistance of PezA once bound to PezT. These findings are supported by in vitro experiments demonstrating a strong thermodynamic stabilization of both proteins upon binding. A detailed kinetic analysis of PezAT assembly revealed that these particular features of PezAT are based on a strong, electrostatically guided binding mechanism leading to a stable toxin antitoxin complex with femtomolar affinity. Our data show that PezAT complex formation is distinct to all other conventional toxin antitoxin modules and a controlled mode of toxin release is required for activation.
机译:肺炎球菌epsilon zeta抗毒素毒素(PezAT)系统是来自人类病原体肺炎链球菌的染色体编码II类毒素抗毒素系统。细菌毒性蛋白PezT的中和是通过与其同源抗毒素PezA形成复合物来进行的。在这里,我们研究了体内和体外抑制复合物的稳定性。我们发现,由于一旦结合到PezT上的PezA的蛋白水解抗性,大肠杆菌和枯草芽孢杆菌中的毒素释放会受到阻碍。这些发现得到了体外实验的支持,该实验证明了两种蛋白质在结合后均具有强大的热力学稳定性。对PezAT装配体的详细动力学分析表明,PezAT的这些特殊功能基于强大的静电引导结合机制,从而产生了具有飞摩尔亲和力的稳定毒素抗毒素复合物。我们的数据表明,PezAT复合物的形成不同于所有其他常规毒素抗毒素模块,并且激活过程需要毒素释放的受控模式。

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