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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >Cleavage of the antitoxin of the parD toxin-antitoxin system is determined by the ClpAP protease and is modulated by the relative ratio of the toxin and the antitoxin
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Cleavage of the antitoxin of the parD toxin-antitoxin system is determined by the ClpAP protease and is modulated by the relative ratio of the toxin and the antitoxin

机译:parD毒素-抗毒素系统的抗毒素的裂解由ClpAP蛋白酶决定,并由毒素和抗毒素的相对比例调节

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摘要

Differential stability of toxins and antitoxins is the key for the conditional activation and function of Toxin-Antitoxin systems. Here we report the evaluation of the action of cell proteases Lon, ClpAP, ClpXP and ClpYQ on the Kis antitoxin and the Kid toxin of the parD TA system of plasmid R1. In vitro analysis shows that Kis antitoxin, but not the Kid toxin, is cleaved specifically by the ClpAP protease. The Kid toxin is not cleaved either by this protease or by any of the others cell proteases tested but in complex with the Kis antitoxin protects the cleavage of this protein in a way that is dependent on the toxin-antitoxin ratio. We further show that this protection is correlated with the inability of the ClpA chaperone to access the Kis antitoxin when in complex with Kid toxin. The stability of the antitoxin greatly increases in vivo in a clpP- background and plasmid maintenance mediated by the parD system, which is dependent on the differential decay of the antitoxin, is reduced to the levels observed in the absence of a functional toxin. The functional implications of these data are further discussed within the frame of the regulation of the parD system and of the available information on the nature of the toxin-antitoxin complexes formed at different toxin-antitoxin ratios.
机译:毒素和抗毒素的差异稳定性是毒素-抗毒素系统有条件激活和起作用的关键。在这里我们报告细胞蛋白酶Lon,ClpAP,ClpXP和ClpYQ对质粒R1的parD TA系统的Kis抗毒素和Kid毒素的作用的评估。体外分析显示,ClpAP蛋白酶可特异性切割Kis抗毒素,而非Kid毒素。 Kid毒素既不被该蛋白酶也不受任何其他测试的细胞蛋白酶裂解,但与Kis抗毒素复合可保护该蛋白的裂解,其方式取决于毒素-抗毒素的比例。我们进一步表明,这种保护作用与ClpA伴侣无法与Kis毒素复合时获得Kis抗毒素有关。在clpP背景中,抗毒素的稳定性在体内大大提高,由parD系统介导的质粒维护(取决于抗毒素的差异衰减)被降低到在没有功能性毒​​素的情况下观察到的水平。这些数据的功能含义将在parD系统的调节框架内以及有关以不同毒素-抗毒素比率形成的毒素-抗毒素复合物的性质的可用信息的框架内进行进一步讨论。

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