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Characterization of a toxin-antitoxin system in Mycobacterium tuberculosis suggests neutralization by phosphorylation as the antitoxicity mechanism

机译:结核分枝杆菌中毒素 - 抗毒素体系的表征表明磷酸化作为抗毒性机制的中和

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Mycobacterium tuberculosis (Mtb) encodes an exceptionally large number of toxin-antitoxin (TA) systems, supporting the hypothesis that TA systems are involved in pathogenesis. We characterized the putative Mtb Rv1044-Rv1045 TA locus structurally and functionally, demonstrating that it constitutes a bona fide TA system but adopts a previously unobserved antitoxicity mechanism involving phosphorylation of the toxin. While Rv1045 encodes the guanylyltransferase TglT functioning as a toxin, Rv1044 encodes the novel atypical serine protein kinase TakA, which specifically phosphorylates the cognate toxin at residue S78, thereby neutralizing its toxicity. In contrast to previous predictions, we found that Rv1044-Rv1045 does not belong to the type IV TA family because TglT and TakA interact with each other as substrate and kinase, suggesting an unusual type of TA system. Protein homology analysis suggests that other COG5340-DUF1814 protein pairs, two highly associated but uncharacterized protein families widespread in prokaryotes, might share this unusual antitoxicity mechanism. Xia Yu et al. report the characterization of a toxin-antitoxin system with an unusual mechanism in Mycobacterium tuberculosis. They find that the antitoxin locus Rv1044 encodes an atypical serine protein kinase that phosphorylates the toxin to neutralize toxicity.
机译:结核分枝杆菌(MTB)编码了一个异常大量的毒素 - 抗毒素(TA)系统,支持TA系统涉及发病机制的假设。我们在结构上和功能上表现了推定的MTB RV1044-RV1045 TA基因座,证明它构成了真绒TA系统,但采用先前未观察到的抗毒性机制,涉及毒素的磷酸化。虽然RV1045编码作为毒素的瓜盲族转移酶Tglt,但RV1044编码了新型非典型丝氨酸蛋白激酶Taka,其特异性地磷酸化了残留物S78的同源毒素,从而中和其毒性。与以前的预测相比,我们发现RV1044-RV1045不属于IV型TA系列,因为TGLT和TAKA彼此相互作用,呈衬底和激酶,表明了一种不寻常的TA系统。蛋白质同源性分析表明,其他COG5340-DUF1814蛋白对,两种高度相关但不具有表征的蛋白质家庭在原核生物中普及,可能分享这种异常的抗毒性机制。夏玉等。报告具有结核分枝杆菌异常机制的毒素 - 抗毒素体系的表征。他们发现抗毒素基因座RV1044编码非典型丝氨酸蛋白激酶,其磷酸化毒素中和毒性。

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