Winther Kristoffer S, Gerdes Kenn
Centre for Bacterial Cell Biology, Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle NE2 4HH, UK.
Mol Microbiol. 2009 May;72(4):918-30. doi: 10.1111/j.1365-2958.2009.06694.x. Epub 2009 Apr 14.
Toxin-antitoxin loci have been identified in almost all free-living prokaryotes, often in high copy numbers. The biological function and molecular targets of the abundant vapBC loci are not yet known. Here we analyse the vapBC loci of Salmonella LT2 and Shigella plasmid pMYSH6000. Both loci encode putative PIN (PilT N-terminal) domain toxins, and antitoxins that may regulate vapBC transcription. We show that vapBC(LT2) and vapBC(pMYSH) are bona fide TA loci: (i) both VapCs inhibited cell growth very efficiently and were counteracted by the cognate VapBs; (ii) both VapCs inhibited translation; (iii) transcription of the vapBC loci was induced by amino acid starvation and chloramphenicol, consistent with the proposal that VapB is an unstable inhibitor of vapBC transcription; (iv) ectopic expression of both VapCs induced a bacteriostatic condition that could be reversed by the cognate antitoxins. Unexpectedly, induction of vapC in Escherichia coli resulted in mRNA cleavage at stop-codons. Surprisingly, these cleavages depended on the yefM yoeB locus, indicating cross-activation between different toxins, that is, VapC activated YoeB mRNA interferase. Activation of YoeB depended on Lon, indicating that Lon degrades YefM antitoxin. Based on these results we present a model that explains activation of YoeB.
毒素 - 抗毒素位点几乎在所有自由生活的原核生物中都已被鉴定出来,且通常拷贝数很高。大量存在的vapBC位点的生物学功能和分子靶点尚不清楚。在此,我们分析了沙门氏菌LT2和志贺氏菌质粒pMYSH6000的vapBC位点。这两个位点都编码假定的PIN(PilT N末端)结构域毒素以及可能调节vapBC转录的抗毒素。我们表明vapBC(LT2)和vapBC(pMYSH)是真正的毒素 - 抗毒素位点:(i) 两种VapC都非常有效地抑制细胞生长,并被相应的VapB所抵消;(ii) 两种VapC都抑制翻译;(iii) vapBC位点的转录由氨基酸饥饿和氯霉素诱导,这与VapB是vapBC转录的不稳定抑制剂这一观点一致;(iv) 两种VapC的异位表达诱导了一种抑菌状态,该状态可被相应的抗毒素逆转。出乎意料的是,在大肠杆菌中诱导vapC会导致在终止密码子处的mRNA切割。令人惊讶的是,这些切割依赖于yefM yoeB位点,表明不同毒素之间存在交叉激活,即VapC激活了YoeB mRNA干扰酶。YoeB的激活依赖于Lon,表明Lon降解YefM抗毒素。基于这些结果,我们提出了一个解释YoeB激活的模型。