Khoo Seok Kooi, Loll Bernhard, Chan Wai Ting, Shoeman Robert L, Ngoo Lena, Yeo Chew Chieng, Meinhart Anton
Department of Biomolecular Mechanisms, Max-Planck-Institute for Medical Research, 69120 Heidelberg, Germany.
J Biol Chem. 2007 Jul 6;282(27):19606-18. doi: 10.1074/jbc.M701703200. Epub 2007 May 8.
The chromosomal pezT gene of the Gram-positive pathogen Streptococcus pneumoniae encodes a protein that is homologous to the zeta toxin of the Streptococcus pyogenes plasmid pSM19035-encoded epsilon-zeta toxin-antitoxin system. Overexpression of pezT in Escherichia coli led to severe growth inhibition from which the bacteria recovered approximately 3 h after induction of expression. The toxicity of PezT was counteracted by PezA, which is encoded immediately upstream of pezT and shares weak sequence similarities in the C-terminal region with the epsilon antitoxin. The pezAT genes form a bicistronic operon that is co-transcribed from a sigma(70)-like promoter upstream of pezA and is negatively autoregulated with PezA functioning as a transcriptional repressor and PezT as a co-repressor. Both PezA and the non-toxic PezA(2)PezT(2) protein complex bind to a palindrome sequence that overlaps the promoter. This differs from the epsilon-zeta system in which epsilon functions solely as the antitoxin and transcriptional regulation is carried out by another protein designated omega. Results from site-directed mutagenesis experiments demonstrated that the toxicity of PezT is dependent on a highly conserved phosphoryltransferase active site and an ATP/GTP nucleotide binding site. In the PezA(2)PezT(2) complex, PezA neutralizes the toxicity of PezT by blocking the nucleotide binding site through steric hindrance.
革兰氏阳性病原体肺炎链球菌的染色体pezT基因编码一种与化脓性链球菌质粒pSM19035编码的ε-ζ毒素-抗毒素系统的ζ毒素同源的蛋白质。在大肠杆菌中过表达pezT会导致严重的生长抑制,细菌在诱导表达后约3小时恢复。PezT的毒性被PezA抵消,PezA编码在pezT的紧邻上游,在C末端区域与ε抗毒素具有弱序列相似性。pezAT基因形成一个双顺反子操纵子,从pezA上游的一个类似sigma(70)的启动子共同转录,并由PezA作为转录阻遏物和PezT作为共阻遏物进行负向自动调节。PezA和无毒的PezA(2)PezT(2)蛋白复合物都与一个与启动子重叠的回文序列结合。这与ε-ζ系统不同,在ε-ζ系统中,ε仅作为抗毒素起作用,转录调控由另一种名为ω的蛋白质进行。定点诱变实验结果表明,PezT的毒性取决于一个高度保守的磷酸转移酶活性位点和一个ATP/GTP核苷酸结合位点。在PezA(2)PezT(2)复合物中,PezA通过空间位阻阻断核苷酸结合位点来中和PezT的毒性。