Serino L, Reimmann C, Visca P, Beyeler M, Chiesa V D, Haas D
Laboratoire de Biologie Microbienne, Université de Lausanne, Switzerland.
J Bacteriol. 1997 Jan;179(1):248-57. doi: 10.1128/jb.179.1.248-257.1997.
The high-affinity siderophore salicylate is an intermediate in the biosynthetic pathway of pyochelin, another siderophore and chelator of transition metal ions, in Pseudomonas aeruginosa. The 2.5-kb region upstream of the salicylate biosynthetic genes pchBA was sequenced and found to contain two additional, contiguous genes, pchD and pchC, having the same orientation. The deduced amino acid sequence of the 60-kDa PchD protein was similar to those of the EntE protein (2,3-dihydroxybenzoate-AMP ligase) of Escherichia coli and other adenylate-forming enzymes, suggesting that salicylate might be adenylated at the carboxyl group by PchD. The 28-kDa PchC protein showed similarities to thioesterases of prokaryotic and eukaryotic origin and might participate in the release of the product(s) formed from activated salicylate. One potential product, dihydroaeruginoate (Dha), was identified in culture supernatants of iron-limited P. aeruginosa cells. The antifungal antibiotic Dha is thought to arise from the reaction of salicylate with cysteine, followed by cyclization of cysteine. Inactivation of the chromosomal pchD gene by insertion of the transcription and translation stop element omega Sm/Sp abolished the production of Dha and pyochelin, implying that PchD-mediated activation of salicylate may be a common first step in the synthesis of both metabolites. Furthermore, the pchD::omega Sm/Sp mutation had a strong polar effect on the expression of the pchBA genes, i.e., on salicylate synthesis, indicating that the pchDCBA genes constitute a transcriptional unit. A full-length pchDCBA transcript of ca. 4.4 kb could be detected in iron-deprived, growing cells of P. aeruginosa. Transcription of pchD started at tandemly arranged promoters, which overlapped with two Fur boxes (binding sites for the ferric uptake regulator) and the promoter of the divergently transcribed pchR gene encoding an activator of pyochelin biosynthesis. This promoter arrangement allows tight iron-mediated repression of the pchDCBA operon.
高亲和力铁载体水杨酸酯是铜绿假单胞菌中另一种铁载体和过渡金属离子螯合剂——绿脓菌素生物合成途径的中间产物。对水杨酸酯生物合成基因pchBA上游2.5 kb的区域进行测序,发现其包含另外两个相邻的基因pchD和pchC,它们具有相同的方向。推导的60 kDa PchD蛋白的氨基酸序列与大肠杆菌的EntE蛋白(2,3 - 二羟基苯甲酸 - AMP连接酶)及其他腺苷酸形成酶的序列相似,这表明水杨酸酯可能被PchD在羧基处腺苷化。28 kDa的PchC蛋白与原核和真核来源的硫酯酶相似,可能参与由活化的水杨酸酯形成的产物的释放。在铁限制的铜绿假单胞菌细胞的培养上清液中鉴定出一种潜在产物——二氢绿脓菌素(Dha)。抗真菌抗生素Dha被认为是由水杨酸酯与半胱氨酸反应,随后半胱氨酸环化产生的。通过插入转录和翻译终止元件ωSm/Sp使染色体pchD基因失活,消除了Dha和绿脓菌素的产生,这意味着PchD介导的水杨酸酯活化可能是这两种代谢产物合成的共同第一步。此外,pchD::ωSm/Sp突变对pchBA基因的表达有很强的极性效应,即对水杨酸酯合成有影响,表明pchDCBA基因构成一个转录单元。在铁缺乏且生长的铜绿假单胞菌细胞中可以检测到约4.4 kb的全长pchDCBA转录本。pchD的转录起始于串联排列的启动子,这些启动子与两个Fur盒(铁摄取调节因子的结合位点)以及反向转录的编码绿脓菌素生物合成激活剂的pchR基因的启动子重叠。这种启动子排列允许铁介导对pchDCBA操纵子进行严格的抑制。