Gaille Catherine, Reimmann Cornelia, Haas Dieter
Institut de Microbiologie Fondamentale, Université de Lausanne, CH-1015 Lausanne, Switzerland.
J Biol Chem. 2003 May 9;278(19):16893-8. doi: 10.1074/jbc.M212324200. Epub 2003 Mar 6.
In Pseudomonas aeruginosa the extracellular metabolite and siderophore pyochelin is synthesized from two major precursors, chorismate and l-cysteine via salicylate as an intermediate. The regulatory role of isochorismate synthase, the first enzyme in the pyochelin biosynthetic pathway, was studied. This enzyme is encoded by pchA, the last gene in the pchDCBA operon. The PchA protein was purified to apparent electrophoretic homogeneity from a PchA-overexpressing P. aeruginosa strain. The native enzyme was a 52-kDa monomer in solution, and its activity strictly depended on Mg(2+). At pH 7.0, the optimum, a K(m) = 4.5 microm and a k(cat) = 43.1 min(-1) were determined for chorismate. No feedback inhibitors or other allosteric effectors were found. The intracellular PchA concentration critically determined the rate of salicylate formation both in vitro and in vivo. In cultures grown in iron-limiting media to high cell densities, overexpression of the pchA gene resulted in overproduction of salicylate as well as in enhanced pyochelin formation. From this work and earlier studies, it is proposed that one important factor influencing the flux through the pyochelin biosynthetic pathway is the PchA concentration, which is determined at a transcriptional level, with pyochelin acting as a positive signal and iron as a negative signal.
在铜绿假单胞菌中,细胞外代谢物和铁载体绿脓菌素由两种主要前体物合成,分支酸和L-半胱氨酸通过水杨酸作为中间体。研究了异分支酸合酶(绿脓菌素生物合成途径中的第一个酶)的调节作用。该酶由pchA编码,pchA是pchDCBA操纵子中的最后一个基因。从过表达PchA的铜绿假单胞菌菌株中纯化出表观电泳纯的PchA蛋白。天然酶在溶液中是52 kDa的单体,其活性严格依赖于Mg(2+)。在pH 7.0(最适pH)时,确定分支酸的K(m) = 4.5 μM,k(cat) = 43.1 min(-1)。未发现反馈抑制剂或其他别构效应物。细胞内PchA浓度在体外和体内都决定性地决定了水杨酸的形成速率。在铁限制培养基中生长至高细胞密度的培养物中,pchA基因的过表达导致水杨酸过量产生以及绿脓菌素形成增加。根据这项工作和早期研究,提出影响绿脓菌素生物合成途径通量的一个重要因素是PchA浓度,它在转录水平上被决定,绿脓菌素作为正信号,铁作为负信号。