Page M D, Ferguson S J
Department of Biochemistry, University of Oxford, United Kingdom.
J Bacteriol. 1994 Oct;176(19):5919-28. doi: 10.1128/jb.176.19.5919-5928.1994.
A mutant of Paracoccus denitrificans, DP104, unable to grow anaerobically with nitrate as the terminal electron acceptor or aerobically with methanol as the electron donor and staining negatively in the dimethylphenylene diamine oxidation (Nadi) test, was isolated by transposon Tn5::phoA mutagenesis. P. denitrificans DP104 grown aerobically with succinate or choline had very low levels (2 to 3% of the wild-type levels) of spectroscopically detectable soluble c-type cytochromes. In contrast, membrane cytochromes of the a, b, and c types were present at 50% of the levels found in the wild type. The apo form of cytochrome c550, at an approximately 1:1 molar ratio with the holo form, was found in the periplasm of DP104. The TnphoA element was shown to be inserted immediately upstream of the translational start of hemA, the gene coding for 5-aminolevulinate synthase, which was sequenced. Low-level expression of this gene, driven off an incidental promoter provided by TnphoA-cointegrated suicide vector DNA, is the basis of the phenotype which could be complemented by the addition of 5-aminolevulinate to growth media. Disruption of the hemA gene generated a P. denitrificans strain auxotrophic for 5-aminolevulinate, establishing that there is no hemA-independent pathway of heme synthesis in this organism. The differential deficiency in periplasmic c-type cytochromes relative to membrane cytochromes in DP104 is suggested to arise from unequal competition for the restricted supply of heme which results from the effects of the transposon insertion.
通过转座子Tn5::phoA诱变,分离出了一种脱氮副球菌突变体DP104,该突变体不能以硝酸盐作为末端电子受体进行厌氧生长,也不能以甲醇作为电子供体进行好氧生长,并且在二甲基对苯二胺氧化(纳迪)试验中呈阴性染色。在以琥珀酸盐或胆碱进行好氧生长的脱氮副球菌DP104中,光谱可检测的可溶性c型细胞色素水平非常低(仅为野生型水平的2%至3%)。相比之下,a、b和c型膜细胞色素的含量为野生型的50%。在DP104的周质中发现了细胞色素c550的脱辅基形式,其与全酶形式的摩尔比约为1:1。已证明TnphoA元件插入到hemA(编码5-氨基酮戊酸合酶的基因)翻译起始位点的紧邻上游,并对其进行了测序。该基因由TnphoA共整合自杀载体DNA提供的偶然启动子驱动进行低水平表达,这就是该表型的基础,向生长培养基中添加5-氨基酮戊酸可以对其进行互补。hemA基因的破坏产生了一种对5-氨基酮戊酸营养缺陷的脱氮副球菌菌株,这表明在该生物体中不存在不依赖hemA的血红素合成途径。DP104中周质c型细胞色素相对于膜细胞色素的差异缺陷,被认为是由于转座子插入的影响导致血红素供应受限,竞争不平等所致。