Velterop J S, Sellink E, Meulenberg J J, David S, Bulder I, Postma P W
E. C. Slater Institute, BioCentrum Amsterdam, University of Amsterdam, The Netherlands.
J Bacteriol. 1995 Sep;177(17):5088-98. doi: 10.1128/jb.177.17.5088-5098.1995.
In Klebsiella pneumoniae, six genes, constituting the pqqABCDEF operon, which are required for the synthesis of the cofactor pyrroloquinoline quinone (PQQ) have been identified. The role of each of these K. pneumoniae Pqq proteins was examined by expression of the cloned pqq genes in Escherichia coli, which cannot synthesize PQQ. All six pqq genes were required for PQQ biosynthesis and excretion into the medium in sufficient amounts to allow growth of E. coli on glucose via the PQQ-dependent glucose dehydrogenase. Mutants lacking the PqqB or PqqF protein synthesized small amounts of PQQ, however. PQQ synthesis was also studied in cell extracts. Extracts made from cells containing all Pqq proteins contained PQQ. Lack of each of the Pqq proteins except PqqB resulted in the absence of PQQ. Extracts lacking PqqB synthesized PQQ slowly. Complementation studies with extracts containing different Pqq proteins showed that an extract lacking PqqC synthesized an intermediate which was also detected in the culture medium of pqqC mutants. It is proposed that PqqC catalyzes the last step in PQQ biosynthesis. Studies with cells lacking PqqB suggest that the same intermediate might be accumulated in these mutants. By using pqq-lacZ protein fusions, it was shown that the expression of the putative precursor of PQQ, the small PqqA polypeptide, was much higher than that of the other Pqq proteins. Synthesis of PQQ most likely requires molecular oxygen, since PQQ was not synthesized under anaerobic conditions, although the pqq genes were expressed.
在肺炎克雷伯菌中,已鉴定出构成吡咯喹啉醌(PQQ)辅因子合成所需的pqqABCDEF操纵子的六个基因。通过在不能合成PQQ的大肠杆菌中表达克隆的pqq基因,研究了肺炎克雷伯菌中每种Pqq蛋白的作用。PQQ生物合成以及向培养基中分泌足够量的PQQ以允许大肠杆菌通过依赖PQQ的葡萄糖脱氢酶利用葡萄糖生长都需要所有六个pqq基因。然而,缺乏PqqB或PqqF蛋白的突变体仅合成少量PQQ。还在细胞提取物中研究了PQQ的合成。含有所有Pqq蛋白的细胞提取物中含有PQQ。除PqqB外,缺乏每种Pqq蛋白都会导致PQQ缺失。缺乏PqqB的提取物合成PQQ的速度很慢。用含有不同Pqq蛋白的提取物进行的互补研究表明,缺乏PqqC的提取物合成了一种中间体,在pqqC突变体的培养基中也检测到了这种中间体。有人提出PqqC催化PQQ生物合成的最后一步。对缺乏PqqB的细胞的研究表明,这些突变体中可能积累了相同的中间体。通过使用pqq-lacZ蛋白融合体,发现PQQ假定前体小PqqA多肽的表达远高于其他Pqq蛋白。PQQ的合成很可能需要分子氧,因为尽管pqq基因表达,但在厌氧条件下不合成PQQ。