Schreiner Mark E, Riedel Christian, Holátko Jiri, Pátek Miroslav, Eikmanns Bernhard J
Department of Microbiology and Biotechnology, University of Ulm, 89069 Ulm, Germany.
J Bacteriol. 2006 Feb;188(4):1341-50. doi: 10.1128/JB.188.4.1341-1350.2006.
Corynebacterium glutamicum recently has been shown to possess pyruvate:quinone oxidoreductase (PQO), catalyzing the oxidative decarboxylation of pyruvate to acetate and CO2 with a quinone as the electron acceptor. Here, we analyze the expression of the C. glutamicum pqo gene, investigate the relevance of the PQO enzyme for growth and amino acid production, and perform phylogenetic studies. Expression analyses revealed that transcription of pqo is initiated 45 bp upstream of the translational start site and that it is organized in an operon together with genes encoding a putative metal-activated pyridoxal enzyme and a putative activator protein. Inactivation of the chromosomal pqo gene led to the absence of PQO activity; however, growth and amino acid production were not affected under either condition tested. Introduction of plasmid-bound pqo into a pyruvate dehydrogenase complex-negative C. glutamicum strain partially relieved the growth phenotype of this mutant, indicating that high PQO activity can compensate for the function of the pyruvate dehydrogenase complex. To investigate the distribution of PQO enzymes in prokaryotes and to clarify the relationship between PQO, pyruvate oxidase (POX), and acetohydroxy acid synthase enzymes, we compiled and analyzed the phylogeny of respective proteins deposited in public databases. The analyses revealed a wide distribution of PQOs among prokaryotes, corroborated the hypothesis of a common ancestry of the three enzymes, and led us to propose that the POX enzymes of Lactobacillales were derived from a PQO.
最近研究表明,谷氨酸棒杆菌拥有丙酮酸:醌氧化还原酶(PQO),该酶以醌作为电子受体,催化丙酮酸氧化脱羧生成乙酸和二氧化碳。在此,我们分析了谷氨酸棒杆菌pqo基因的表达,研究了PQO酶对生长和氨基酸生产的相关性,并进行了系统发育研究。表达分析显示,pqo的转录起始于翻译起始位点上游45 bp处,并且它与编码一种假定的金属激活吡哆醛酶和一种假定的激活蛋白的基因一起组成一个操纵子。染色体上pqo基因的失活导致PQO活性缺失;然而,在所测试的任何条件下,生长和氨基酸生产均未受到影响。将携带pqo的质粒导入丙酮酸脱氢酶复合体阴性的谷氨酸棒杆菌菌株中,部分缓解了该突变体的生长表型,这表明高PQO活性可以补偿丙酮酸脱氢酶复合体的功能。为了研究PQO酶在原核生物中的分布,并阐明PQO、丙酮酸氧化酶(POX)和乙酰羟酸合酶之间的关系,我们整理并分析了公共数据库中各自蛋白质的系统发育。分析结果显示PQO在原核生物中广泛分布,证实了这三种酶具有共同祖先的假说,并使我们提出乳杆菌目的POX酶源自PQO。