García-Quintáns Nieves, Repizo Guillermo, Martín Mauricio, Magni Christian, López Paloma
Departamento de Ciencia de Proteínas, Centro de Investigaciones Biológicas, Ramiro de Maeztu 9, 28040 Madrid, Spain.
Appl Environ Microbiol. 2008 Apr;74(7):1988-96. doi: 10.1128/AEM.01851-07. Epub 2008 Feb 1.
Lactococcus lactis subsp. lactis bv. diacetylactis strains are aroma-producing organisms used in starter cultures for the elaboration of dairy products. This species is essentially a fermentative microorganism, which cometabolizes glucose and citrate to yield aroma compounds through the diacetyl/acetoin biosynthetic pathway. Our previous results have shown that under acidic growth Lactococcus bv. diacetylactis CRL264 expresses coordinately the genes responsible for citrate transport and its conversion into pyruvate. In the present work the impact of acidic growth on glucose, citrate, and pyruvate metabolism of Lactococcus bv. diacetylactis CRL264 has been investigated by proteomic analysis. The results indicated that acid growth triggers the conversion of citrate, but not glucose, into alpha-acetolactate via pyruvate. Moreover, they showed that low pH has no influence on levels of lactate dehydrogenase and pyruvate dehydrogenase. Therefore, the influence of external pH on regulation of the diacetyl/acetoin biosynthetic pathway in Lactococcus bv. diacetylactis CRL264 has been analyzed at the transcriptional level. Expression of the als, aldB, aldC, and butBA genes encoding the enzymes involved in conversion of pyruvate into aroma compounds has been investigated by primer extension, reverse transcription-PCR analysis, and transcriptional fusions. The results support that this biosynthetic pathway is induced at the transcriptional level by acidic growth conditions, presumably contributing to lactococcal pH homeostasis by synthesis of neutral compounds and by decreasing levels of pyruvate.
乳酸乳球菌乳酸亚种双乙酰乳酸变种菌株是用于乳制品发酵剂培养物中的产香微生物。该菌种本质上是一种发酵微生物,它通过双乙酰/乙偶姻生物合成途径将葡萄糖和柠檬酸盐共代谢以产生香气化合物。我们之前的结果表明,在酸性生长条件下,乳酸乳球菌双乙酰乳酸变种CRL264会协同表达负责柠檬酸盐转运及其转化为丙酮酸的基因。在本研究中,通过蛋白质组学分析研究了酸性生长对乳酸乳球菌双乙酰乳酸变种CRL264的葡萄糖、柠檬酸盐和丙酮酸代谢的影响。结果表明,酸性生长会触发柠檬酸盐而非葡萄糖通过丙酮酸转化为α-乙酰乳酸。此外,结果还显示低pH对乳酸脱氢酶和丙酮酸脱氢酶的水平没有影响。因此,已在转录水平分析了外部pH对乳酸乳球菌双乙酰乳酸变种CRL264中双乙酰/乙偶姻生物合成途径调控的影响。通过引物延伸、逆转录PCR分析和转录融合研究了编码参与丙酮酸转化为香气化合物的酶的als、aldB、aldC和butBA基因的表达。结果支持该生物合成途径在转录水平上由酸性生长条件诱导,大概是通过合成中性化合物和降低丙酮酸水平来促进乳球菌的pH稳态。