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首页> 外文期刊>Frontiers in Microbiology >Three CoA Transferases Involved in the Production of Short Chain Fatty Acids in Porphyromonas gingivalis
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Three CoA Transferases Involved in the Production of Short Chain Fatty Acids in Porphyromonas gingivalis

机译:三种CoA转移酶参与 Gerphyromonas gingivalis 中短链脂肪酸的生产

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Butyryl-CoA:acetate CoA transferase, which produces butyrate and acetyl-CoA from butyryl-CoA and acetate, is responsible for the final step of butyrate production in bacteria. This study demonstrates that in the periodontopathogenic bacterium Porphyromonas gingivalis this reaction is not catalyzed by PGN_1171, previously annotated as butyryl-CoA:acetate CoA transferase, but by three distinct CoA transferases, PGN_0725, PGN_1341, and PGN_1888. Gas chromatography/mass spectrometry (GC-MS) and spectrophotometric analyses were performed using crude enzyme extracts from deletion mutant strains and purified recombinant proteins. The experiments revealed that, in the presence of acetate, PGN_0725 preferentially utilized butyryl-CoA rather than propionyl-CoA. By contrast, this preference was reversed in PGN_1888. The only butyryl-CoA:acetate CoA transferase activity was observed in PGN_1341. Double reciprocal plots revealed that all the reactions catalyzed by these enzymes follow a ternary-complex mechanism, in contrast to previously characterized CoA transferases. GC-MS analysis to determine the concentrations of short chain fatty acids (SCFAs) in culture supernatants of P. gingivalis wild type and mutant strains revealed that PGN_0725 and PGN_1888 play a major role in the production of butyrate and propionate, respectively. Interestingly, a triple deletion mutant lacking PGN_0725, PGN_1341, and PGN_1888 produced low levels of SCFAs, suggesting that the microorganism contains CoA transferase(s) in addition to these three enzymes. Growth rates of the mutant strains were mostly slower than that of the wild type, indicating that many carbon compounds produced in the SCFA synthesis appear to be important for the biological activity of this microorganism.
机译:丁酰辅酶A:乙酸酯CoA转移酶从丁酰辅酶A和乙酸酯产生丁酸酯和乙酰辅酶A,是细菌中丁酸酯生产的最后一步。这项研究表明,在牙周致病菌牙龈卟啉单胞菌中,该反应不是由PGN_1171催化的,PGN_1171以前被称为丁酰CoA:乙酸酯CoA转移酶,而是由三种不同的CoA转移酶PGN_0725,PGN_1341和PGN_1888催化。气相色谱/质谱(GC-MS)和分光光度法分析是使用缺失突变株和纯化的重组蛋白的粗酶提取物进行的。实验表明,在乙酸盐的存在下,PGN_0725优先利用丁酰-CoA,而不是丙酰-CoA。相反,在PGN_1888中,此首选项被颠倒了。在PGN_1341中观察到唯一的丁酰CoA:乙酸酯CoA转移酶活性。双向倒数图显示,与先前表征的CoA转移酶相比,这些酶催化的所有反应均遵循三元复合机理。通过GC-MS分析确定牙龈卟啉单胞菌野生型和突变菌株培养上清液中短链脂肪酸(SCFA)的浓度,发现PGN_0725和PGN_1888分别在丁酸和丙酸的生产中起主要作用。有趣的是,缺少PGN_0725,PGN_1341和PGN_1888的三重缺失突变体产生低水平的SCFA,表明该微生物除这三种酶外还包含CoA转移酶。突变菌株的生长速率大多比野生型慢,这表明在SCFA合成中产生的许多碳化合物似乎对该微生物的生物学活性很重要。

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