首页> 外文期刊>Journal of bacteriology >An OmpA Family Protein, a Target of the GinI/GinR Quorum-Sensing System in Gluconacetobacter intermedius, Controls Acetic Acid Fermentation
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An OmpA Family Protein, a Target of the GinI/GinR Quorum-Sensing System in Gluconacetobacter intermedius, Controls Acetic Acid Fermentation

机译:OmpA家族蛋白,中介糖间糖杆菌中GinI / GinR群体感应系统的目标,控制乙酸发酵。

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Via N-acylhomoserine lactones, the GinI/GinR quorum-sensing system in Gluconacetobacter intermedius NCI1051, a gram-negative acetic acid bacterium, represses acetic acid and gluconic acid fermentation. Two-dimensional polyacrylamide gel electrophoretic analysis of protein profiles of strain NCI1051 and ginI and ginR mutants identified a protein that was produced in response to the GinI/GinR regulatory system. Cloning and nucleotide sequencing of the gene encoding this protein revealed that it encoded an OmpA family protein, named GmpA. gmpA was a member of the gene cluster containing three adjacent homologous genes, gmpA to gmpC, the organization of which appeared to be unique to vinegar producers, including “Gluconacetobacter polyoxogenes.” In addition, GmpA was unique among the OmpA family proteins in that its N-terminal membrane domain forming eight antiparallel transmembrane β-strands contained an extra sequence in one of the surface-exposed loops. Transcriptional analysis showed that only gmpA of the three adjacent gmp genes was activated by the GinI/GinR quorum-sensing system. However, gmpA was not controlled directly by GinR but was controlled by an 89-amino-acid protein, GinA, a target of this quorum-sensing system. A gmpA mutant grew more rapidly in the presence of 2% (vol/vol) ethanol and accumulated acetic acid and gluconic acid in greater final yields than strain NCI1051. Thus, GmpA plays a role in repressing oxidative fermentation, including acetic acid fermentation, which is unique to acetic acid bacteria and allows ATP synthesis via ethanol oxidation. Consistent with the involvement of gmpA in oxidative fermentation, its transcription was also enhanced by ethanol and acetic acid.
机译:通过 N -酰基高丝氨酸内酯,革兰氏阴性乙酸细菌 intermedius intermedius NCI1051中的GinI / GinR群体感应系统抑制了乙酸和葡萄糖酸的发酵。二维聚丙烯酰胺凝胶电泳分析了菌株NCI1051和 ginI ginR 突变体的蛋白质谱,鉴定出了响应GinI / GinR调节系统而产生的蛋白质。对该蛋白编码基因的克隆和核苷酸测序表明,它编码了一个名为GmpA的OmpA家族蛋白。 gmpA 是包含三个相邻同源基因, gmpA gmpC 的基因簇的成员,醋生产者的组织似乎是唯一的,包括“ 葡糖杆菌多氧合酶”。另外,GmpA在OmpA家族蛋白中是独特的,因为它的N末端膜结构域(形成八个反平行跨膜β链)在一个表面暴露的环中包含一个额外的序列。转录分析表明,三个相邻的 gmp 基因中只有 gmpA 被GinI / GinR群体感应系统激活。但是, gmpA 不是直接由GinR控制,而是由89个氨基酸的蛋白质GinA(此群体感应系统的目标)控制。 gmpA 突变体在2%(体积/体积)乙醇的存在下生长更快,并且比菌株NCI1051积累的乙酸和葡萄糖酸最终收率更高。因此,GmpA在抑制乙酸发酵等氧化发酵中起作用,乙酸发酵是乙酸细菌特有的,并允许通过乙醇氧化合成ATP。与 gmpA 参与氧化发酵一致,乙醇和乙酸也增强了其转录。

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