Nakano Shigeru, Fukaya Masahiro, Horinouchi Sueharu
Central Research Institute, Mizkan Group Co., Ltd., Handa-shi, Aichi 475-8585, Japan.
Appl Environ Microbiol. 2006 Jan;72(1):497-505. doi: 10.1128/AEM.72.1.497-505.2006.
Two-dimensional gel electrophoretic analysis of the membrane fraction of Acetobacter aceti revealed the presence of several proteins that were produced in response to acetic acid. A 60-kDa protein, named AatA, which was mostly induced by acetic acid, was prepared; aatA was cloned on the basis of its NH2-terminal amino acid sequence. AatA, consisting of 591 amino acids and containing ATP-binding cassette (ABC) sequences and ABC signature sequences, belonged to the ABC transporter superfamily. The aatA mutation with an insertion of the neomycin resistance gene within the aatA coding region showed reduced resistance to acetic acid, formic acid, propionic acid, and lactic acid, whereas the aatA mutation exerted no effects on resistance to various drugs, growth at low pH (adjusted with HCl), assimilation of acetic acid, or resistance to citric acid. Introduction of plasmid pABC101 containing aatA under the control of the Escherichia coli lac promoter into the aatA mutant restored the defect in acetic acid resistance. In addition, pABC101 conferred acetic acid resistance on E. coli. These findings showed that AatA was a putative ABC transporter conferring acetic acid resistance on the host cell. Southern blot analysis and subsequent nucleotide sequencing predicted the presence of aatA orthologues in a variety of acetic acid bacteria belonging to the genera Acetobacter and Gluconacetobacter. The fermentation with A. aceti containing aatA on a multicopy plasmid resulted in an increase in the final yield of acetic acid.
醋化醋杆菌膜组分的二维凝胶电泳分析显示,存在几种因乙酸而产生的蛋白质。制备了一种主要由乙酸诱导产生的60 kDa蛋白质,命名为AatA;根据其NH2末端氨基酸序列克隆了aatA。AatA由591个氨基酸组成,含有ATP结合盒(ABC)序列和ABC特征序列,属于ABC转运蛋白超家族。在aatA编码区内插入新霉素抗性基因的aatA突变体对乙酸、甲酸、丙酸和乳酸的抗性降低,而aatA突变对各种药物的抗性、在低pH值(用HCl调节)下的生长、乙酸的同化或对柠檬酸的抗性没有影响。将含有在大肠杆菌lac启动子控制下的aatA的质粒pABC101导入aatA突变体,恢复了乙酸抗性缺陷。此外,pABC101赋予大肠杆菌乙酸抗性。这些发现表明,AatA是一种假定的ABC转运蛋白,赋予宿主细胞乙酸抗性。Southern印迹分析及随后的核苷酸测序预测,在属于醋化醋杆菌属和葡糖醋杆菌属的多种醋酸菌中存在aatA同源物。用携带多拷贝质粒的含aatA的醋化醋杆菌进行发酵,导致乙酸最终产量增加。