Eda Shima, Yoneyama Hiroshi, Nakae Taiji
Department of Molecular Life Science, Tokai University School of Medicine, 143 Shimokasuya, Isehara, 259-1193, Japan.
Biochemistry. 2003 Jun 17;42(23):7238-44. doi: 10.1021/bi0300074.
The MexA-MexB-OprM efflux pump exports structurally and functionally diverse xenobiotics and confers multi-drug resistance on Pseudomonas aeruginosa cells. The MexB transporter traverses the inner membrane twelve times, bears two large periplasmic domains and has two homologous tandem repeats. To test whether two homologous halves of MexB function independently or interdependently, the protein was divided medially into two halves, each consisting of six amino- and carboxyl-proximal transmembrane segments. When two halves of MexB were coexpressed from independent open reading frames, the cells lacking chromosomal mexB exhibited restored antibiotic resistance at a level close to that in the cells producing a full-length MexB. In contrast, MexB protein containing either an amino- or carboxyl-half fragment failed to transport antibiotics. To test whether the amino- and carboxyl-proximal halves were present in a complex, we purified the histidine-tagged carboxyl-proximal half molecule using nickel-chelate chromatography from the cells that coexpressed two halves. The results showed that the nonhistidine-tagged amino-proximal half was co-purified with the carboxyl-proximal half, thereby indicating that the amino-proximal half fragment was tightly associated with the carboxyl-proximal half molecule. These findings suggest that the presence of both amino- and carboxyl-halves of MexB in a complex is essential for transport activity.
MexA-MexB-OprM外排泵可输出结构和功能多样的外源性物质,并赋予铜绿假单胞菌细胞多重耐药性。MexB转运蛋白跨内膜12次,有两个大的周质结构域,并有两个同源串联重复序列。为了测试MexB的两个同源部分是独立发挥功能还是相互依赖发挥功能,将该蛋白从中间分成两半,每一半由六个氨基末端和羧基末端跨膜片段组成。当MexB的两半从独立的开放阅读框共表达时,缺乏染色体mexB的细胞表现出恢复的抗生素抗性,其水平接近产生全长MexB的细胞。相比之下,含有氨基末端或羧基末端半片段的MexB蛋白无法转运抗生素。为了测试氨基末端和羧基末端半部分是否存在于复合物中,我们使用镍螯合色谱法从共表达两半的细胞中纯化了带有组氨酸标签的羧基末端半分子。结果表明,未带组氨酸标签的氨基末端半部分与羧基末端半部分一起被共纯化,从而表明氨基末端半片段与羧基末端半分子紧密相关。这些发现表明,复合物中同时存在MexB的氨基末端和羧基末端半部分对于转运活性至关重要。