流出
信号转导衔接蛋白
膜转运蛋白
细菌外膜
多重耐药
转运蛋白
生物
内膜
融合蛋白
膜蛋白
细胞生物学
生物物理学
膜
化学
生物化学
大肠杆菌
信号转导
基因
重组DNA
抗生素
作者
Johannes F. Stegmeier,Georg Polleichtner,Nicolas Brandes,C. Hotz,Christian Andersen
出处
期刊:Biochemistry
[American Chemical Society]
日期:2006-08-01
卷期号:45 (34): 10303-10312
被引量:59
摘要
Drug efflux pumps of Gram-negative bacteria are tripartite export machineries located in the bacterial envelopes contributing to multidrug resistance. Protein structures of all three components have been determined, but the exact interaction sites are still unknown. We could confirm that the hybrid system composed of Pseudomonas aeruginosa channel tunnel OprM and the Escherichia coli inner membrane complex, formed by adaptor protein (membrane fusion protein) AcrA and transporter AcrB of the resistance nodulation cell division (RND) family, is not functional. However, cross-linking experiments show that the hybrid exporter assembles. Exchange of the hairpin domain of AcrA with the corresponding hairpin from adaptor protein MexA of P. aeruginosa restored the functionality. This shows the importance of the MexA hairpin domain for the functional interaction with the OprM channel tunnel. On the basis of these results, we have modeled the interaction of the hairpin domain and the channel tunnel on a molecular level for AcrA and TolC as well as MexA and OprM, respectively. The model of two hairpin docking sites per TolC protomer corresponding with hexameric adaptor proteins was confirmed by disulfide cross-linking experiments. The role of this interaction for functional efflux pumps is discussed.
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