Seeger Markus A, Schiefner André, Eicher Thomas, Verrey François, Diederichs Kay, Pos Klaas M
Institute of Physiology and Zurich Centre for Integrative Human Physiology (ZIHP), University of Zurich, Winterthurerstrasse 190, Zürich, Switzerland.
Science. 2006 Sep 1;313(5791):1295-8. doi: 10.1126/science.1131542.
The AcrA/AcrB/TolC complex spans the inner and outer membranes of Escherichia coli and serves as its major drug-resistance pump. Driven by the proton motive force, it mediates the efflux of bile salts, detergents, organic solvents, and many structurally unrelated antibiotics. Here, we report a crystallographic structure of trimeric AcrB determined at 2.9 and 3.0 angstrom resolution in space groups that allow asymmetry of the monomers. This structure reveals three different monomer conformations representing consecutive states in a transport cycle. The structural data imply an alternating access mechanism and a novel peristaltic mode of drug transport by this type of transporter.
AcrA/AcrB/TolC复合物跨越大肠杆菌的内膜和外膜,是其主要的耐药泵。在质子动力的驱动下,它介导胆盐、去污剂、有机溶剂以及许多结构不相关抗生素的外排。在此,我们报道了在允许单体不对称的空间群中以2.9埃和3.0埃分辨率测定的三聚体AcrB的晶体结构。该结构揭示了三种不同的单体构象,代表转运循环中的连续状态。结构数据暗示了这种类型转运蛋白的交替访问机制和一种新型的蠕动式药物转运模式。