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A new experimental approach to detect long‐range conformational changes transmitted between the membrane and cytosolic domains of LmrA, a bacterial multidrug transporter
[摘要]

LmrA confers multidrug resistance to Lactococcus lactis by mediating the extrusion of antibiotics, out of the bacterial membrane, using the energy derived from ATP hydrolysis. Cooperation between the cytosolic and membrane-embedded domains plays a crucial role in regulating the transport ATPase cycle of this protein. In order to demonstrate the existence of a structural coupling required for the cross-talk between drug transport and ATP hydrolysis, we studied specifically the dynamic changes occurring in the membrane-embedded and cytosolic domains of LmrA by combining infrared linear dichroic spectrum measurements in the course of H/D exchange with Trp fluorescence quenching by a water-soluble attenuator. This new experimental approach, which is of general interest in the study of membrane proteins, detects long-range conformational changes, transmitted between the membrane-embedded and cytosolic regions of LmrA. On the one hand, nucleotide binding and hydrolysis in the cytosolic nucleotide binding domain cause a repacking of the transmembrane helices. On the other hand, drug binding to the transmembrane helices affects both the structure of the cytosolic regions and the ATPase activity of the nucleotide binding domain.

[发布日期]  [发布机构] 
[效力级别]  [学科分类] 生物化学/生物物理
[关键词] Multidrug resistance;LmrA;Infrared spectroscopy;Tryptophan fluorescence;Membrane domain;Conformational change;ABC;ATP binding cassette;ATPγS;adenosine-5′-O-(thiotriphosphate);ATR-FTIR;attenuated total reflection Fourier transform infrared;DDM;dodecyl-β-D-maltoside;DNR;daunorubicin;MDR;multidrug resistance;MRP;multidrug resistance protein;NBD;nucleotide binding domain;Ni-NTA;Ni2+-nitrilotriacetic acid;Pi;inorganic phosphate;Pgp;P-glycoprotein [时效性] 
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