van den Berg van Saparoea H Bart, Lubelski Jacek, van Merkerk Ronald, Mazurkiewicz Piotr S, Driessen Arnold J M
Department of Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Kerklaan 30, NL-9751 NN Haren, The Netherlands.
Biochemistry. 2005 Dec 27;44(51):16931-8. doi: 10.1021/bi051497y.
The fluorescent compound Hoechst 33342 is a substrate for many multidrug resistance (MDR) transporters and is widely used to characterize their transport activity. We have constructed mutants of the adenosine triphosphate (ATP) binding cassette (ABC)-type MDR transporter LmrA of Lactococcus lactis that are defective in ATP hydrolysis. These mutants and wild-type LmrA exhibited an atypical behavior in the Hoechst 33342 transport assay. In membrane vesicles, Hoechst 33342 transport was shown to be independent of the ATPase activity of LmrA, and it was not inhibited by orthovanadate but sensitive to uncouplers that collapse the proton gradient and to N,N'-dicyclohexylcarbodiimide, an inhibitor of the F0F1-ATPase. In contrast, transport of Hoechst 33342 by the homologous, heterodimeric MDR transporter LmrCD showed a normal ATP dependence and was insensitive to uncouplers of the proton gradient. With intact cells, expression of LmrA resulted in an increased rate of Hoechst 33342 influx while LmrCD caused a decrease in the rate of Hoechst 33342 influx. Cellular toxicity assays using a triple knockout strain, i.e., L. lactis delta lmrA delta lmrCD, demonstrate that expression of LmrCD protects cells against the growth inhibitory effects of Hoechst 33342, while in the presence of LmrA, cells are more susceptible to Hoechst 33342. Our data demonstrate that the LmrA-mediated Hoechst 33342 transport in membrane vesicles is influenced by the transmembrane pH gradient due to a pH-dependent partitioning of Hoechst 33342 into the membrane.
荧光化合物Hoechst 33342是许多多药耐药(MDR)转运蛋白的底物,被广泛用于表征它们的转运活性。我们构建了乳酸乳球菌的三磷酸腺苷(ATP)结合盒(ABC)型MDR转运蛋白LmrA的ATP水解缺陷型突变体。这些突变体和野生型LmrA在Hoechst 33342转运测定中表现出非典型行为。在膜囊泡中,Hoechst 33342的转运显示与LmrA的ATP酶活性无关,不受原钒酸盐抑制,但对使质子梯度崩溃的解偶联剂和F0F1 - ATP酶抑制剂N,N'-二环己基碳二亚胺敏感。相比之下,同源异二聚体MDR转运蛋白LmrCD对Hoechst 33342的转运表现出正常的ATP依赖性,并且对质子梯度解偶联剂不敏感。对于完整细胞,LmrA的表达导致Hoechst 33342流入速率增加,而LmrCD导致Hoechst 33342流入速率降低。使用三重敲除菌株(即乳酸乳球菌ΔlmrAΔlmrCD)进行的细胞毒性试验表明,LmrCD的表达可保护细胞免受Hoechst 33342的生长抑制作用,而在存在LmrA的情况下,细胞对Hoechst 33342更敏感。我们的数据表明,由于Hoechst 33342在膜中的pH依赖性分配,膜囊泡中LmrA介导的Hoechst 33342转运受跨膜pH梯度影响。