Institute of Biochemistry, Heinrich-Heine-Universität Düsseldorf, Universitätsstraße 1, 40225, Düsseldorf, Germany.
Sci Rep. 2019 May 23;9(1):7761. doi: 10.1038/s41598-019-44327-8.
The ABC transporter Pdr5 of S. cerevisiae is a key player of the PDR network that works as a first line of defense against a wide range of xenobiotic compounds. As the first discovered member of the family of asymmetric PDR ABC transporters, extensive studies have been carried out to elucidate the molecular mechanism of drug efflux and the details of the catalytic cycle. Pdr5 turned out to be an excellent model system to study functional and structural characteristics of asymmetric, uncoupled ABC transporters. However, to date studies have been limited to in vivo or plasma membrane systems, as it was not possible to isolate Pdr5 in a functional state. Here, we describe the solubilization and purification of Pdr5 to homogeneity in a functional state as confirmed by in vitro assays. The ATPase deficient Pdr5 E1036Q mutant was used as a control and proves that detergent-purified wild-type Pdr5 is functional resembling in its activity the one in its physiological environment. Finally, we show that the isolated active Pdr5 is monomeric in solution. Taken together, our results described in this study will enable a variety of functional investigations on Pdr5 required to determine molecular mechanism of this asymmetric ABC transporter.
酿酒酵母 ABC 转运蛋白 Pdr5 是 PDR 网络的关键成员,是抵御各种外源性化合物的第一道防线。作为第一个被发现的不对称 PDR ABC 转运蛋白家族成员,已经进行了广泛的研究,以阐明药物外排的分子机制和催化循环的细节。Pdr5 被证明是研究不对称、非偶联 ABC 转运蛋白功能和结构特征的优秀模型系统。然而,迄今为止的研究仅限于体内或质膜系统,因为不可能以功能状态分离 Pdr5。在这里,我们描述了 Pdr5 在功能状态下的可溶性和纯化为均相,这通过体外测定得到了证实。使用 ATP 酶缺陷的 Pdr5 E1036Q 突变体作为对照,并证明去污剂纯化的野生型 Pdr5 是功能相似的,其活性类似于其生理环境中的活性。最后,我们表明分离的活性 Pdr5 在溶液中是单体的。总之,我们在这项研究中描述的结果将能够对 Pdr5 进行各种功能研究,以确定这种不对称 ABC 转运蛋白的分子机制。