Laub Katrine Rude, Marek Magdalena, Stanchev Lyubomir Dimitrov, Herrera Sara Abad, Kanashova Tamara, Bourmaud Adèle, Dittmar Gunnar, Günther Pomorski Thomas
Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg C, Denmark.
Department of Molecular Biochemistry, Ruhr University Bochum, Bochum, Germany.
PLoS One. 2017 Sep 18;12(9):e0184236. doi: 10.1371/journal.pone.0184236. eCollection 2017.
The ATP binding cassette (ABC) transporters Pdr11p and its paralog Aus1p are expressed under anaerobic growth conditions at the plasma membrane of the yeast Saccharomyces cerevisiae and are required for sterol uptake. However, the precise mechanism by which these ABC transporters facilitate sterol movement is unknown. In this study, an overexpression and purification procedure was developed with the aim to characterise the Pdr11p transporter. Engineering of Pdr11p variants fused at the C terminus with green fluorescent protein (Pdr11p-GFP) and containing a FLAG tag at the N terminus facilitated expression analysis and one-step purification, respectively. The detergent-solubilised and purified protein displayed a stable ATPase activity with a broad pH optimum near 7.4. Mutagenesis of the conserved lysine to methionine (K788M) in the Walker A motif abolished ATP hydrolysis. Remarkably, and in contrast to Aus1p, ATPase activity of Pdr11p was insensitive to orthovanadate and not specifically stimulated by phosphatidylserine upon reconstitution into liposomes. Our results highlight distinct differences between Pdr11p and Aus1p and create an experimental basis for further biochemical studies of both ABC transporters to elucidate their function.
ATP结合盒(ABC)转运蛋白Pdr11p及其旁系同源物Aus1p在酿酒酵母质膜的厌氧生长条件下表达,是固醇摄取所必需的。然而,这些ABC转运蛋白促进固醇移动的确切机制尚不清楚。在本研究中,开发了一种过表达和纯化程序,旨在表征Pdr11p转运蛋白。在C末端与绿色荧光蛋白融合(Pdr11p-GFP)并在N末端含有FLAG标签的Pdr11p变体工程分别促进了表达分析和一步纯化。去污剂增溶和纯化的蛋白显示出稳定的ATP酶活性,最适pH值在7.4附近,范围较宽。沃克A基序中保守的赖氨酸突变为甲硫氨酸(K788M)消除了ATP水解。值得注意的是,与Aus1p不同,Pdr11p的ATP酶活性对原钒酸盐不敏感,并且在重构到脂质体后不会被磷脂酰丝氨酸特异性刺激。我们的结果突出了Pdr11p和Aus1p之间的明显差异,并为进一步对这两种ABC转运蛋白进行生化研究以阐明其功能创造了实验基础。