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A High-Yield Co-Expression System for the Purification of an Intact Drs2p-Cdc50p Lipid Flippase Complex Critically Dependent on and Stabilized by Phosphatidylinositol-4-Phosphate

机译:高纯度共表达系统用于纯化完整的Drs2p-Cdc50p脂质脂肪酶复合物该复合物主要依赖于磷脂酰肌醇-4-磷酸酯并由其稳定

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摘要

P-type ATPases from the P4 subfamily (P4-ATPases) are energy-dependent transporters, which are thought to establish lipid asymmetry in eukaryotic cell membranes. Together with their Cdc50 accessory subunits, P4-ATPases couple ATP hydrolysis to lipid transport from the exoplasmic to the cytoplasmic leaflet of plasma membranes, late Golgi membranes, and endosomes. To gain insights into the structure and function of these important membrane pumps, robust protocols for expression and purification are required. In this report, we present a procedure for high-yield co-expression of a yeast flippase, the Drs2p-Cdc50p complex. After recovery of yeast membranes expressing both proteins, efficient purification was achieved in a single step by affinity chromatography on streptavidin beads, yielding ∼1–2 mg purified Drs2p-Cdc50p complex per liter of culture. Importantly, the procedure enabled us to recover a fraction that mainly contained a 1∶1 complex, which was assessed by size-exclusion chromatography and mass spectrometry. The functional properties of the purified complex were examined, including the dependence of its catalytic cycle on specific lipids. The dephosphorylation rate was stimulated in the simultaneous presence of the transported substrate, phosphatidylserine (PS), and the regulatory lipid phosphatidylinositol-4-phosphate (PI4P), a phosphoinositide that plays critical roles in membrane trafficking events from the trans-Golgi network (TGN). Likewise, overall ATP hydrolysis by the complex was critically dependent on the simultaneous presence of PI4P and PS. We also identified a prominent role for PI4P in stabilization of the Drs2p-Cdc50p complex towards temperature- or C12E8-induced irreversible inactivation. These results indicate that the Drs2p-Cdc50p complex remains functional after affinity purification and that PI4P as a cofactor tightly controls its stability and catalytic activity. This work offers appealing perspectives for detailed structural and functional characterization of the Drs2p-Cdc50p lipid transport mechanism.
机译:来自P4亚家族的P型ATP酶(P4-ATPase)是能量依赖的转运蛋白,被认为在真核细胞膜中建立脂质不对称性。 P4-ATPase连同其Cdc50辅助亚基一起,将ATP水解与脂质从质膜,高尔基晚期膜和内体的胞外小叶转运到细胞质。为了深入了解这些重要的膜泵的结构和功能,需要可靠的表达和纯化方法。在这份报告中,我们提出了一种高效率的酵母翻转酶Drs2p-Cdc50p复合物共表达的程序。回收表达两种蛋白质的酵母膜后,可通过亲和层析在链霉亲和素珠上一步完成高效纯化,每升培养物产生约1-2 mg纯化的Drs2p-Cdc50p复合物。重要的是,该程序使我们能够回收主要包含1∶1配合物的馏分,并通过尺寸排阻色谱法和质谱法对其进行了评估。检查了纯化的复合物的功能特性,包括其催化循环对特定脂质的依赖性。在同时存在转运的底物,磷脂酰丝氨酸(PS)和调节脂质磷脂酰肌醇-4-磷酸酯(PI4P)的情况下,刺激了去磷酸化速率,该磷脂酰肌醇在反式高尔基网络(TGN)的膜运输事件中起着关键作用)。同样,复合物的总ATP水解关键取决于PI4P和PS的同时存在。我们还确定了PI4P在Drs2p-Cdc50p复合物对温度或C12E8诱导的不可逆失活的稳定中的重要作用。这些结果表明,Drs2p-Cdc50p复合物在亲和纯化后仍保持功能,而PI4P作为辅因子紧密控​​制其稳定性和催化活性。这项工作为Drs2p-Cdc50p脂质转运机制的详细结构和功能表征提供了有吸引力的观点。

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