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Reconstitution of phospholipid translocase activity with purified Drs2p, a type-IV P-type ATPase from budding yeast

机译:用纯化的Drs2p(一种来自萌芽酵母的IV型P型ATPase)重建磷脂转运酶活性

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摘要

Type-IV P-type ATPases (P4-ATPases) are putative phospholipid translocases, or flippases, that translocate specific phospholipid substrates from the exofacial to the cytosolic leaflet of membranes to generate phospholipid asymmetry. In addition, the activity of Drs2p, a P4-ATPase from Saccharomyces cerevisiae, is required for vesicle-mediated protein transport from the Golgi and endosomes, suggesting a role for phospholipid translocation in vesicle budding. Drs2p is necessary for translocation of a fluorescent phosphatidylserine analogue across purified Golgi membranes. However, a flippase activity has not been reconstituted with purified Drs2p or any other P4-ATPase, so whether these ATPases directly pump phospholipid across the membrane bilayer is unknown. Here, we show that Drs2p can catalyze phospholipid translocation directly through purification and reconstitution of this P4-ATPase into proteoliposomes. The noncatalytic subunit, Cdc50p, also was reconstituted in the proteoliposome, although at a substoichiometric concentration relative to Drs2p. In proteoliposomes containing Drs2p, a phosphatidylserine analogue was actively flipped across the liposome bilayer to the outer leaflet in the presence of Mg2+-ATP, whereas no activity toward the phosphatidylcholine or sphingomyelin analogues was observed. This flippase activity was mediated by Drs2p, because protein-free liposomes or proteoliposomes reconstituted with a catalytically inactive form of Drs2p showed no translocation activity. These data demonstrate for the first time the reconstitution of a flippase activity with a purified P4-ATPase.
机译:IV型P型ATP酶(P4-ATPase)是推定的磷脂转位酶或flippases,它们将特定的磷脂底物从膜的表面到细胞质小叶移位,从而产生磷脂不对称性。此外,Drs2p(一种来自酿酒酵母的P4-ATPase)的活性对于高尔基体和内体的囊泡介导的蛋白转运是必需的,这提示磷脂在囊泡出芽中易位。 Drs2p对于在纯化的高尔基体膜上转运荧光磷脂酰丝氨酸类似物是必需的。但是,尚未用纯化的Drs2p或任何其他P4-ATPase来重建一种flippase活性,因此尚不清楚这些ATPase是否直接将磷脂泵入跨膜双层。在这里,我们表明Drs2p可以直接通过纯化和将此P4-ATPase重组为蛋白脂质体来催化磷脂易位。尽管相对于Drs2p处于亚化学计量浓度,但非催化亚基Cdc50p也可以在脂质体中重建。在含有Drs2p的蛋白脂质体中,在Mg2 + -ATP的存在下,磷脂酰丝氨酸类似物被活跃地穿过脂质体双层翻转至小叶,而未观察到对磷脂酰胆碱或鞘磷脂类似物的活性。这种flippase活性是由Drs2p介导的,因为用无催化活性的Drs2p重构的无蛋白脂质体或蛋白脂质体没有转运活性。这些数据首次证明了使用纯化的P4-ATPase可以重构脂肪酶活性。

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