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Asymmetric distribution of phosphatidylserine is generated in the absence of phospholipid flippases in Saccharomyces cerevisiae

机译:在酿酒酵母中不存在磷脂酶的情况下产生磷脂酰丝氨酸的不对称分布

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AbstractIn eukaryotic cells, phosphatidylserine (PS) is predominantly located in the cytosolic leaflet of the plasma membrane; this asymmetry is generated by an unknown mechanism. In this study, we used the PS-specific probe mRFP-Lact-C2 to investigate the possible involvement of type 4 P-type ATPases, also called phospholipid flippases, in the generation of this asymmetry in Saccharomyces cerevisiae. PS was not found in the trans-Golgi Network in wild-type cells, but it became exposed when vesicle formation was compromised in the sec7 mutant, and it was also exposed on secretory vesicles (SVs), as reported previously. However, flippase mutations did not reduce the exposure of PS in either case, even at low levels that would only be detectable by quantitative analysis of mRFP-Lact-C2 fluorescence in isolated SVs. Furthermore, no reduction in the PS level was observed in a mutant with multiple flippase mutations. Because PS was not exposed in a mutant that accumulates ER or cis/medial-Golgi membranes, Golgi maturation seems to be a prerequisite for PS translocation. Our results suggest that an unknown mechanism, possibly a protein with flippase-like activity, acts in conjunction with known flippases to regulate PS translocation.
机译:摘要在真核细胞中,磷脂酰丝氨酸(PS)主要位于质膜的胞浆小叶中。这种不对称是由未知机制产生的。在这项研究中,我们使用PS特异性探针mRFP-Lact-C2来研究4型P型ATP酶(也称为磷脂翻转酶)在酿酒酵母中这种不对称性的产生中的可能参与。在野生型细胞的反式高尔基体网络中未发现PS,但如先前报道,当sec7突变体中的囊泡形成受到损害时,PS就会暴露,PS也暴露于分泌性囊泡(SV)上。然而,在任何情况下,即使在较低的水平下,flippase突变都不会减少PS的暴露,只有通过定量分析分离的SV中的mRFP-Lact-C2荧光才能检测到。此外,在具有多个flippase突变的突变体中未观察到PS水平的降低。由于PS没有暴露于积累ER或顺式/中间高尔基体膜的突变体中,因此高尔基体成熟似乎是PS易位的前提。我们的研究结果表明,未知的机制,可能是一种具有脂蛋白酶样活性的蛋白质,与已知的脂蛋白酶共同调节PS的转运。

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