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活酵母细胞的质膜和液泡膜中磷脂酰肌醇 4-磷酸的纳米级结构域形成。

Nanoscale domain formation of phosphatidylinositol 4-phosphate in the plasma and vacuolar membranes of living yeast cells.

机构信息

Department of Molecular and Cell Biology and Biochemistry, Basic Veterinary Science, Faculty of Veterinary Medicine, Kagoshima University, Korimoto 1-21-24, Kagoshima, 890-0065, Japan.

Education and Research Center for Fermentation Studies, Faculty of Agriculture, Kagoshima University, Korimoto 1-21-24, Kagoshima, 890-0065, Japan.

出版信息

Eur J Cell Biol. 2018 May;97(4):269-278. doi: 10.1016/j.ejcb.2018.03.007. Epub 2018 Mar 27.

Abstract

In budding yeast Saccharomyces cerevisiae, PtdIns(4)P serves as an essential signalling molecule in the Golgi complex, endosomal system, and plasma membrane, where it is involved in the control of multiple cellular functions via direct interactions with PtdIns(4)P-binding proteins. To analyse the distribution of PtdIns(4)P in yeast cells at a nanoscale level, we employed an electron microscopy technique that specifically labels PtdIns(4)P on the freeze-fracture replica of the yeast membrane. This method minimizes the possibility of artificial perturbation, because molecules in the membrane are physically immobilised in situ. We observed that PtdIns(4)P is localised on the cytoplasmic leaflet, but not the exoplasmic leaflet, of the plasma membrane, Golgi body, vacuole, and vesicular structure membranes. PtdIns(4)P labelling was not observed in the membrane of the endoplasmic reticulum, and in the outer and inner membranes of the nuclear envelope or mitochondria. PtdIns(4)P forms clusters of <100 nm in diameter in the plasma membrane and vacuolar membrane according to point pattern analysis of immunogold labelling. There are three kinds of compartments in the cytoplasmic leaflet of the plasma membrane. In the present study, we showed that PtdIns(4)P is specifically localised in the flat undifferentiated plasma membrane compartment. In the vacuolar membrane, PtdIns(4)P was concentrated in intramembrane particle (IMP)-deficient raft-like domains, which are tightly bound to lipid droplets, but not surrounding IMP-rich non-raft domains in geometrical IMP-distributed patterns in the stationary phase. This is the first report showing microdomain formations of PtdIns(4)P in the plasma membrane and vacuolar membrane of budding yeast cells at a nanoscale level, which will illuminate the functionality of PtdIns(4)P in each membrane.

摘要

在出芽酵母酿酒酵母中,PtdIns(4)P 作为一种必需的信号分子,存在于高尔基体复合物、内体系统和质膜中,通过与 PtdIns(4)P 结合蛋白的直接相互作用,参与控制多种细胞功能。为了在纳米尺度上分析 PtdIns(4)P 在酵母细胞中的分布,我们采用了一种电子显微镜技术,该技术专门标记了酵母膜冷冻断裂复制品上的 PtdIns(4)P。这种方法最大限度地减少了人为干扰的可能性,因为膜中的分子在原位被物理固定。我们观察到 PtdIns(4)P 定位于质膜的细胞质小叶,但不在质膜的外小叶、高尔基体、液泡和囊泡结构膜上。在内质网膜上、核膜的外膜和内膜以及线粒体上没有观察到 PtdIns(4)P 的标记。根据免疫金标记的点模式分析,PtdIns(4)P 在质膜和液泡膜中形成直径<100nm 的簇。质膜细胞质小叶中有三种隔室。在本研究中,我们表明 PtdIns(4)P 特异性定位于扁平未分化的质膜隔室。在液泡膜中,PtdIns(4)P 集中在膜内颗粒(IMP)缺陷筏状结构域中,这些结构域与脂质滴紧密结合,但不与周围富含 IMP 的非筏状结构域结合,形成几何上呈 IMP 分布的图案,这在静止期更为明显。这是首次在纳米尺度上报道出芽酵母细胞质膜和液泡膜中 PtdIns(4)P 的微区形成,这将阐明 PtdIns(4)P 在每种膜中的功能。

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