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首页> 外文期刊>Journal of Cell Science >Mannosylinositol phosphorylceramide is a major sphingolipid component and is required for proper localization of plasma-membrane proteins in Schizosaccharomyces pombe.
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Mannosylinositol phosphorylceramide is a major sphingolipid component and is required for proper localization of plasma-membrane proteins in Schizosaccharomyces pombe.

机译:甘露糖基肌醇磷酸神经酰胺是主要的鞘脂成分,是粟酒裂殖酵母中血浆膜蛋白正确定位所必需的。

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In Saccharomyces cerevisiae, three classes of sphingolipids contain myo-inositol--inositol phosphorylceramide (IPC), mannosylinositol phosphorylceramide (MIPC) and mannosyldiinositol phosphorylceramide [M(IP)(2)C]. No fission yeast equivalent of Ipt1p, the inositolphosphotransferase that synthesizes M(IP)(2)C from MIPC, has been found in the Schizosaccharomyces pombe genome. Analysis of the sphingolipid composition of wild-type cells confirmed that MIPC is the terminal and most abundant complex sphingolipid in S. pombe. Three proteins (Sur1p, Csg2p and Csh1p) have been shown to be involved in the synthesis of MIPC from IPC in S. cerevisiae. The S. pombe genome has three genes (SPAC2F3.01, SPCC4F11.04c and SPAC17G8.11c) that are homologues of SUR1, termed imt1(+), imt2(+) and imt3(+), respectively. To determine whether these genes function in MIPC synthesis in S. pombe, single and multiple gene disruptants were constructed. Single imt disruptants were found to be viable. MIPC was not detected and IPC levels were increased in the triple disruptant, indicating that the three SUR1 homologues are involved in the synthesis of MIPC. GFP-tagged Imt1p, Imt2p and Imt3p localized to Golgi apparatus membranes. The MIPC-deficient mutant exhibited pleiotropic phenotypes, including defects in cellular and vacuolar morphology, and in localization of ergosterols. MIPC seemed to be required for endocytosis of a plasma-membrane-localized amino acid transporter, because sorting of the transporter from the plasma membrane to the vacuole was severely impaired in the MIPC-deficient mutant grown under nitrogen-limiting conditions. These results suggest that MIPC has multiple functions not only in the maintenance of cell and vacuole morphology but also in vesicular trafficking in fission yeast.
机译:在酿酒酵母中,三类鞘脂包含肌醇-肌醇磷酸神经酰胺(IPC),甘露糖基肌醇磷酸神经酰胺(MIPC)和甘露糖基二肌醇磷酸神经酰胺[M(IP)(2)C]。在裂殖酵母的基因组中没有发现裂变酵母等同于Ipt1p的裂变酵母,Ipt1p是从MIPC合成M(IP)(2)C的肌醇磷酸转移酶。对野生型细胞鞘脂成分的分析证实,MIPC是粟酒裂殖酵母的末端和最丰富的复杂鞘脂。已显示三种蛋白质(Sur1p,Csg2p和Csh1p)参与了酿酒酵母中IPC的MIPC合成。粟酒裂殖酵母基因组具有三个基因(SPAC2F3.01,SPCC4F11.04c和SPAC17G8.11c),它们是SUR1的同源物,分别称为imt1(+),imt2(+)和imt3(+)。为了确定这些基因是否在粟酒裂殖酵母的MIPC合成中起作用,构建了单个和多个基因破坏基因。发现单个imt破坏剂是可行的。在三重破坏者中未检测到MIPC且IPC水平升高,表明这三个SUR1同源物参与了MIPC的合成。 GFP标记的Imt1p,Imt2p和Imt3p定位于高尔基体膜。 MIPC缺陷突变体表现出多效性表型,包括细胞和液泡形态以及麦角固醇的定位缺陷。 MIPC似乎是血浆膜定位氨基酸转运蛋白的内吞作用所必需的,因为在氮限制条件下生长的MIPC缺陷型突变体中,从质膜到液泡的转运蛋白的分选受到严重损害。这些结果表明,MIPC不仅在维持细胞和液泡形态方面而且在裂殖酵母中的囊泡运输中具有多种功能。

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