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首页> 外文期刊>The Journal of biological chemistry >Functional Characterization of the Atypical Integral Membrane Lipid Phosphatase PDP1/PPAPDC2 Identifies a Pathway for Interconversion of Isoprenols and Isoprenoid Phosphates in Mammalian Cells
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Functional Characterization of the Atypical Integral Membrane Lipid Phosphatase PDP1/PPAPDC2 Identifies a Pathway for Interconversion of Isoprenols and Isoprenoid Phosphates in Mammalian Cells

机译:非典型积分膜脂质磷酸酶PDP1 / PPPAPDC2的功能表征鉴定了哺乳动物细胞中异戊二醇和异戊二烯磷酸酯的互联的途径

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The polyisoprenoid diphosphates farnesyl diphosphate (FPP) and geranylgeranyl diphosphate (GGPP) are intermediates in the synthesis of cholesterol and related sterols by the mevalonate pathway and precursors for the addition of isoprenyl anchors to many membrane proteins. We developed tandem mass spectrometry assays to evaluate polyisoprenoid diphosphate phosphatase activity of an unusual integral membrane lipid enzyme: type 1 polyisoprenoid diphosphate phosphatase encoded by the PPAPDC2 gene (PDP1/PPAPDC2). In vitro, recombinant PDP1/PPAPDC2 preferentially hydrolyzed polyisoprenoid diphosphates, including FPP and GGPP over a variety of glycerol- and sphingo-phospholipid substrates. Overexpression of mammalian PDP1/PPAPDC2 in budding yeast depletes cellular pools of FPP leading to growth defects and sterol auxotrophy. In mammalian cells, PDP1/PPAPDC2 localizes to the endoplasmic reticulum and nuclear envelope and, unlike the structurally related lipid phosphate phosphatases, is predicted to be oriented with key residues of its catalytic domain facing the cytoplasmic face of the membrane. Studies using synthetic isoprenols with chemical properties that facilitate detection by mass spectrometry identify a pathway for interconversion of isoprenols and isoprenoid diphosphates in intact mammalian cells and demonstrate a role for PDP1/PPAPDC2 in this process. Overexpression of PDP1/PPAPDC2 in mammalian cells substantially decreases protein isoprenylation and results in defects in cell growth and cytoskeletal organization that are associated with dysregulation of Rho family GTPases. Taken together, these results focus attention on integral membrane lipid phosphatases as regulators of isoprenoid phosphate metabolism and suggest that PDP1/PPAPDC2 is a functional isoprenoid diphosphate phosphatase.
机译:聚异戊二烯二磷酸芳呢基二磷酸二磷酸(FPP)和天竺葵二磷酸二磷酸(GGPP)是通过甲戊类化途径合成胆固醇和相关甾醇的中间体,用于加入许多膜蛋白的异戊二烯基锚。我们开发了串联质谱测定以评估不寻常的整体膜脂酶的聚异戊二烯二磷酸磷酸酶活性:1型由PPAPDC2基因编码的1型聚异戊二烯二磷酸磷酸酶(PDP1 / PPAPDC2)。体外,重组PDP1 / PPAPDC2优先水解的聚异戊二烯二磷酸二磷酸,包括在各种甘油和鞘磷脂基材上的FPP和GGPP。哺乳动物PDP1 / PPAPDC2在萌芽酵母中的过度表达耗尽了FPP的细胞库,导致生长缺陷和甾醇滋巢营养。在哺乳动物细胞中,PDP1 / PPAPDC2定位于内质网和核包封,并且与结构相关的脂质磷酸磷酸磷酸酶不同,预计与其催化结构域的关键残留面对膜的细胞质面。使用合成异戊二醇具有化学性质的研究,该化学性质促进质谱法检测识别在完整的哺乳动物细胞中的异戊二醇和异戊二酚二磷酸的途径,并在该方法中表现出PDP1 / PPAPDC2的作用。哺乳动物细胞中PDP1 / pPAPDC2的过度表达显着降低了蛋白质异戊二烯化,导致细胞生长和细胞骨骼组织的缺陷,与Rho家族GTP酶的失调相关。总之,这些结果集中在整体膜脂质磷酸酶作为异戊二烯磷酸代谢的调节剂上的关注,并表明PDP1 / PPAPDC2是官能异戊二酚二磷酸磷酸酶。

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