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The Prohormone Processing Enzyme PC3 Is a Lipid Raft-Associated Transmembrane Protein

机译:原激素处理酶PC3是一种脂筏相关的跨膜蛋白。

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The biosynthesis of most biologically active peptides involves the action of prohomone convertases, including PC3 (also known as PC1), that catalyze limited proteolysis of precursor proteins. Proteolysis of prohormones occurs mainly in the granules of the regulated secretory pathway. It has been proposed that the targeting of these processing enzymes to secretory granules involves their association with lipid rafts in granule membranes. We now provide evidence for the interaction of the 86 and 64 kDa forms of PC3 with secretory granule membranes. Furthermore, both forms of PC3 were resistant to extraction with TX-100, were floated to low-density fractions in sucrose gradients, and were partially extracted upon cholesterol depletion by methyl-beta-cyclodextrin, indicating that they were associated with lipid rafts in the membranes. Protease protection assays, immunolabeling, and biotinylation of proteins in intact secretory granules identified an approx 115-residue cytoplasmic tail for 86 kDa PC3. Using two-dimensional gel electrophoresis and a specific antibody, a novel, raft-associated form of 64 kDa PC3 that contains a transmembrane domain consisting of residues 619-638 was identified. This form was designated as 64 kDa PC3-TM, and differs from the 64 kDa mature form of PC3. We present a model of the membrane topology of PC3, where it is anchored to lipid rafts in secretory granule membranes via the transmembrane domain. We demonstrate that the transmembrane domain of PC3 alone was sufficient to target the extracellular domain of the IL2 receptor alpha-subunit (Tac) to secretory granules.
机译:大多数具有生物活性的肽的生物合成都涉及原激素转化酶(包括PC3(也称为PC1))的作用,该酶催化前体蛋白的有限蛋白水解。激素的蛋白水解主要发生在调节分泌途径的颗粒中。已经提出,将这些加工酶靶向分泌颗粒涉及它们与颗粒膜中脂质筏的结合。现在,我们提供了PC3的86和64 kDa形式与分泌性颗粒膜相互作用的证据。此外,两种形式的PC3均耐TX-100提取,漂浮于蔗糖梯度中的低密度级分,并在胆固醇被甲基-β-环糊精耗尽后部分提取,表明它们与脂质筏有关。膜。完整的分泌颗粒中的蛋白酶保护分析,免疫标记和蛋白质的生物素化确定了86 kDa PC3的约115个残基的细胞质尾巴。使用二维凝胶电泳和特异性抗体,鉴定了一种新颖的筏相关形式的64 kDa PC3,其包含由残基619-638组成的跨膜结构域。该形式被命名为64 kDa PC3-TM,与PC3的64 kDa成熟形式不同。我们提出了PC3的膜拓扑结构的模型,其中它通过跨膜域锚定到分泌颗粒膜中的脂质筏。我们证明,单独的PC3跨膜结构域足以将IL2受体α-亚基(Tac)的细胞外结构域靶向分泌颗粒。

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