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首页> 外文期刊>Journal of Cell Science >A dominant negative form of the AAA ATPase SKD1/VPS4 impairs membrane trafficking out of endosomal/lysosomal compartments: class E vps phenotype in mammalian cells
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A dominant negative form of the AAA ATPase SKD1/VPS4 impairs membrane trafficking out of endosomal/lysosomal compartments: class E vps phenotype in mammalian cells

机译:AAA ATPase SKD1 / VPS4的显性负型损害了膜转运出内体/溶酶体区室:哺乳动物细胞中的E类vps表型

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摘要

SKD1 is a member of the family of ATPases associated with cellular activities whose yeast homologue Vps4p has been implicated in endosomal/vacuolar membrane transports. When a mutant of SKD1 that lacks ATPase activity [SKD1(E235Q)] was overexpressed in mammalian cells, it induced a dominant negative phenotype characterized by aberrant endosomal structures (denoted as E235Q compartments). Expression of SKD1(E235Q) caused an accumulation of basolateral recycling receptors, such as asialoglycoprotein receptor and low-density lipoprotein in polarized hepatocytes and Madin-Darby canine kidney cells, respectively, in E235Q compartments. In addition, SKD1(E235Q) also abrogated, via endosomes, transport to the trans-Golgi network, as indicated by an accumulation of TGN38 in E235Q compartments. Three lines of evidence further demonstrated that SKD1 participates in the membrane transport from early endosomes to late endosomes/lysosomes: (1) a redistribution of a late endosomal and lysosomal membrane protein endolyn in E235Q compartments; (2) an inhibition of epidermal growth factor receptor degradation, due to an accumulation of the receptors in E235Q compartments; and (3) a mis-sorting of and defect in the proteolytic processing of newly synthesized cathepsin D. An intriguing finding was that the expression of SKD1(E235Q) caused the number of lysosomes to decrease (to one-sixth of control numbers) but their size to increase (2.4-fold larger in diameter than control lysosomes). Indeed, an ultrastructural analysis revealed that the expression of SKD1(E235Q) causes an accumulation of hybrid organelles formed by direct fusion between late endosomes and lysosomes. We conclude that SKD1 regulates multiple steps of membrane transport out of early endosomes and the reformation of lysosomes from a hybrid organelle. [References: 50]
机译:SKD1是与细胞活性有关的ATPase家族的成员,其酵母同源物Vps4p与内体/液泡膜运输有关。当缺乏ATPase活性的SKD1突变体[SKD1(E235Q)]在哺乳动物细胞中过表达时,它将诱导显性负表型,其特征在于异常的内体结构(称为E235Q间隔)。 SKD1(E235Q)的表达引起E235Q隔室中极化肝细胞和Madin-Darby犬肾细胞中基底外侧循环受体的积累,例如去唾液酸糖蛋白受体和低密度脂蛋白。此外,SKD1(E235Q)也通过内体被废除,转移到反式高尔基体网络,如E235Q隔室中TGN38的积累所表明的。三行证据进一步表明,SKD1参与了从早期内体到晚期内体/溶酶体的膜运输:(1)晚期内体和溶酶体膜蛋白内皮素在E235Q区域中的重新分布; (2)由于受体在E235Q区室中的积累而抑制表皮生长因子受体的降解; (3)新合成的组织蛋白酶D在蛋白水解过程中的分类错误和缺陷。一个有趣的发现是,SKD1(E235Q)的表达导致溶酶体的数量减少(至对照数量的六分之一),但它们的大小会增加(直径比对照溶酶体大2.4倍)。确实,超微结构分析表明,SKD1(E235Q)的表达引起了由晚期内体与溶酶体之间直接融合形成的杂化细胞器的积累。我们得出的结论是,SKD1调节了膜从早期内体运输出来的多个步骤,并从杂化细胞器中改造了溶酶体。 [参考:50]

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