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首页> 外文期刊>Journal of Cell Science >The trans-membrane protein p25 forms highly specialized domains that regulate membrane composition and dynamics.
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The trans-membrane protein p25 forms highly specialized domains that regulate membrane composition and dynamics.

机译:跨膜蛋白p25形成高度专业化的域,可调节膜的组成和动力学。

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Trans-membrane proteins of the p24 family are abundant, oligomeric proteins predominantly found in cis-Golgi membranes. They are not easily studied in vivo and their functions are controversial. We found that p25 can be targeted to the plasma membrane after inactivation of its canonical KKXX motif (KK to SS, p25SS), and that p25SS causes the co-transport of other p24 proteins beyond the Golgi complex, indicating that wild-type p25 plays a crucial role in retaining p24 proteins in cis-Golgi membranes. We then made use of these observations to study the intrinsic properties of these proteins, when present in a different membrane context. At the cell surface, the p25SS mutant segregates away from both the transferrin receptor and markers of lipid rafts, which are enriched in cholesterol and glycosphingolipids. This suggests that p25SS localizes to, or contributes to form, specialized membrane domains, presumably corresponding to oligomers of p25SS and other p24 proteins. Once at the cell surface, p25SS isendocytosed, together with other p24 proteins, and eventually accumulates in late endosomes, where it remains confined to well-defined membrane regions visible by electron microscopy. We find that this p25SS accumulation causes a concomitant accumulation of cholesterol in late endosomes, and an inhibition of their motility - two processes that are functionally linked. Yet, the p25SS-rich regions themselves seem to exclude not only Lamp1 but also accumulated cholesterol. One may envision that p25SS accumulation, by excluding cholesterol from oligomers, eventually overloads neighboring late endosomal membranes with cholesterol beyond their capacity (see Discussion). In any case, our data show that p25 and presumably other p24 proteins are endowed with the intrinsic capacity to form highly specialized domains that control membrane composition and dynamics. We propose that p25 and other p24 proteins control the fidelity of membrane transport by maintaining cholesterol-poor membranes in the Golgi complex.
机译:p24家族的跨膜蛋白是丰富的寡聚蛋白,主要存在于顺式高尔基体膜中。它们在体内不容易研究,其功能尚有争议。我们发现,p25的经典KKXX基序(KK到SS,p25SS)失活后可以将其靶向质膜,并且p25SS导致高尔基复合体以外的其他p24蛋白的共转运,表明野生型p25发挥了作用在保留顺式高尔基体膜中的p24蛋白中起着至关重要的作用。然后,我们利用这些观察结果研究了当存在于不同膜环境中时这些蛋白质的固有特性。在细胞表面,p25SS突变体与运铁蛋白受体和脂筏标记分离,脂筏富含胆固醇和糖鞘脂。这表明p25SS位于或有助于形成专门的膜结构域,大概对应于p25SS和其他p24蛋白的寡聚体。一旦到达细胞表面,p25SS就与其他p24蛋白一起被内吞,并最终积累在晚期的内体中,在那里它仍被限制在电子显微镜下可见的界限分明的膜区域。我们发现,这种p25SS的积累会导致晚期内体中胆固醇的同时积累,并抑制其运动性-这是两个功能相关的过程。但是,富含p25SS的区域本身似乎不仅排除了Lamp1,而且还排除了胆固醇积累。可以预见,p25SS的积累(通过将寡聚体中的胆固醇排除在外)最终会使邻近的内体晚期膜超载,使其胆固醇超负荷(请参见讨论)。无论如何,我们的数据表明p25和其他p24蛋白具有形成高度专业化域的固有能力,这些域可控制膜的组成和动力学。我们建议p25和其他p24蛋白通过维持高尔基体中胆固醇少的膜来控制膜运输的保真度。

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