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System analysis shows distinct mechanisms and common principles of nuclear envelope protein dynamics

机译:系统分析显示了核包膜蛋白动力学的不同机理和共同原理

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摘要

The nuclear envelope contains >100 transmembrane proteins that continuously exchange with the endoplasmic reticulum and move within the nuclear membranes. To better understand the organization and dynamics of this system, we compared the trafficking of 15 integral nuclear envelope proteins using FRAP. A surprising 30-fold range of mobilities was observed. The dynamic behavior of several of these proteins was also analyzed after depletion of ATP and/or Ran, two functions implicated in endoplasmic reticulum–inner nuclear membrane translocation. This revealed that ATP- and Ran-dependent translocation mechanisms are distinct and not used by all inner nuclear membrane proteins. The Ran-dependent mechanism requires the phenylalanine-glycine (FG)-nucleoporin Nup35, which is consistent with use of the nuclear pore complex peripheral channels. Intriguingly, the addition of FGs to membrane proteins reduces FRAP recovery times, and this also depends on Nup35. Modeling of three proteins that were unaffected by either ATP or Ran depletion indicates that the wide range in mobilities could be explained by differences in binding affinities in the inner nuclear membrane.
机译:核膜包含> 100个跨膜蛋白,这些蛋白与内质网连续交换并在核膜内移动。为了更好地了解该系统的组织和动力学,我们使用FRAP比较了15种完整核包膜蛋白的运输。观察到令人惊讶的30倍范围的活动性。在ATP和/或Ran耗尽后,还分析了其中几种蛋白质的动态行为,这是内质网-内核膜易位的两个功能。这表明ATP和Ran依赖的转运机制是独特的,并非所有内核膜蛋白都使用。 Ran依赖的机制需要苯丙氨酸-甘氨酸(FG)-核孔蛋白Nup35,这与使用核孔复合物外围通道一致。有趣的是,在膜蛋白上添加FG可减少FRAP的恢复时间,这也取决于Nup35。不受ATP或Ran耗尽影响的三种蛋白质的模型表明,迁移率的广泛范围可以用内核膜结合亲和力的差异来解释。

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