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Integrating complex functions: Coordination of nuclear pore complex assembly and membrane expansion of the nuclear envelope requires a family of integral membrane proteins

机译:整合复杂功能:协调核孔复合物装配和核膜的膜扩张需要一个完整的膜蛋白家族

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摘要

The nuclear envelope harbors numerous large proteinaceous channels, the nuclear pore complexes (NPCs), through which macromolecular exchange between the cytosol and the nucleoplasm occurs. This double-membrane nuclear envelope is continuous with the endoplasmic reticulum and thus functionally connected to such diverse processes as vesicular transport, protein maturation and lipid synthesis. Recent results obtained from studies in Saccharomyces cerevisiae indicate that assembly of the nuclear pore complex is functionally dependent upon maintenance of lipid homeostasis of the ER membrane. Previous work from one of our laboratories has revealed that an integral membrane protein Apq12 is important for the assembly of functional nuclear pores. Cells lacking APQ12 are viable but cannot grow at low temperatures, have aberrant NPCs and a defect in mRNA export. Remarkably, these defects in NPC assembly can be overcome by supplementing cells with a membrane fluidizing agent, benzyl alcohol, suggesting that Apq12 impacts the flexibility of the nuclear membrane, possibly by adjusting its lipid composition when cells are shifted to a reduced temperature. Our new study now expands these findings and reveals that an essential membrane protein, Brr6, shares at least partially overlapping functions with Apq12 and is also required for assembly of functional NPCs. A third nuclear envelope membrane protein, Brl1, is related to Brr6, and is also required for NPC assembly. Because maintenance of membrane homeostasis is essential for cellular survival, the fact that these three proteins are conserved in fungi that undergo closed mitoses, but are not found in metazoans or plants, may indicate that their functions are performed by proteins unrelated at the primary sequence level to Brr6, Brl1 and Apq12 in cells that disassemble their nuclear envelopes during mitosis.
机译:核被膜包含大量的大蛋白通道,即核孔复合物(NPC),通过这些通道,细胞质与核质之间发生大分子交换。这种双膜核包膜与内质网是连续的,因此在功能上与诸如囊泡运输,蛋白质成熟和脂质合成等多种过程相关。从酿酒酵母的研究中获得的最新结果表明,核孔复合体的组装在功能上依赖于ER膜脂质稳态的维持。我们实验室之一的先前工作表明,完整的膜蛋白Apq12对于功能性核孔的组装很重要。缺少APQ12的细胞是有活力的,但不能在低温下生长,它们的NPC异常并且mRNA的输出有缺陷。值得注意的是,NPC组装中的这些缺陷可以通过向细胞添加膜流化剂苯甲醇来克服,这表明Apq12会影响核膜的柔韧性,可能是在细胞转移至降低温度后通过调节其脂质成分来实现的。现在,我们的新研究扩展了这些发现,并揭示了必需的膜蛋白Brr6与Apq12至少具有部分重叠的功能,并且是功能性NPC组装所必需的。第三种核被膜蛋白Brl1与Brr6有关,也是NPC组装所必需的。由于维持膜稳态对细胞存活至关重要,因此这三种蛋白质在经过封闭有丝分裂的真菌中是保守的,但在后生动物或植物中却没有发现,这可能表明它们的功能由一级序列无关的蛋白质完成在有丝分裂期间分解其核被膜的细胞中的Brr6,Brl1和Apq12。

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