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Lumenal interactions in nuclear pore complex assembly and stability

机译:核孔复合体组装中的腔相互作用和稳定性

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摘要

Nuclear pore complexes (NPCs) provide a gateway for the selective transport of macromolecules across the nuclear envelope (NE). Although we have a solid understanding of NPC composition and structure, we do not have a clear grasp of the mechanism of NPC assembly. Here, we demonstrate specific defects in nucleoporin distribution in strains lacking Heh1p and Heh2p-two conserved members of the LEM (Lap2, emerin, MAN1) family of integral inner nuclear membrane proteins. These effects on nucleoporin localization are likely of functional importance as we have defined specific genetic interaction networks between HEH1 and HEH2, and genes encoding nucleoporins in the membrane, inner, and outer ring complexes of the NPC. Interestingly, expression of a domain of Heh1p that resides in the NE lumen is sufficient to suppress both the nucleoporin mislocalization and growth defects in heh1Δpom34Δ strains. We further demonstrate a specific physical interaction between the Heh1p lumenal domain and the massive cadherin-like lumenal domain of the membrane nucleoporin Pom152p. These findings support a role for Heh1p in the assembly or stability of the NPC, potentially through the formation of a lumenal bridge with Pom152p.
机译:核孔复合物(NPC)为大分子跨核被膜(NE)的选择性运输提供了途径。尽管我们对NPC的组成和结构有扎实的了解,但我们对NPC组装的机理还没有清楚的了解。在这里,我们展示了缺少Heh1p和Heh2p的菌株中核孔蛋白分布的特定缺陷-LEM(Lap2,emerin,MAN1)家族内部核膜蛋白家族的两个保守成员。这些对核孔蛋白定位的影响可能具有功能重要性,因为我们已经定义了HEH1和HEH2之间的特定遗传相互作用网络,以及在NPC的膜,内和外环复合物中编码核孔蛋白的基因。有趣的是,位于NE管腔中的Heh1p结构域的表达足以抑制heh1Δpom34Δ菌株中的核孔蛋白错位和生长缺陷。我们进一步证明了Heh1p腔结构域与膜核孔蛋白Pom152p的大量钙粘蛋白样腔结构域之间的特定物理相互作用。这些发现可能通过与Pom152p形成管腔桥,支持Heh1p在NPC的组装或稳定性中的作用。

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