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Structural and functional analysis of the interaction between the nucleoporin Nup214 and the DEAD-box helicase Ddx19

机译:核孔蛋白Nup214与DEAD-box解旋酶Ddx19之间相互作用的结构和功能分析

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摘要

Key steps in the export of mRNA from the nucleus to the cytoplasm are the transport through the nuclear pore complex (NPC) and the subsequent remodeling of messenger RNA-protein (mRNP) complexes that occurs at the cytoplasmic side of the NPC. Crucial for these events is the recruitment of the DEAD-box helicase Ddx19 to the cytoplasmic filaments of the NPC that is mediated by the nucleoporin Nup214. Here, we present the crystal structure of the Nup214 N-terminal domain in complex with Ddx19 in its ADP-bound state at 2.5 Å resolution. Strikingly, the interaction surfaces are not only evolutionarily conserved but also exhibit strongly opposing surface potentials, with the helicase surface being positively and the Nup214 surface being negatively charged. We speculate that the positively charged surface of the interacting ADP-helicase binds competitively to a segment of mRNA of a linearized mRNP, passing through the NPC on its way to the cytoplasm. As a result, the ADP-helicase would dissociate from Nup214 and replace a single bound protein from the mRNA. One cycle of protein replacement would be accompanied, cooperatively, by nucleotide exchange, ATP hydrolysis, release of the ADP-helicase from mRNA and its rebinding to Nup214. Repeat of these cycles would remove proteins from a mRNP, one at a time, akin to a ratchet mechanism for mRNA export.
机译:mRNA从细胞核输出到细胞质的关键步骤是通过核孔复合物(NPC)的转运以及随后在NPC胞质侧发生的信使RNA-蛋白质(mRNP)复合物的重塑。这些事件的关键是将DEAD-box解旋酶Ddx19募集到由核孔蛋白Nup214介导的NPC的细胞质细丝上。在这里,我们介绍了与Ddx19处于NDP214 N末端结构域的晶体结构,其DDPx处于ADP结合状态,分辨率为2.5。令人惊讶的是,相互作用表面不仅在进化上是保守的,而且还表现出强烈相反的表面电势,解旋酶表面带正电,Nup214表面带负电。我们推测相互作用的ADP-解旋酶的带正电的表面竞争性地结合到线性化的mRNP的mRNA的一段,通过NPC到达细胞质。结果,ADP-解旋酶将与Nup214分离并从mRNA中替换单个结合的蛋白。蛋白质置换的一个循环将与核苷酸交换,ATP水解,ADP解旋酶从mRNA释放以及其与Nup214的结合协同进行。重复这些循环将一次从一个mRNP中去除蛋白质,类似于mRNA输出的棘轮机制。

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