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Insights into mRNA export-linked molecular mechanisms of human disease through a Gle1 structure-function analysis

机译:通过Gle1结构-功能分析洞察人类疾病的mRNA出口相关分子机制

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A critical step during gene expression is the directional export of nuclear messenger (m)RNA through nuclear pore complexes (NPCs) to the cytoplasm. During export, Gle1 in conjunction with inositol hexakisphosphate (IP6) spatially regulates the activity of the DEAD-box protein Dbp5 at the NPC cytoplasmic face. GLE1 mutations are causally linked to the human diseases lethal congenital contracture syndrome 1 (LCCS-1) and lethal arthrogryposis with anterior horn cell disease (LAAHD). Here, structure prediction and functional analysis provide strong evidence to suggest that the LCCS-1 and LAAHD disease mutations disrupt the function of Gle1 in mRNA export. Strikingly, direct fluorescence microscopy in living cells reveals a dramatic loss of steady-state NPC localization for GFP-gle1 proteins expressed from human gle1 genes harboring LAAHD and LCCS-1 mutations. The potential significance of these residues is further clarified by analyses of sequence and predicted structural conservation. This work offers insights into the perturbed mechanisms underlying human LCCS-1 and LAAHD disease states and emphasizes the potential impact of altered mRNA transport and gene expression in human disease.
机译:基因表达过程中的关键步骤是将核信使(m)RNA通过核孔复合体(NPC)定向输出到细胞质。在出口期间,Gle1与肌醇六磷酸酯(IP6)结合在空间上调节NPC细胞质面上DEAD-box蛋白Dbp5的活性。 GLE1突变与人类疾病致死性先天性挛缩综合症1(LCCS-1)和致死性关节角质病伴前角细胞病(LAAHD)因果相关。在这里,结构预测和功能分析提供了有力的证据,表明LCCS-1和LAAHD疾病突变破坏了mRNA输出中Gle1的功能。令人惊讶的是,在活细胞中直接进行荧光显微镜检查后发现,从具有LAAHD和LCCS-1突变的人gle1基因表达的GFP-gle1蛋白中,稳态NPC定位显着丧失。这些残基的潜在意义通过序列分析和预测的结构保守性进一步阐明。这项工作提供了对人类LCCS-1和LAAHD疾病状态潜在扰动机制的见解,并强调了改变的mRNA转运和基因表达对人类疾病的潜在影响。

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