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埃默里-德赖富斯肌营养不良症突变会损害TRC40介导的emerin靶向内核膜的过程。

Emery-Dreifuss muscular dystrophy mutations impair TRC40-mediated targeting of emerin to the inner nuclear membrane.

作者信息

Pfaff Janine, Rivera Monroy Jhon, Jamieson Cara, Rajanala Kalpana, Vilardi Fabio, Schwappach Blanche, Kehlenbach Ralph H

机构信息

Department of Molecular Biology, Faculty of Medicine, Georg-August-University, GZMB, Humboldtallee 23, Göttingen 37073, Germany.

Department of Molecular Biology, Faculty of Medicine, Georg-August-University, GZMB, Humboldtallee 23, Göttingen 37073, Germany Max-Planck Institute for Biophysical Chemistry, Göttingen 37077, Germany

出版信息

J Cell Sci. 2016 Feb 1;129(3):502-16. doi: 10.1242/jcs.179333. Epub 2015 Dec 16.

Abstract

Emerin is a tail-anchored protein that is found predominantly at the inner nuclear membrane (INM), where it associates with components of the nuclear lamina. Mutations in the emerin gene cause Emery-Dreifuss muscular dystrophy (EDMD), an X-linked recessive disease. Here, we report that the TRC40/GET pathway for post-translational insertion of tail-anchored proteins into membranes is involved in emerin-trafficking. Using proximity ligation assays, we show that emerin interacts with TRC40 in situ. Emerin expressed in bacteria or in a cell-free lysate was inserted into microsomal membranes in an ATP- and TRC40-dependent manner. Dominant-negative fragments of the TRC40-receptor proteins WRB and CAML (also known as CAMLG) inhibited membrane insertion. A rapamycin-based dimerization assay revealed correct transport of wild-type emerin to the INM, whereas TRC40-binding, membrane integration and INM-targeting of emerin mutant proteins that occur in EDMD was disturbed. Our results suggest that the mode of membrane integration contributes to correct targeting of emerin to the INM.

摘要

Emerin是一种尾部锚定蛋白,主要存在于内核膜(INM),在那里它与核纤层的成分相关联。Emerin基因突变会导致Emery-Dreifuss肌营养不良症(EDMD),这是一种X连锁隐性疾病。在此,我们报告尾部锚定蛋白翻译后插入膜的TRC40/GET途径参与了Emerin的运输。使用邻近连接分析,我们证明Emerin在原位与TRC40相互作用。在细菌或无细胞裂解物中表达的Emerin以ATP和TRC40依赖的方式插入微粒体膜。TRC40受体蛋白WRB和CAML(也称为CAMLG)的显性负性片段抑制膜插入。基于雷帕霉素的二聚化分析显示野生型Emerin正确转运至INM,而EDMD中出现的Emerin突变蛋白的TRC40结合、膜整合和INM靶向则受到干扰。我们的结果表明膜整合模式有助于Emerin正确靶向至INM。

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