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通过在哺乳动物细胞和秀丽隐杆线虫中的生化和功能比较揭示的EHD蛋白的共同和独特作用。

Shared as well as distinct roles of EHD proteins revealed by biochemical and functional comparisons in mammalian cells and C. elegans.

作者信息

George Manju, Ying GuoGuang, Rainey Mark A, Solomon Aharon, Parikh Pankit T, Gao Qingshen, Band Vimla, Band Hamid

机构信息

Division of Molecular Oncology, Evanston Northwestern Healthcare Research Institute, Department of Medicine, Feinberg School of Medicine, Northwestern University, Evanston, Illinois, USA.

出版信息

BMC Cell Biol. 2007 Jan 18;8:3. doi: 10.1186/1471-2121-8-3.

Abstract

BACKGROUND

The four highly homologous human EHD proteins (EHD1-4) form a distinct subfamily of the Eps15 homology domain-containing protein family and are thought to regulate endocytic recycling. Certain members of this family have been studied in different cellular contexts; however, a lack of concurrent analyses of all four proteins has impeded an appreciation of their redundant versus distinct functions.

RESULTS

Here, we analyzed the four EHD proteins both in mammalian cells and in a cross-species complementation assay using a C. elegans mutant lacking the EHD ortholog RME-1. We show that all human EHD proteins rescue the vacuolated intestinal phenotype of C. elegans rme-1 mutant, are simultaneously expressed in a panel of mammalian cell lines and tissues tested, and variably homo- and hetero-oligomerize and colocalize with each other and Rab11, a recycling endosome marker. Small interfering RNA (siRNA) knock-down of EHD1, 2 and 4, and expression of dominant-negative EH domain deletion mutants showed that loss of EHD1 and 3 (and to a lesser extent EHD4) but not EHD2 function retarded transferrin exit from the endocytic recycling compartment. EH domain deletion mutants of EHD1 and 3 but not 2 or 4, induced a striking perinuclear clustering of co-transfected Rab11. Knock-down analyses indicated that EHD1 and 2 regulate the exit of cargo from the recycling endosome while EHD4, similar to that reported for EHD3 (Naslavsky et al. (2006) Mol. Biol. Cell 17, 163), regulates transport from the early endosome to the recycling endosome.

CONCLUSION

Altogether, our studies suggest that concurrently expressed human EHD proteins perform shared as well as discrete functions in the endocytic recycling pathway and lay a foundation for future studies to identify and characterize the molecular pathways involved.

摘要

背景

四种高度同源的人类EHD蛋白(EHD1 - 4)构成了含Eps15同源结构域蛋白家族的一个独特亚家族,被认为参与调节内吞循环。该家族的某些成员已在不同细胞环境中得到研究;然而,缺乏对所有四种蛋白的同时分析阻碍了对它们冗余与独特功能的理解。

结果

在此,我们在哺乳动物细胞中以及使用缺乏EHD直系同源物RME - 1的秀丽隐杆线虫突变体进行的跨物种互补试验中分析了这四种EHD蛋白。我们发现,所有人类EHD蛋白都能挽救秀丽隐杆线虫rme - 1突变体的空泡化肠道表型,在一组测试的哺乳动物细胞系和组织中同时表达,并且彼此之间以及与回收型内体标记物Rab11可变地形成同源和异源寡聚体并共定位。对EHD1、2和4进行小干扰RNA(siRNA)敲低,以及表达显性负性EH结构域缺失突变体表明,EHD1和3(以及程度较轻的EHD4)功能丧失,但不是EHD2功能丧失,会延迟转铁蛋白从内吞循环区室的输出。EHD1和3的EH结构域缺失突变体,但不是2或4的,诱导了共转染的Rab11在核周的显著聚集。敲低分析表明,EHD1和2调节货物从回收型内体的输出,而EHD4,类似于EHD3的报道(Naslavsky等人,(2006年)《分子生物学细胞》17卷,第163页),调节从早期内体到回收型内体的运输。

结论

总之,我们的研究表明,同时表达的人类EHD蛋白在内吞循环途径中执行共同以及离散的功能,并为未来识别和表征所涉及的分子途径的研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ba7/1793994/38afbaa9fda3/1471-2121-8-3-1.jpg

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