Nizard Philippe, Tetley Susanne, Le Dréan Yves, Watrin Tanguy, Le Goff Pascale, Wilson Mark R, Michel Denis
UMR6026 CNRS Université de Rennes1, Intracellular Protein Homeostasis, IFR 140, Campus de Beaulieu, Bat. 13, 35042 Rennes cedex, France.
Traffic. 2007 May;8(5):554-65. doi: 10.1111/j.1600-0854.2007.00549.x.
Clusterin is a usually secreted glycoprotein with chaperone properties. Recently, it has been suggested that clusterin isoforms reside in the nuclear and cytosolic compartments of human cell types, where they can influence various cellular programs including DNA repair, transcription and apoptosis. Several mechanisms have been proposed to explain this atypical location, including alternative transcription initiation and alternative splicing. However, none of these have been unequivocally established as occurring in live cells. Here we provide direct experimental evidence that in live intact cells, under certain stress conditions, clusterin can evade the secretion pathway and reach the cytosol. This was demonstrated using several complementary approaches. Flow cytometry and selective permeabilization of U251 cell membranes with digitonin allowed detection of cytosolic clusterin in stressed U251 cells. In addition, a stringent enzymatic assay reliant upon the exclusively cytosolic deubiquitinase enzymes confirmed that clusterin synthesized with its hydrophobic secretion signal sequence can reach the cytosol of U251 cells. The retrotranslocation of clusterin is likely to occur through a mechanism similar to the endoplasmic reticulum (ER)-associated protein degradation pathway and involves passage through the Golgi apparatus. We also report that the ER-associated ubiquitin ligase Hrd1/synoviolin can interact with, and ubiquitinate clusterin. The possible biological functions of these novel behaviours of clusterin are discussed.
簇集素是一种通常分泌的具有伴侣性质的糖蛋白。最近,有人提出簇集素异构体存在于人类细胞类型的细胞核和细胞质区室中,在那里它们可以影响包括DNA修复、转录和细胞凋亡在内的各种细胞程序。已经提出了几种机制来解释这种非典型定位,包括可变转录起始和可变剪接。然而,这些机制在活细胞中发生的情况都尚未得到明确证实。在这里,我们提供了直接的实验证据,表明在活的完整细胞中,在某些应激条件下,簇集素可以避开分泌途径并到达细胞质。这通过几种互补方法得到了证明。流式细胞术以及用洋地黄皂苷对U251细胞膜进行选择性通透处理,使得能够检测到应激U251细胞中的细胞质簇集素。此外,一种依赖于仅存在于细胞质中的去泛素化酶的严格酶测定法证实,带有疏水分泌信号序列合成的簇集素能够到达U251细胞的细胞质。簇集素的逆向转运可能通过一种类似于内质网(ER)相关蛋白降解途径的机制发生,并且涉及通过高尔基体。我们还报告说,ER相关的泛素连接酶Hrd1/滑膜素可以与簇集素相互作用并使其泛素化。讨论了簇集素这些新行为可能的生物学功能。