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首页> 外文期刊>Cancer biology & therapy >The Par-4-GRP78 TRAIL, more twists and turns
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The Par-4-GRP78 TRAIL, more twists and turns

机译:Par-4-GRP78轨迹,更多的曲折

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摘要

GRP78, also referred to as BiP, is an essential molecular chaperone and a master regulator of the unfolded protein response. Traditionally, GRP78 is regarded as localized in the lumen of the endoplasmic reticulum (ER). However, recent findings revealed that a subtraction of GRP78 can localize to the surface of specific cell types. Furthermore, preferential expression of GRP78 on the surface of tumor cells but not in normal organs suggests that surface GRP78 can serve both as a target as well as mediator for cancer-specific therapy. Recent reports further established that GRP78 forms complexes with specific proteins on the cell surface and plays an important role in signaling, impacting cell survival and proliferation. Burikhanovet al. (Cell 2009, 138:377) reported that Par-4, generally regarded as a cytosolic and nuclear protein that promotes cell death via the mitochon-drial cell death pathway, is spontaneously secreted by normal and cancer cells and this process is enhanced by ER stress or with addition of TRAIL. It is proposed that ER stress, induced by extracellular insults such as TRAIL, causes transloca-tion of the Par-4-GRP78 complex from the ER to the plasma membrane, and through a positive feedback loop, extracellular Par-4 binds to cell surface GRP78 and activates the extrinsic apoptotic pathway. In this Journal Club, we discuss some open questions and how these new findings integrate with current understanding of GRP78 function in vivo.
机译:GRP78,也称为BiP,是必不可少的分子伴侣和未折叠的蛋白应答的主要调节剂。传统上,GRP78被认为位于内质网(ER)内腔中。但是,最近的发现表明,减去GRP78可以定位于特定细胞类型的表面。此外,GRP78在肿瘤细胞表面而不是在正常器官中的优先表达表明,表面GRP78既可以作为靶点,也可以作为癌症特异性治疗的介质。最近的报道进一步证实,GRP78与细胞表面的特定蛋白质形成复合物,并在信号传导,影响细胞存活和增殖中起重要作用。 Burikhanovet等。 (Cell 2009,138:377)报告说,通常被认为是通过线粒体-干细胞死亡途径促进细胞死亡的胞质和核蛋白,Par-4是正常细胞和癌细胞自发分泌的,ER促进了这一过程压力或加上TRAIL。有人提出,由细胞外损伤(如TRAIL)引起的内质网应激可引起Par-4-GRP78复合物从内质网转移到质膜,并通过正反馈回路使细胞外Par-4结合至细胞表面GRP78并激活外在凋亡途径。在本期刊俱乐部中,我们讨论了一些悬而未决的问题,以及这些新发现如何与当前对体内GRP78功能的理解相结合。

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