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GRP78 伴侣蛋白在癌症中的药理学效应器。

Pharmacological effectors of GRP78 chaperone in cancers.

机构信息

UMR-S 1172, Centre de Recherche Jean-Pierre Aubert, INSERM, University of Lille, CHU Lille, 59045 Lille, France.

Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, UK.

出版信息

Biochem Pharmacol. 2019 May;163:269-278. doi: 10.1016/j.bcp.2019.02.038. Epub 2019 Mar 1.

Abstract

The protein chaperone GRP78 is a master regulator of endoplasmic reticulum (ER) functions and is frequently over-expressed at the surface of cancer cells where it contributes to chemo-resistance. It represents a well-studied ER stress marker but an under-explored target for new drug development. This review aims to untangle the structural and functional diversity of GRP78 modulators, covering over 130 natural products, synthetic molecules, specific peptides and monoclonal antibodies that target GRP78. Several approaches to promote or to incapacitate GRP78 are presented, including the use of oligonucleotides and specific cell-delivery peptides often conjugated to cytotoxic payloads to design GRP78-targeted therapeutics. A repertoire of drugs that turn on/off GRP78 is exposed, including molecules which bind directly to GRP78, principally to its ATP site. There exist many options to regulate positively or negatively the expression of the chaperone, or to interfere with its cellular trafficking. This review provides a molecular cartography of GRP78 pharmacological effectors and adds weight to the notion that GRP78 repressors could represent promising anticancer therapeutics, notably as regards limiting chemo-resistance of cancer cells. The potential of GRP78-targeting drugs in other therapeutic modalities is also evoked.

摘要

热休克蛋白 70(GRP78)是内质网(ER)功能的主要调节剂,在癌细胞表面过度表达,有助于化疗耐药性。它是一种研究充分的 ER 应激标志物,但作为新药开发的靶点尚未得到充分探索。这篇综述旨在梳理 GRP78 调节剂的结构和功能多样性,涵盖了超过 130 种天然产物、合成分子、靶向 GRP78 的特异性肽和单克隆抗体。本文介绍了几种促进或使 GRP78 失活的方法,包括使用寡核苷酸和特定的细胞传递肽,通常与细胞毒性有效载荷结合,以设计靶向 GRP78 的治疗药物。本文还揭示了一系列能够开启/关闭 GRP78 的药物,包括直接与 GRP78 结合的分子,主要与它的 ATP 结合位点结合。目前有许多调控该伴侣蛋白表达的正负向选项,或干扰其细胞内运输的选项。本文为 GRP78 药理学效应物提供了分子图谱,并进一步证明了 GRP78 抑制剂可能是有前途的抗癌治疗药物,特别是在限制癌细胞化疗耐药性方面。本文还提到了 GRP78 靶向药物在其他治疗模式中的潜力。

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