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志贺毒素和蓖麻毒素的内吞作用、细胞内运输及细胞毒性作用

Endocytosis, intracellular transport, and cytotoxic action of Shiga toxin and ricin.

作者信息

Sandvig K, van Deurs B

机构信息

Institute for Cancer Research, Norwegian Radium Hospital, Montebello, Oslo, Norway.

出版信息

Physiol Rev. 1996 Oct;76(4):949-66. doi: 10.1152/physrev.1996.76.4.949.

DOI:10.1152/physrev.1996.76.4.949
PMID:8874490
Abstract

Protein toxins such as ricin and Shiga toxin with intracellular targets have to be endocytosed and translocated to the cytosol to inhibit the protein synthesis and thereby kill the cell. Ricin is internalized by both clathrin-dependent and -independent endocytic mechanisms, whereas Shiga toxin seems to be taken up exclusively from clathrin-coated pits. After endocytosis, internalized membrane and content are delivered to endosomes, where sorting for further routing in the cell takes place. Toxins that remain membrane bound at low endosomal pH can be recycled to the cell surface or transcytosed in polarized epithelia. A large proportion of internalized toxin is transported to lysosomes for degradation. Most importantly, a fraction of the internalized ricin and Shiga toxin molecules is delivered to the trans-Golgi network (TGN). Shiga toxin can, in some very sensitive cells, be transported retrogradely through the Golgi cisterns all the way back to the endoplasmic reticulum (ER), and it is possible that also ricin is transported retrogradely to the ER. In this review, a cell biological overview of these intracellular transport steps is presented, and evidence is provided that the delivery to the TGN and the subsequent retrograde transport to the ER are required for optimal intoxication. Moreover, it is argued that knowledge of this transport is important for targeted drug delivery such as the application of immunotoxins in cancer therapy.

摘要

诸如蓖麻毒素和志贺毒素这类作用于细胞内靶点的蛋白质毒素,必须通过内吞作用进入细胞并转运至胞质溶胶,以抑制蛋白质合成从而杀死细胞。蓖麻毒素可通过网格蛋白依赖和非依赖的内吞机制内化,而志贺毒素似乎仅从网格蛋白包被的小窝进入细胞。内吞作用后,内化的膜和内容物被递送至内体,在此处进行细胞内进一步转运的分选。在低内体pH值下仍与膜结合的毒素可循环至细胞表面或在上皮细胞中进行跨细胞转运。大部分内化毒素被转运至溶酶体进行降解。最重要的是,一部分内化的蓖麻毒素和志贺毒素分子被递送至反式高尔基体网络(TGN)。在一些非常敏感的细胞中,志贺毒素可通过高尔基体潴泡逆向转运,一直回到内质网(ER),蓖麻毒素也有可能逆向转运至内质网。在本综述中,对这些细胞内转运步骤进行了细胞生物学概述,并提供证据表明,最佳的中毒效果需要将毒素递送至TGN并随后逆向转运至内质网。此外,有人认为,了解这种转运对于靶向药物递送(如免疫毒素在癌症治疗中的应用)很重要。

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