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甲壳类动物中重金属螯合与解毒机制:综述

Mechanisms of heavy-metal sequestration and detoxification in crustaceans: a review.

作者信息

Ahearn G A, Mandal P K, Mandal A

机构信息

Department of Biology, University of North Florida, 4567 St. Johns Bluff Rd, South, Jacksonville, FL 32223, USA.

出版信息

J Comp Physiol B. 2004 Aug;174(6):439-52. doi: 10.1007/s00360-004-0438-0. Epub 2004 Jul 9.

Abstract

This review is an update of information recently obtained about the physiological, cellular, and molecular mechanisms used by crustacean organ systems to regulate and detoxify environmental heavy metals. It uses the American lobster, Homarus americanus, and other decapod crustaceans as model organisms whose cellular detoxification processes may be widespread among both invertebrates and vertebrates alike. The focus of this review is the decapod hepatopancreas and its complement of metallothioneins, membrane metal transport proteins, and vacuolar sequestration mechanisms, although comparative remarks about potential detoxifying roles of gills, integument, and kidneys are included. Information is presented about the individual roles of hepatopancreatic mitochondria, lysosomes, and endoplasmic reticula in metal sequestration and detoxification. Current working models for the involvement of mitochondrial and endoplasmic reticulum calcium-transport proteins in metal removal from the cytoplasm and the inhibitory interactions between the metals and calcium are included. In addition, copper transport proteins and V-ATPases associated with lysosomal membranes are suggested as possible sequestration processes in these organelles. Together with several possible cytoplasmic divalent and trivalent anions such as sulfate, oxalate, or phosphate, accumulations of metals in lysosomes and their complexation into detoxifying precipitation granules may be regulated by variations in lysosomal pH brought about by bafilomycin-sensitive proton ATPases. Efflux processes for metal transport from hepatopancreatic epithelial cells to the hemolymph are described, as are the possible roles of hemocytes as metal sinks. While some of the cellular processes for isolating heavy metals from general circulation occur in the hepatopancreas and are beginning to be understood, very little is currently known about the roles of the gills, integument, and kidneys in metal regulation. Therefore, much remains to be clarified about the organs and mechanisms involved in metal homeostasis in decapod crustaceans.

摘要

本综述是对最近获得的有关甲壳类动物器官系统用于调节和解毒环境重金属的生理、细胞和分子机制信息的更新。它以美洲龙虾(Homarus americanus)和其他十足目甲壳类动物作为模式生物,其细胞解毒过程可能在无脊椎动物和脊椎动物中普遍存在。本综述的重点是十足目动物的肝胰腺及其金属硫蛋白、膜金属转运蛋白和液泡隔离机制,尽管也包括了关于鳃、体壁和肾脏潜在解毒作用的比较性论述。文中介绍了肝胰腺线粒体、溶酶体和内质网在金属隔离和解毒中的各自作用。还包括了线粒体和内质网钙转运蛋白参与从细胞质中去除金属以及金属与钙之间抑制性相互作用的当前工作模型。此外,与溶酶体膜相关的铜转运蛋白和V - ATP酶被认为是这些细胞器中可能的隔离过程。连同几种可能的细胞质二价和三价阴离子,如硫酸根、草酸根或磷酸根,溶酶体中金属的积累及其形成解毒沉淀颗粒的络合作用可能受巴弗洛霉素敏感的质子ATP酶引起的溶酶体pH变化调节。描述了金属从肝胰腺上皮细胞转运到血淋巴的外排过程,以及血细胞作为金属库的可能作用。虽然从全身循环中隔离重金属的一些细胞过程发生在肝胰腺中并且开始被理解,但目前对鳃、体壁和肾脏在金属调节中的作用知之甚少。因此,关于十足目甲壳类动物金属稳态所涉及的器官和机制仍有许多有待阐明。

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