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ABCB型和ABCC型转运蛋白赋予双壳贝类鳃多异种生物抗性并形成环境-组织屏障。

ABCB- and ABCC-type transporters confer multixenobiotic resistance and form an environment-tissue barrier in bivalve gills.

作者信息

Luckenbach Till, Epel David

机构信息

Department of Cell Toxicology, UFZ, Helmholtz Centre for Environmental Research, Permoserstrasse 15, Leipzig, Germany.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2008 Jun;294(6):R1919-29. doi: 10.1152/ajpregu.00563.2007. Epub 2008 Apr 9.

DOI:10.1152/ajpregu.00563.2007
PMID:18401003
Abstract

Aquatic organisms and, in particular, filter feeders, such as mussels, are continuously exposed to toxicants dissolved in the water and, presumably, require adaptations to avoid the detrimental effects from such chemicals. Previous work indicates that activity of ATP-binding cassette (ABC) transporters protects mussels against toxicants, but the nature of these transporters and the structural basis of protection are not known. Here we meld studies on transporter function, gene expression, and localization of transporter protein in mussel gill tissue and show activity and expression of two xenobiotic transporter types in the gills, where they provide an effective structural barrier against chemicals. Activity of ABCB/MDR/P-glycoprotein and ABCC/MRP-type transporters was indicated by sensitivity of efflux of the test substrate calcein-AM to the ABCB inhibitor PSC-833 and the ABCC inhibitor MK-571. This activity profile is supported by our cloning of the complete sequence of two ABC transporter types from RNA in mussel tissue with a high degree of identity to transporters from the ABCB and ABCC subfamilies. Overall identity of the amino acid sequences with corresponding homologs from other organisms was 38-50% (ABCB) and 27-44% (ABCC). C219 antibody staining specific for ABCB revealed that this transporter was restricted to cells in the gill filaments with direct exposure to water flow. Taken together, our data demonstrate that ABC transporters form an active, physiological barrier at the tissue-environment interface in mussel gills, providing protection against environmental xenotoxicants.

摘要

水生生物,尤其是滤食性生物,如贻贝,持续暴露于溶解在水中的有毒物质中,因此可能需要适应性变化以避免此类化学物质的有害影响。先前的研究表明,ATP结合盒(ABC)转运蛋白的活性可保护贻贝免受有毒物质侵害,但这些转运蛋白的性质以及保护的结构基础尚不清楚。在此,我们综合了对贻贝鳃组织中转运蛋白功能、基因表达和转运蛋白定位的研究,结果显示鳃中有两种外源性转运蛋白类型具有活性并表达,它们为化学物质提供了有效的结构屏障。通过测试底物钙黄绿素-AM的外排对ABCB抑制剂PSC-833和ABCC抑制剂MK-571的敏感性,表明了ABCB/MDR/P-糖蛋白和ABCC/MRP型转运蛋白的活性。我们从贻贝组织的RNA中克隆出两种ABC转运蛋白类型的完整序列,与ABCB和ABCC亚家族的转运蛋白具有高度同源性,这支持了上述活性特征。与其他生物相应同源物的氨基酸序列总体同源性为38%-50%(ABCB)和27%-44%(ABCC)。对ABCB具有特异性的C219抗体染色显示,这种转运蛋白仅限于鳃丝中直接暴露于水流的细胞。综上所述,我们的数据表明,ABC转运蛋白在贻贝鳃的组织-环境界面形成了一个活跃的生理屏障,为抵御环境中的外源性毒素提供保护。

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