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多药耐药蛋白5作为一种依赖ATP的环核苷酸外排泵发挥作用。

The multidrug resistance protein 5 functions as an ATP-dependent export pump for cyclic nucleotides.

作者信息

Jedlitschky G, Burchell B, Keppler D

机构信息

Division of Tumor Biochemistry, Deutsches Krebsforschungszentrum, D-69120 Heidelberg, Germany.

出版信息

J Biol Chem. 2000 Sep 29;275(39):30069-74. doi: 10.1074/jbc.M005463200.

DOI:10.1074/jbc.M005463200
PMID:10893247
Abstract

Cellular export of cyclic nucleotides has been observed in various tissues and may represent an elimination pathway for these signaling molecules, in addition to degradation by phosphodiesterases. In the present study we provide evidence that this export is mediated by the multidrug resistance protein isoform MRP5 (gene symbol ABCC5). The transport function of MRP5 was studied in V79 hamster lung fibroblasts transfected with a human MRP5 cDNA. An MRP5-specific antibody detected an overexpression of the glycoprotein of 185 +/- 15 kDa in membranes from MRP5-transfected cells and a low basal expression of hamster Mrp5 in control membranes. ATP-dependent transport of 3',5'-cyclic GMP at a substrate concentration of 1 micrometer was 4-fold higher in membrane vesicles from MRP5-transfected cells than in control membranes. This transport was saturable with a K(m) value of 2.1 micrometer. MRP5-mediated transport was also detected for 3',5'-cyclic AMP at a lower affinity, with a K(m) value of 379 micrometer. A potent inhibition of MRP5-mediated transport was observed by several compounds, known as phosphodiesterase modulators, including trequinsin, with a K(i) of 240 nm, and sildenafil, with a K(i) value of 267 nm. Thus, cyclic nucleotides are physiological substrates for MRP5; moreover, MRP5 may represent a novel pharmacological target for the enhancement of tissue levels of cGMP.

摘要

在各种组织中均观察到环核苷酸的细胞外排现象,这可能是这些信号分子除了通过磷酸二酯酶降解之外的另一条消除途径。在本研究中,我们提供证据表明这种外排是由多药耐药蛋白亚型MRP5(基因符号ABCC5)介导的。在转染了人MRP5 cDNA的V79仓鼠肺成纤维细胞中研究了MRP5的转运功能。一种MRP5特异性抗体检测到在MRP5转染细胞的膜中185±15 kDa糖蛋白的过表达,而在对照膜中仓鼠Mrp5的基础表达较低。在底物浓度为1微摩尔时,MRP5转染细胞的膜囊泡中3',5'-环鸟苷酸的ATP依赖性转运比对照膜高4倍。这种转运是可饱和的,K(m)值为2.1微摩尔。对于3',5'-环腺苷酸,也检测到MRP5介导的转运,但亲和力较低,K(m)值为379微摩尔。几种已知为磷酸二酯酶调节剂的化合物,包括曲喹辛(K(i)为240纳米)和西地那非(K(i)值为267纳米),对MRP5介导的转运有强烈抑制作用。因此,环核苷酸是MRP5的生理底物;此外,MRP5可能代表一种提高组织中cGMP水平的新型药理学靶点。

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