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多药耐药蛋白MRP5在前垂体细胞中环磷酸鸟苷细胞内信号传导控制中的作用。

Contribution of multidrug resistance protein MRP5 in control of cyclic guanosine 5'-monophosphate intracellular signaling in anterior pituitary cells.

作者信息

Andric Silvana A, Kostic Tatjana S, Stojilkovic Stanko S

机构信息

Endocrinology and Reproduction Research Branch, National Institute of Child Health and Human Development, Building 49, Room 6A-36, 49 Convent Drive, Bethesda, Maryland 20892-4510, USA.

出版信息

Endocrinology. 2006 Jul;147(7):3435-45. doi: 10.1210/en.2006-0091. Epub 2006 Apr 13.

Abstract

The energy-dependent cyclic nucleotide cellular efflux is operative in numerous eukaryotic cells and could be mediated by multidrug resistance proteins MRP4, MRP5, and MRP8. In pituitary cells, however, the operation of export pumps and their contribution to the control of intracellular cyclic nucleotide levels were not studied previously. Here we show that cellular efflux of cyclic nucleotides was detectable in normal and immortalized GH(3) pituitary cells under resting conditions and was enlarged after concurrent stimulation of cAMP and cGMP production with GHRH, corticotropin-releasing factor, vasoactive intestinal peptide, pituitary adenylate cyclase-activating polypeptide, and forskolin. In resting and stimulated cells, the efflux pumps transported the majority of de novo-produced cGMP, limiting its intracellular accumulation in a concentration range of 1-2 microm. In contrast, only a small fraction of cAMP was released and there was a time- and concentration-dependent accumulation of this messenger in the cytosol, ranging from 1-100 microm. Stimulation and inhibition of cGMP production alone did not affect cAMP efflux, suggesting the operation of two different transport pathways in pituitary cells. The rates of cAMP and cGMP effluxes were comparable, and both pathways were blocked by probenecid and progesterone. Pituitary cells expressed mRNA transcripts for MRP4, MRP5, and MRP8, whereas GH(3) cells expressed only transcripts for MRP5. Down-regulation of MRP5 expression in GH(3) cells decreased cGMP release without affecting cAMP efflux. These results indicate that cyclic nucleotide cellular efflux plays a critical role in elimination of intracellular cGMP but not cAMP in pituitary cells and that such selectivity is achieved by expression of MRP5.

摘要

能量依赖的环核苷酸细胞外流在众多真核细胞中发挥作用,可能由多药耐药蛋白MRP4、MRP5和MRP8介导。然而,在垂体细胞中,此前尚未研究过外排泵的作用及其对细胞内环核苷酸水平控制的贡献。在此我们表明,在静息条件下,正常和永生化的GH(3)垂体细胞中可检测到环核苷酸的细胞外流,在用生长激素释放激素、促肾上腺皮质激素释放因子、血管活性肠肽、垂体腺苷酸环化酶激活多肽和福斯高林同时刺激cAMP和cGMP产生后,外流增加。在静息和受刺激的细胞中,外排泵转运了大部分新产生的cGMP,将其细胞内积累限制在1 - 2微摩尔的浓度范围内。相比之下,只有一小部分cAMP被释放,并且这种信使在细胞溶质中有时间和浓度依赖性的积累,范围为1 - 100微摩尔。单独刺激和抑制cGMP产生并不影响cAMP外流,这表明垂体细胞中存在两种不同的转运途径。cAMP和cGMP外流的速率相当,并且两种途径都被丙磺舒和孕酮阻断。垂体细胞表达MRP4、MRP5和MRP8的mRNA转录本,而GH(3)细胞仅表达MRP5的转录本。GH(3)细胞中MRP5表达的下调减少了cGMP释放,而不影响cAMP外流。这些结果表明,环核苷酸细胞外流在垂体细胞中消除细胞内cGMP而非cAMP方面起关键作用,并且这种选择性是通过MRP5的表达实现的。

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