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溴隐亭调节P-糖蛋白功能。

Bromocriptine modulates P-glycoprotein function.

作者信息

Orlowski S, Valente D, Garrigos M, Ezan E

机构信息

Section de Biophysique des Protéines et des Membranes, DBCM, CEA, Centre d'Etudes de Saclay, Gif/Yvette, France.

出版信息

Biochem Biophys Res Commun. 1998 Mar 17;244(2):481-8. doi: 10.1006/bbrc.1998.8289.

DOI:10.1006/bbrc.1998.8289
PMID:9514944
Abstract

The multidrug resistance (MDR)-associated P-glycoprotein (P-gp) is a membrane transporter which carries, at the expense of MgATP hydrolysis, many amphiphilic molecules, such as the MDR-related cytotoxic drugs vincristine and vinblastine, and the MDR-reversing agents verapamil and progesterone. We have tested the effects on P-gp function of bromocriptine (BCT), an ergot alkaloid known as a D2 dopaminergic receptor agonist. BCT (at 4 microM) partially reverses the P-gp-mediated vincristine resistance of the Chinese hamster lung fibroblasts DC-3F/ADX, a MDR cell line. P-gp containing membrane vesicles prepared from the DC-3F/ADX cells exhibit, in the absence of any added drug, a basal MgATPase activity due to P-gp. BCT inhibits this basal ATPase activity, with a half-inhibiting concentration of 0.30 +/- 0.15 microM. BCT also inhibits the verapamil-induced P-gp ATPase stimulation competitively (Ki approximately 0.2 microM), and the progesterone-induced P-gp ATPase stimulation non-competitively (Ki approximately 0.07-0.10 microM). BCT also non-competitively inhibits the vinblastine-dependent P-gp ATPase activity within the same concentration range. Hydroxylated metabolites of BCT have different effects on P-gp ATPase, only the monohydroxylated being able to modulate both the basal and the drug-stimulated ATPase activities. In conclusion, these effects of BCT on P-gp function can be linked to a specific interaction with P-gp, probably involving inhibition of P-gp-mediated drug transport.

摘要

多药耐药(MDR)相关的P-糖蛋白(P-gp)是一种膜转运蛋白,它以水解MgATP为代价,转运许多两亲性分子,如与MDR相关的细胞毒性药物长春新碱和长春花碱,以及MDR逆转剂维拉帕米和孕酮。我们测试了麦角生物碱溴隐亭(BCT)对P-gp功能的影响,BCT是一种已知的D2多巴胺能受体激动剂。BCT(4 microM)部分逆转了中国仓鼠肺成纤维细胞DC-3F/ADX(一种MDR细胞系)中P-gp介导的长春新碱耐药性。从DC-3F/ADX细胞制备的含P-gp的膜囊泡在没有添加任何药物的情况下,由于P-gp而表现出基础MgATP酶活性。BCT抑制这种基础ATP酶活性,半抑制浓度为0.30±0.15 microM。BCT还竞争性抑制维拉帕米诱导的P-gp ATP酶刺激(Ki约为0.2 microM),并非竞争性抑制孕酮诱导的P-gp ATP酶刺激(Ki约为0.07 - 0.10 microM)。BCT在相同浓度范围内也非竞争性抑制长春花碱依赖性P-gp ATP酶活性。BCT的羟基化代谢产物对P-gp ATP酶有不同影响,只有单羟基化代谢产物能够调节基础和药物刺激的ATP酶活性。总之,BCT对P-gp功能的这些影响可能与它与P-gp的特异性相互作用有关,可能涉及抑制P-gp介导的药物转运。

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