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首页> 外文期刊>The Biochemical Journal >ATP-dependent transport of glutathione conjugate of 7beta, 8alpha-dihydroxy-9alpha,10alpha-oxy-7,8,9,10-tetrahydrobenzo(a)pyrene in murine hepatic canalicular plasma membrane vesicles.
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ATP-dependent transport of glutathione conjugate of 7beta, 8alpha-dihydroxy-9alpha,10alpha-oxy-7,8,9,10-tetrahydrobenzo(a)pyrene in murine hepatic canalicular plasma membrane vesicles.

机译:鼠肝小管质膜囊泡中7beta,8alpha-dihydroxy-9alpha,10alpha-oxy-7,8,9,10-tetrahydrobenzo(a)pyrene的谷胱甘肽共轭物的ATP依赖性运输。

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摘要

Glutathione (GSH) S-transferases (GSTs) have an important role in the detoxification of (+)-anti-7,8-dihydroxy-9,10-oxy-7,8,9, 10-tetrahydrobenzo[a]pyrene [(+)-anti-BPDE], which is the ultimate carcinogen of benzo[a]pyrene. However, the fate and/or biological activity of the GSH conjugate of (+)-anti-BPDE [(-)-anti-BPD-SG] is not known. We now report that (-)-anti-BPD-SG is a competitive inhibitor (Ki 19 microM) of Pi-class isoenzyme mGSTP1-1, which among murine hepatic GSTs is most efficient in the GSH conjugation of (+)-anti-BPDE. Thus the inhibition of mGSTP1-1 activity by (-)-anti-BPD-SG might interfere with the GST-catalysed GSH conjugation of (+)-anti-BPDE unless one or more mechanisms exist for the removal of the conjugate. The results of the present study indicate that (-)-anti-BPD-SG is transported across canalicular liver plasma membrane (cLPM) in an ATP-dependent manner. The ATP-dependent transport of (-)-anti-[3H]BPD-SG followed Michaelis-Menten kinetics (Km 46 microM). The ATP dependence of the (-)-anti-BPD-SG transport was confirmed by measuring the stimulation of ATP hydrolysis (ATPase activity) by the conjugate in the presence of cLPM protein, which also followed Michaelis-Menten kinetics. In contrast, a kinetic analysis of ATP-dependent uptake of the model conjugate S-[3H](2,4-dinitrophenyl)-glutathione ([3H]DNP-SG) revealed the presence of a high-affinity and a low-affinity transport system in mouse cLPM, with apparent Km values of 18 and 500 microM respectively. The ATP-dependent transport of (-)-anti-BPD-SG was inhibited competitively by DNP-SG (Ki 1.65 microM). Likewise, (-)-anti-BPD-SG was found to be a potent competitive inhibitor of the high-affinity component of DNP-SG transport (Ki 6.3 microM). Our results suggest that GST-catalysed conjugation of (+)-anti-BPDE with GSH, coupled with ATP-dependent transport of the resultant conjugate across cLPM, might be the ultimate detoxification pathway for this carcinogen.
机译:谷胱甘肽(GSH)S-转移酶(GST)在(+)-抗7,8-二羟基-9,10-氧-7,8,9,10-四氢苯并[a] py [ (+)-抗-BPDE],是苯并[a] py的终极致癌物。然而,(+)-抗-BPDE [(-)-抗-BPD-SG]的GSH缀合物的命运和/或生物学活性是未知的。我们现在报道,(-)-抗BPD-SG是Pi类同工酶mGSTP1-1的竞争性抑制剂(Ki 19 microM),在鼠肝GST中,其在(+)-抗-GSH的GSH偶联中最有效BPDE。因此,除非存在一种或多种去除缀合物的机制,否则(-)-抗BPD-SG对mGSTP1-1活性的抑制可能会干扰GST催化的(+)-抗BPDE的GSH缀合。本研究的结果表明(-)-抗BPD-SG以ATP依赖的方式转运穿过小管肝质膜(cLPM)。 (-)-抗-[3H] BPD-SG的ATP依赖性转运遵循Michaelis-Menten动力学(Km 46 microM)。 (-)-抗BPD-SG转运的ATP依赖性通过在cLPM蛋白存在下测量结合物对ATP水解的刺激作用(ATPase活性)进行了确认,这也遵循了Michaelis-Menten动力学。相反,对模型共轭物S- [3H](2,4-二硝基苯基)-谷胱甘肽([3H] DNP-SG)进行ATP依赖摄取的动力学分析表明,存在高亲和力和低亲和力小鼠cLPM中的运输系统,其表观Km值分别为18和500 microM。 DNP-SG(Ki 1.65 microM)竞争性抑制(-)-抗BPD-SG的ATP依赖性转运。同样,发现(-)-抗BPD-SG是DNP-SG转运(Ki 6.3 microM)的高亲和力组分的有效竞争抑制剂。我们的结果表明,GST催化的(+)-抗BPDE与GSH的结合,再加上最终的结合物跨cLPM的ATP依赖性转运,可能是该致癌物的最终解毒途径。

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