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海星红斑海盘车(棘皮动物门:海盘车科)幽门盲囊微粒体对苯并[a]芘的NADPH、NADH和氢过氧化异丙苯依赖性代谢。

NADPH-, NADH- and cumene hydroperoxide-dependent metabolism of benzo[a]pyrene by pyloric caeca microsomes of the sea star Asterias rubens L. (Echinodermata: Asteroidea).

作者信息

den Besten P J, Lemaire P, Livingstone D R

机构信息

NERC Plymouth Marine Laboratory, Citadel Hill, UK.

出版信息

Xenobiotica. 1994 Oct;24(10):989-1001. doi: 10.3109/00498259409043296.

DOI:10.3109/00498259409043296
PMID:7900414
Abstract
  1. Benzo[a]pyrene (BaP) metabolism was studied in microsomes of the pyloric caeca (main digestive tissue and site of P450) of the echinoderm sea star (starfish) Asterias rubens. 2. NADPH-dependent metabolism of BaP produced phenols (36% of total metabolism), quinones (19%), dihydrodiols (25%) and putative protein adducts (20%). 3. NADH-dependent rates of BaP metabolism were approximately twice those found for NADPH-dependent metabolism, and metabolite formation was shifted towards dihydrodiols and quinones. 4. Cumene hydroperoxide (CHP)-dependent rates of BaP metabolism were also higher than NADPH-dependent rates by a factor of six for quinone and putative protein adduct production, and by a factor of four for phenol and dihydrodiol production. 5. Microsomal rates of BaP metabolism in BaP-exposed sea stars appeared to be elevated more in the case of NADPH-dependent than for CHP-dependent metabolism (respectively, increases of 130 and 41%), indicating the induction of forms of P450 preferentially catalysing NADPH-dependent metabolism. 6. 1,1,1-Trichloropropene-2,3-oxide (TCPO) inhibited dihydrodiol formation from both NADPH- and CHP-dependent BaP metabolism, indicating the involvement of epoxide hydratase in BaP metabolism. 7. Incubations of pyloric caeca microsomes with BaP and a superoxide anion radical-generating system (xanthine/xanthine oxidase) produced putative protein adducts but no free metabolites.
摘要
  1. 对棘皮动物海星(海盘车)幽门盲囊(主要消化组织和P450所在部位)微粒体中的苯并[a]芘(BaP)代谢进行了研究。2. BaP的NADPH依赖性代谢产生了酚类(占总代谢的36%)、醌类(19%)、二氢二醇类(25%)和假定的蛋白质加合物(20%)。3. BaP的NADH依赖性代谢速率约为NADPH依赖性代谢速率的两倍,且代谢物形成向二氢二醇类和醌类偏移。4. 对于醌类和假定蛋白质加合物的产生,异丙苯过氧化氢(CHP)依赖性的BaP代谢速率也比NADPH依赖性速率高6倍,对于酚类和二氢二醇类的产生则高4倍。5. 在暴露于BaP的海星中,微粒体BaP代谢速率在NADPH依赖性代谢情况下似乎比CHP依赖性代谢升高得更多(分别增加了130%和41%),表明优先催化NADPH依赖性代谢的P450形式被诱导。6. 1,1,1-三氯丙烯-2,3-氧化物(TCPO)抑制了NADPH依赖性和CHP依赖性BaP代谢中由二氢二醇的形成,表明环氧化物水解酶参与了BaP代谢。7. 幽门盲囊微粒体与BaP及超氧阴离子自由基生成系统(黄嘌呤/黄嘌呤氧化酶)一起孵育产生了假定的蛋白质加合物,但没有游离代谢物。

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