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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Purification and characterization of flavin-containing monooxygenase isoform 3 from rat kidney microsomes.
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Purification and characterization of flavin-containing monooxygenase isoform 3 from rat kidney microsomes.

机译:从大鼠肾脏微粒体中提取含黄素的单加氧酶同工型3。

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Rats are a common animal model for metabolism and toxicity studies. Previously, the enzymatic properties of rat flavin-containing monooxygenase (FMO) 1 purified from hepatic and renal microsomes and that of FMO3 purified from hepatic microsomes were characterized. This study investigated the physical, immunological, and enzymatic properties of FMO3 purified from male rat kidney microsomes and compared the results with those obtained with isolated rat liver FMO3. Renal FMO3 was purified via affinity columns based on the elution of L-methionine (Met) S-oxidase activity and reactivity of the eluted proteins with human FMO3 antibody. In general, Met S-oxidase-specific activity was increased 100-fold through the purification steps. The resulting protein had similar mobility (approximately 56 kDa) as isolated rat liver FMO3 and cDNA-expressed human FMO3 by SDS-polyacrylamide gel electrophoresis. When the isolated kidney protein band was subjected to trypsin digestion and matrix-assisted laser desorption ionization/time of flight mass spectral analysis, 34% of the sequence of rat FMO3 was detected. The apparent K(m) and V(max) values for rat kidney FMO3 were determined using the known FMO substrates Met, seleno-L-methionine, S-allyl-L-cysteine (SAC), and methimazole (N-methyl-2-mercaptoimidazole). The stereoselectivity of the reactions with Met and SAC were also examined using high-performance liquid chromatography. The obtained kinetic and stereoselectivity results were similar to those we obtained in the present study, or those previously reported, for rat liver FMO3. Taken together, the results demonstrate many similar properties between rat hepatic and renal FMO3 forms and suggest that renal FMO3 may play an important role in kidney metabolism of xenobiotics containing sulfur and selenium atoms.
机译:大鼠是用于代谢和毒性研究的常见动物模型。以前,表征了从肝和肾微粒体纯化的大鼠黄素单加氧酶(FMO)1和从肝微粒体纯化的FMO3的酶学性质。这项研究调查了从雄性大鼠肾脏微粒体中纯化的FMO3的物理,免疫和酶学性质,并将结果与​​分离的大鼠肝脏FMO3获得的结果进行了比较。基于L-蛋氨酸(Met)S-氧化酶活性和洗脱蛋白与人FMO3抗体的反应性,通过亲和柱纯化肾脏FMO3。通常,在纯化步骤中,Met S-氧化酶的特异性活性提高了100倍。通过SDS-聚丙烯酰胺凝胶电泳,所得蛋白质具有与分离的大鼠肝脏FMO3和cDNA表达的人FMO3相似的迁移率(约56 kDa)。对分离的肾蛋白条带进行胰蛋白酶消化和基质辅助激光解吸电离/飞行时间质谱分析时,检测到大鼠FMO3序列的34%。使用已知的FMO底物Met,硒代L-蛋氨酸,S-烯丙基-L-半胱氨酸(SAC)和甲巯咪唑(N-甲基-2)确定大鼠肾脏FMO3的表观K(m)和V(max)值-巯基咪唑)。还使用高效液相色谱法检查了与Met和SAC的反应的立体选择性。获得的动力学和立体选择性结果与我们在本研究中或先前报道的大鼠肝脏FMO3相似。两者合计,结果表明大鼠肝和肾脏FMO3形式之间有许多相似的性质,并表明肾脏FMO3可能在含有硫和硒原子的异生物的肾脏代谢中起重要作用。

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