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首页> 外文期刊>Biomedical Research >Geranylgeraniol oxidase activity involved in oxidative formation of geranylgeranoic acid in human hepatoma cells
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Geranylgeraniol oxidase activity involved in oxidative formation of geranylgeranoic acid in human hepatoma cells

机译:香叶基香叶醇氧化酶活性参与人肝癌细胞中香叶基香叶酸的氧化形成

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摘要

Geranylgeranoic acid (GGA), a 20-carbon acyclic polyprenoic acid (all-trans 3,7,11,15-tetramethyl- 2,4,6,10,14-hexadecatetraenoic acid) and its derivatives were developed as synthetic "acyclic retinoids" for cancer chemoprevention. Previously, we have shown the natural occurrence of GGA in various medicinal herbs and reported enzymatic formation of GGA from geranylgeraniol (GGOH) through geranylgeranial (GGal) by rat liver homogenates. Here, we present several lines of evidence that a putative GGOH oxidase is involved in GGA synthesis by human hepatoma cell lysates. First, conversion of GGOH to GGal did not require exogenous NAD ~+, whereas the conversion from GGal to GGA absolutely required additional NAD +. Second, GGal synthesis from GGOH was coupled with consumption of oxygen from the reaction mixture. Third, GGOH-dependent GGal synthesis activity was proteinase K-resistant and even enhanced by proteinase K treatment; GGOH oxidase activity was enriched in the mitochondrial fraction. Finally, recombinant human monoamine oxidase (MAO)-B, but not MAO-A catalyzed oxidation of GGOH to GGal. These data suggest that a putative mitochondrial GGOH oxidase is involved in the initial step of GGA synthesis from GGOH.
机译:香叶基香叶酸(GGA),一种20碳的无环聚异戊酸(全反式3,7,11,15-四甲基-2,4,6,10,14-六癸二烯酸)及其衍生物被开发为合成的“无环类视黄醇”用于癌症的化学预防。以前,我们已经显示了GGA在各种草药中的自然发生,并报道了大鼠肝匀浆从香叶基香叶醇(GGOH)到香叶基香叶醛(GGal)酶促形成GGA。在这里,我们提供了几条证据,证明推定的GGOH氧化酶参与了人肝癌细胞裂解物的GGA合成。首先,GGOH向GGal的转化不需要外源NAD +,而从GGal向GGA的转化绝对需要额外的NAD +。第二,由GGOH合成GGal与消耗反应混合物中的氧气。第三,依赖GGOH的GGal合成活性对蛋白酶K具有抗性,并且通过蛋白酶K处理甚至增强。线粒体部分富集了GGOH氧化酶活性。最后,重组人单胺氧化酶(MAO)-B而非MAO-A催化GGOH氧化为GGal。这些数据表明推定的线粒体GGOH氧化酶参与了从GGOH合成GGA的初始步骤。

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