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脱氢表雄酮结构类似物在培养大鼠肝细胞中诱导过氧化物酶体β-氧化:构效关系

Induction of peroxisomal beta-oxidation by structural analogues of dehydroepiandrosterone in cultured rat hepatocytes: structure-activity relationships.

作者信息

Sakuma M, Yamada J, Suga T

机构信息

Department of Clinical Biochemistry, Tokyo College of Pharmacy, Japan.

出版信息

Biochim Biophys Acta. 1993 Jul 21;1169(1):66-72.

PMID:8334152
Abstract

The structural requirements of dehydroepiandrosterone (DHEA) for the induction of peroxisomal beta-oxidation were studied in cultured rat hepatocytes. The hepatocytes were incubated for 5 days with various steroids, including 3- and 17-substituted analogues and 5-hydrogenated analogues of DHEA, and the activities of peroxisomal beta-oxidation and carnitine acetyltransferase were measured. Among the steroids examined, DHEA, DHEA sulfate (DHEAS), dehydroandrosterone sulfate, androstenediol 3-sulfate, epiandrosterone sulfate and androsterone sulfate significantly induced the enzymes; 4.6- to 14.2-fold for beta-oxidation and 5.1- to 10.9-fold for carnitine acetyltransferase at 50 microM. All of the sulfated steroids were more effective than the corresponding unsulfated forms. DHEAS was the most potent inducer. The 3-sulfuric group was required for the marked induction of peroxisomal beta-oxidation, and the 17-carbonyl group was also important. Furthermore, the relatively planar conformation of the steroidal hydrophobic backbone was crucial for inducing the enzyme. The configuration of the 3-sulfuric group (beta-configuration) and the presence of a double bond at position C5 were not primary determinants for the action of DHEAS. On the other hand, the introduction of bulky substituents to position C17 or aromatization of ring A led to a loss of inducing activity. Thus, there are strict structural requirements for the DHEA induction of peroxisomal beta-oxidation, suggesting the presence of a certain specific recognition site in the cell for DHEAS, which mediates the peroxisome proliferator action of DHEA.

摘要

在培养的大鼠肝细胞中研究了脱氢表雄酮(DHEA)诱导过氧化物酶体β-氧化的结构要求。将肝细胞与各种类固醇一起孵育5天,这些类固醇包括DHEA的3-和17-取代类似物以及5-氢化类似物,然后测量过氧化物酶体β-氧化和肉碱乙酰转移酶的活性。在所检测的类固醇中,DHEA、硫酸脱氢表雄酮(DHEAS)、脱氢雄酮硫酸盐、雄烯二醇3-硫酸盐、表雄酮硫酸盐和雄酮硫酸盐显著诱导了这些酶;在50微摩尔时,β-氧化诱导了4.6至14.2倍,肉碱乙酰转移酶诱导了5.1至10.9倍。所有硫酸化类固醇都比相应的非硫酸化形式更有效。DHEAS是最有效的诱导剂。3-硫酸基团是过氧化物酶体β-氧化显著诱导所必需的,17-羰基也很重要。此外,甾体疏水主链的相对平面构象对于诱导该酶至关重要。3-硫酸基团的构型(β-构型)和C5位双键的存在不是DHEAS作用的主要决定因素。另一方面,在C17位引入大的取代基或A环芳构化会导致诱导活性丧失。因此,DHEA诱导过氧化物酶体β-氧化存在严格的结构要求,这表明细胞中存在某个特定的DHEAS识别位点,其介导了DHEA的过氧化物酶体增殖剂作用。

相似文献

1
Induction of peroxisomal beta-oxidation by structural analogues of dehydroepiandrosterone in cultured rat hepatocytes: structure-activity relationships.脱氢表雄酮结构类似物在培养大鼠肝细胞中诱导过氧化物酶体β-氧化:构效关系
Biochim Biophys Acta. 1993 Jul 21;1169(1):66-72.
2
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Peroxisome proliferator-activated receptor alpha required for gene induction by dehydroepiandrosterone-3 beta-sulfate.脱氢表雄酮-3β-硫酸盐诱导基因所需的过氧化物酶体增殖物激活受体α
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Dehydroepiandrosterone 3 beta-sulphate is an endogenous activator of the peroxisome-proliferation pathway: induction of cytochrome P-450 4A and acyl-CoA oxidase mRNAs in primary rat hepatocyte culture and inhibitory effects of Ca(2+)-channel blockers.硫酸脱氢表雄酮是过氧化物酶体增殖途径的内源性激活剂:原代大鼠肝细胞培养中细胞色素P-450 4A和酰基辅酶A氧化酶mRNA的诱导以及钙通道阻滞剂的抑制作用。
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Specific binding of dehydroepiandrosterone sulfate to rat liver cytosol: a possible association with peroxisomal enzyme induction.硫酸脱氢表雄酮与大鼠肝脏胞质溶胶的特异性结合:与过氧化物酶体酶诱导的可能关联。
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Regulation of CYP4A expression in rat by dehydroepiandrosterone and thyroid hormone.脱氢表雄酮和甲状腺激素对大鼠CYP4A表达的调节
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Induction of microsomal and peroxisomal enzymes by dehydroepiandrosterone and its reduced metabolite in rats.脱氢表雄酮及其还原代谢产物对大鼠微粒体和过氧化物酶体酶的诱导作用。
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Hepatic zonation of the induction of cytochrome P450 IVA, peroxisomal lipid beta-oxidation enzymes and peroxisome proliferation in rats treated with dehydroepiandrosterone (DHEA). Evidence of distinct zonal and sex-specific differences.脱氢表雄酮(DHEA)处理大鼠后,细胞色素P450 IVA诱导、过氧化物酶体脂质β-氧化酶及过氧化物酶体增殖的肝带化现象。明显的肝带和性别特异性差异的证据。
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Inverse relationship between peroxisomal and mitochondrial beta-oxidation in HepG2 cells treated with dehydroepiandrosterone and clofibric acid.
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