首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Steroid metabolism and profile of steroidogenic gene expression in Episkin: high similarity with human epidermis.
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Steroid metabolism and profile of steroidogenic gene expression in Episkin: high similarity with human epidermis.

机译:表皮中的类固醇代谢和类固醇生成基因表达的概况:与人类表皮高度相似。

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The skin is a well-recognized site of steroid formation and metabolism. Episkin is a cultured human epidermis. In this report, we investigate whether Episkin possesses a steroidogenic machinery able to metabolize adrenal steroid precursors into active steroids. Episkin was incubated with [14C]-dehydroepiandrosterone (DHEA) and 4-androstenedione (4-dione) and their metabolites were analyzed by liquid chromatography/mass spectrometry (LC/MS/MS). The results show that the major product of DHEA metabolism in Episkin is DHEA sulfate (DHEAS) (88% of the metabolites) while the other metabolites are 7alpha-OH-DHEA (8.2%), 4-dione (1.3%), 5-androstenediol (1.3%), dihydrotestosterone (DHT) (1.4%) and androsterone (ADT) (2.3%). When 4-dione is used as substrate, much higher levels of C19-steroids are produced with ADT representing 77% of the metabolites. These data indicate that 5alpha-reductase, 17beta-hydroxysteroid dehydrogenase (17beta-HSD) and 3alpha-hydroxysteroid dehdyrogenase (3alpha-HSD) activities are present at moderate levels in Episkin, while 3beta-HSD activity is low and represents a rate-limiting step in the conversion of DHEA into C19-steroids. Using realtime PCR, we have measured the level of mRNAs encoding the steroidogenic enzymes in Episkin. A good agreement is found between the mRNAs expression in Episkin and the metabolic profile. High expression levels of steroid sulfotransferase SULT2B1B and type 3 3alpha-HSD (AKR1C2) correspond to the high levels of DHEA sulfate (DHEAS) and ADT formed from DHEA and 4-dione, respectively. 3beta-HSD is almost undetectable while the other enzymes such as type 1 5alpha-reductase, types 2, 4, 5, 7, 8, and 10 17beta-HSD and 20alpha-hydroxysteroid dehydrogenase (20alpha-HSD) (AKR1C1) are highly expressed. Except for UGT-glucuronosyl transferase, similar mRNA expression profiles between Episkin and human epidermis are observed.
机译:皮肤是类固醇形成和代谢的公认部位。表皮是人类的表皮。在这份报告中,我们调查Episkin是否具有能够将肾上腺类固醇前体代谢成活性类固醇的类固醇生成机制。将表皮与[14C]-脱氢表雄酮(DHEA)和4-雄烯二酮(4-二酮)一起孵育,并通过液相色谱/质谱(LC / MS / MS)分析其代谢产物。结果表明,表皮中DHEA代谢的主要产物是硫酸DHEA(DHEAS)(占88%的代谢物),而其他代谢物是7α-OH-DHEA(8.2%),4-二酮(1.3%),5-雄烯二醇(1.3%),二氢睾丸酮(DHT)(1.4%)和雄甾酮(ADT)(2.3%)。当使用4-二酮作为底物时,会产生更高含量的C19-类固醇,其中ADT占代谢产物的77%。这些数据表明在Episkin中5α-还原酶,17β-羟基类固醇脱氢酶(17beta-HSD)和3α-羟基类固醇脱氢酶(3alpha-HSD)活性中等水平存在,而3beta-HSD活性低且代表限速步骤DHEA转化为C19类固醇的过程。使用实时PCR,我们已经测量了Episkin中编码类固醇生成酶的mRNA的水平。发现表皮中的mRNA表达与代谢谱之间存在良好的一致性。类固醇磺基转移酶SULT2B1B和3型3α-HSD(AKR1C2)的高表达水平分别对应于由DHEA和4-dione形成的DHEA硫酸盐(DHEAS)和ADT的高水平。 3beta-HSD几乎无法检测,而其他酶(如1型5α-还原酶,2型,4、5、7、8和10型17beta-HSD和20alpha-羟基类固醇脱氢酶(20alpha-HSD)(AKR1C1)则高表达。除了UGT-葡糖醛酸糖基转移酶,在表皮和人表皮之间观察到相似的mRNA表达谱。

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