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首页> 外文期刊>Endocrine Research >The higher affinity of human type 1 3beta-hydroxysteroid dehydrogenase (3beta-HSD1) for substrate and inhibitor steroids relative to human 3beta-HSD2 is validated in MCF-7 tumor cells and related to subunit interactions.
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The higher affinity of human type 1 3beta-hydroxysteroid dehydrogenase (3beta-HSD1) for substrate and inhibitor steroids relative to human 3beta-HSD2 is validated in MCF-7 tumor cells and related to subunit interactions.

机译:相对于人3beta-HSD2,人1型3β-羟基类固醇脱氢酶(3beta-HSD1)对底物和抑制剂类固醇的亲和力更高,已在MCF-7肿瘤细胞中得到验证,并且与亚基相互作用有关。

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摘要

Two distinct genes encode the tissue-specific expression of the two isoforms of human 3beta-hydroxysteroid dehydrogenase: 3beta-HSD1 (placenta, mammary gland, breast tumors) and 3beta-HSD2 (gonads, adrenals). Purified 3beta-HSD1 utilizes DHEA as a substrate with 13-fold lower Km than 3beta-HSD2. Using homogenates of human MCF-7 Tet-off breast tumor cells stably transfected with human 3beta-HSD1 or 3beta-HSD2, DHEA is utilized as substrate by 3beta-HSD1 (Km = 4.8 microM) much more avidly than by 3beta-HSD2 (Km = 43 microM). In addition, the 3beta-HSD inhibitor, epostane, binds to purified 3beta-HSD1 with a 17-fold higher affinity compared to 3beta-HSD2. In the MCF-7 cells, two 3beta-HSD inhibitors block 3beta-HSD1 activity (Ki = 0.06 microM, epostane; 0.08 microM, trilostane) with 12- to 14-fold higher affinities compared to the inhibition of 3beta-HSD2 (Ki = 0.85 microM, epostane; 1.01 microM, trilostane). Thus, the substantially higher affinities of human 3beta-HSD1 for substrate and inhibitor steroids measured using the pure isoenzymes have been validated using microsome-bound 3beta-HSD1 and 3beta-HSD2 in the MCF-7 cells. Similar to our previously reported H156Y mutant of 3beta-HSD1, the Q105M mutant of 3beta-HSD1 shifts the substrate and inhibitor kinetic profiles to those of wild-type 3beta-HSD2. However, the Q105M mutant of 3beta-HSD2 retains the substrate and inhibitor kinetic profiles of wild-type 3beta-HSD2. Our structural homology model of human 3beta-HSD predicts that Gln105 on one enzyme subunit hydrogen-binds to His156 on the other subunit of the enzyme homodimer. The higher affinity of 3beta-HSD1 for the steroids may be related to different subunit interactions in the quaternary structures of the two isoenzymes. It may be possible to exploit these kinetic differences to selectively inhibit the conversion of DHEA ultimately to estradiol by 3beta-HSD1 and slow the growth of breast tumor cells.
机译:两个不同的基因编码人类3β-羟类固醇脱氢酶的两种同工型的组织特异性表达:3beta-HSD1(胎盘,乳腺,乳腺肿瘤)和3beta-HSD2(性腺,肾上腺)。纯化的3beta-HSD1利用DHEA作为底物,Km比3beta-HSD2低13倍。使用被人3beta-HSD1或3beta-HSD2稳定转染的人MCF-7 Tet-off乳腺肿瘤细胞匀浆,DHEA被3beta-HSD1(Km = 4.8 microM)用作底物,比3beta-HSD2(Km = 43 microM)。此外,与3beta-HSD2相比,3beta-HSD抑制剂epostane与纯化的3beta-HSD1结合的亲和力高17倍。在MCF-7细胞中,与抑制3beta-HSD2(Ki = 0.85 microM(依泊烷); 1.01 microM(三氟烷)。因此,已使用微粒体结合的3beta-HSD1和3beta-HSD2在MCF-7细胞中验证了使用纯同工酶测得的人3beta-HSD1对底物和抑制剂类固醇的实质上更高的亲和力。类似于我们先前报道的3beta-HSD1的H156Y突变体,3beta-HSD1的Q105M突变体将底物和抑制剂的动力学曲线转移到了野生型3beta-HSD2的动力学曲线上。但是,3beta-HSD2的Q105M突变体保留了野生型3beta-HSD2的底物和抑制剂动力学特征。我们的人3beta-HSD结构同源性模型预测,一个酶亚基上的Gln105会与酶同二聚体的另一个亚基上的His156结合。 3beta-HSD1对类固醇的较高亲和力可能与两种同工酶的季结构中不同的亚基相互作用有关。可能有可能利用这些动力学差异来选择性抑制DHEA通过3beta-HSD1最终转化为雌二醇并减慢乳腺肿瘤细胞的生长。

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