首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Electrostatic interactions of androgens and progesterone derivatives with rainbow trout estrogen receptor.
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Electrostatic interactions of androgens and progesterone derivatives with rainbow trout estrogen receptor.

机译:雄激素和孕酮衍生物与虹鳟雌激素受体的静电相互作用。

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In primary cultures of immature male rainbow trout (rt) hepatocytes, vitellogenin (Vg) gene expression is regulated by E(2) via the estrogen receptor (ER). However, steroids other than estrogens can also stimulate Vg gene expression. These steroids are hardly converted into E(2) during incubation and their stimulatory activity is completely inhibited by tamoxifen implying rtER involvement. These steroids have no or a slightly positive charge on the Connolly surface. In contrast, steroids that failed to stimulate Vg gene expression had a strong positive or negative charge around rings C and D due to polarization. The amino acid sequences of the ligand binding domains (LBD) of rtER and human ER alpha have 57.7% homology; only one amino acid differs in the presumed steroid binding site. We modeled the three-dimensional structure of the LBD of rtER using X-ray crystallographic data for hER alpha in order to investigate the fit (structural and electrostatic) between steroid and rtER. Two factors are essential for binding to rtER: (i) hydroxyl or carbonyl groups near C3 and C17 of the steroids (hydrophilic regions) that can form hydrogen bonds with His(489), Arg(359), and Glu(318), (ii) a hydrophobic steroid nucleus that interacts with a hydrophobic region of the rtER LBD through van der Waals forces. If polar functional groups are present, the hydrophobic interaction between steroid and the rtER LBD is considerably weakened.
机译:在未成熟的雄性虹鳟(rt)肝细胞的原代培养中,卵黄蛋白原(Vg)基因表达受E(2)经由雌激素受体(ER)的调节。但是,除雌激素以外的类固醇也可以刺激Vg基因表达。这些类固醇在孵育过程中几乎不会转化为E(2),并且他莫昔芬暗示rtER参与完全抑制了它们的刺激活性。这些类固醇在Connolly表面没有电荷或略带正电荷。相反,由于极化作用,未能刺激Vg基因表达的类固醇在环C和D周围具有强正电荷或负电荷。 rtER和人ER alpha的配体结合域(LBD)的氨基酸序列具有57.7%的同源性;推测的类固醇结合位点只有一个氨基酸不同。为了研究类固醇与rtER之间的适合性(结构性和静电性),我们使用xER的X射线晶体学数据对rtER的LBD的三维结构进行了建模。要与rtER结合,必须考虑两个因素:(i)可以与His(489),Arg(359)和Glu(318)形成氢键的类固醇(亲水区域)的C3和C17附近的羟基或羰基, ii)通过范德华力与rtER LBD的疏水区域相互作用的疏水类固醇核。如果存在极性官能团,则类固醇与rtER LBD之间的疏水相互作用会大大减弱。

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