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Selective serotonin reuptake inhibitors directly alter activity of neurosteroidogenic enzymes

机译:选择性5-羟色胺再摄取抑制剂直接改变神经固醇生成酶的活性

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摘要

The neurosteroid 3α-hydroxysteroid-5α-pregnan-20-one (allopregnanolone) acts as a positive allosteric modulator of γ-aminobutyric acid at γ-aminobutyric acid type A receptors and hence is a powerful anxiolytic, anticonvulsant, and anesthetic agent. Allopregnanolone is synthesized from progesterone by reduction to 5α-dihydroprogesterone, mediated by 5α-reductase, and by reduction to allopregnanolone, mediated by 3α-hydroxysteroid dehydrogenase (3α-HSD). Previous reports suggested that some selective serotonin reuptake inhibitors (SSRIs) could alter concentrations of allopregnanolone in human cerebral spinal fluid and in rat brain sections. We determined whether SSRIs directly altered the activities of either 5α-reductase or 3α-HSD, using an in vitro system containing purified recombinant proteins. Although rats appear to express a single 3α-HSD isoform, the human brain contains several isoforms of this enzyme, including a new isoform we cloned from human fetal brains. Our results indicate that the SSRIs fluoxetine, sertraline, and paroxetine decrease the Km of the conversion of 5α-dihydroprogesterone to allopregnanolone by human 3α-HSD type III 10- to 30-fold. Only sertraline inhibited the reverse oxidative reaction. SSRIs also affected conversions of androgens to 3α- and 3α, 17β-reduced or -oxidized androgens mediated by 3α-HSD type IIBrain. Another antidepressant, imipramine, was without any effect on allopregnanolone or androstanediol production. The region-specific expression of 3α-HSD type IIBrain and 3α-HSD type III mRNAs suggest that SSRIs will affect neurosteroid production in a region-specific manner. Our results may thus help explain the rapid alleviation of the anxiety and dysphoria associated with late luteal phase dysphoria disorder and major unipolar depression by these SSRIs.
机译:神经类固醇3α-羟基类固醇5α-pregnan-20-one(allopregnanolone)在γ-氨基丁酸A型受体处充当γ-氨基丁酸的正变构调节剂,因此是一种强大的抗焦虑药,抗惊厥药和麻醉药。通过从5α-还原酶介导的还原为5α-二氢孕酮,以及通过3α-羟基类固醇脱氢酶(3α-HSD)介导的还原为Allopregnanolone,从孕酮合成Allopregnanolone。先前的报道表明,某些选择性5-羟色胺再摄取抑制剂(SSRI)可能会改变人脑脊髓液和大鼠脑切片中Allopregnanolone的浓度。我们使用含有纯化重组蛋白的体外系统,确定SSRI是否直接改变5α-还原酶或3α-HSD的活性。尽管大鼠似乎只表达一种3α-HSD亚型,但人脑中却含有该酶的几种亚型,包括我们从人胎脑中克隆的一种新亚型。我们的结果表明,SSRIs氟西汀,舍曲林和帕罗西汀可将人3α-HSDIII型5α-二氢孕酮转化为Allopregnanolone的Km降低10至30倍。仅舍曲林抑制逆氧化反应。 SSRIs还影响了由3α-HSDIIBrain介导的雄激素向3α和3α,17β还原或氧化的雄激素的转化。另一种抗抑郁药丙咪嗪对去甲四氢萘酮或雄甾烷二醇的生产没有任何影响。 3α-HSDIIBrain型和3α-HSDIII型mRNA的区域特异性表达表明SSRIs将以区域特异性方式影响类固醇的产生。因此,我们的结果可能有助于解释这些SSRI可以快速缓解与晚期黄体期烦躁不安和主要单相抑郁相关的焦虑和烦躁不安。

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