首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Regulation of neurosteroid allopregnanolone biosynthesis in the rat spinal cord by glycine and the alkaloidal analogs strychnine and gelsemine.
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Regulation of neurosteroid allopregnanolone biosynthesis in the rat spinal cord by glycine and the alkaloidal analogs strychnine and gelsemine.

机译:甘氨酸及生物碱类似物士的宁和明胶对大鼠脊髓中神经甾体异四氢萘酮的生物合成的调节。

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The neurosteroid allopregnanolone (3alpha,5alpha-THP) is well characterized as a potentially therapeutic molecule which exerts important neurobiological actions including neuroprotective, antidepressant, anxiolytic, anesthetic and analgesic effects. We have recently observed that neurons and glial cells of the rat spinal cord (SC) contain various key steroidogenic enzymes such as 5alpha-reductase and 3alpha-hydroxysteroid oxido-reductase which are crucial for 3alpha,5alpha-THP biosynthesis. Furthermore, we demonstrated that the rat SC actively produces 3alpha,5alpha-THP. As the key factors regulating neurosteroid production by nerve cells are unknown and because glycine is one of the pivotal inhibitory neurotransmitters in the SC, we investigated glycine effects on 3alpha,5alpha-THP biosynthesis in the rat SC. Glycine markedly stimulated [(3)H]-progesterone conversion into [(3)H]3alpha,5alpha-THP by SC slices. The alkaloid strychnine, well-known as a glycine receptor (Gly-R) antagonist, blocked glycinestimulatory effect on 3alpha,5alpha-THP formation. Gelsemine, another alkaloid containing the same functional groups as strychnine, increased 3alpha,5alpha-THP synthesis. The stimulatory effects of glycine and gelsemine on 3alpha,5alpha-THP production were additive when the two drugs were combined. These results demonstrate that glycine and gelsemine, acting via Gly-R, upregulate 3alpha,5alpha-THP biosynthesis in the SC. The data also revealed a structure-activity relationship of the analogs strychnine and gelsemine on neurosteroidogenesis. Possibilities are opened for glycinergic agents and gelsemine utilization to stimulate selectively 3alpha,5alpha-THP biosynthetic pathways in diseases evoked by a decreased neurosteroidogenic activity of nerve cells.
机译:神经类固醇allopregnanolone(3alpha,5alpha-THP)被很好地表征为一种潜在的治疗性分子,它发挥重要的神经生物学作用,包括神经保护,抗抑郁,抗焦虑,麻醉和镇痛作用。我们最近观察到,大鼠脊髓(SC)的神经元和神经胶质细胞含有各种关键的类固醇生成酶,例如5α-还原酶和3α-羟基类固醇氧化还原酶,这些酶对于3α,5α-THP生物合成至关重要。此外,我们证明了大鼠SC主动产生3alpha,5alpha-THP。由于调节神经细胞产生类固醇的关键因素尚不清楚,并且由于甘氨酸是SC中关键的抑制性神经递质之一,因此我们研究了甘氨酸对大鼠SC中3alpha,5alpha-THP生物合成的影响。甘氨酸通过SC切片显着刺激[[(3)H]-孕酮转化为[(3)H] 3alpha,5alpha-THP。著名的甘氨酸受体(Gly-R)拮抗剂生物碱士的宁阻止了甘氨酸对3alpha,5alpha-THP形成的刺激作用。 Gelsemine,另一种生物碱,含有与士的宁相同的官能团,可增加3alpha,5alpha-THP的合成。当两种药物联合使用时,甘氨酸和明胶对3alpha,5alpha-THP产生刺激作用。这些结果表明,甘氨酸和明胶通过Gly-R起作用,可上调SC中3alpha,5alpha-THP的生物合成。数据还揭示了类似的士的宁和明胶对神经甾体生成的构效关系。对于在神经细胞神经甾体生成活性降低引起的疾病中,甘氨酸能药物和明胶可利用以选择性地刺激3α,5α-THP生物合成途径开放了可能性。

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