Kazuyoshi Tsutsui, Shogo Haraguchi, Masahiro Matsunaga, Teppei Koyama, Jean-Luc Do Rego, Hubert Vaudry
Index: Gen. Comp. Endocrinol. 176(3) , 440-7, (2012)
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Seasonally-breeding amphibians have served as excellent animal models to investigate the biosynthesis and biological actions of neurosteroids. Previous studies have demonstrated that the brain of amphibians possesses key steroidogenic enzymes and produces pregnenolone, a precursor of steroid hormones, and other various neurosteroids. We recently found that the brain of seasonally-breeding newts actively produces 7α-hydroxypregnenolone, a previously undescribed amphibian neurosteroid. This novel amphibian neurosteroid acts as a neuronal modulator to stimulate locomotor activity in newts. Subsequently, the mode of action of 7α-hydroxypregnenolone has been demonstrated in the newt brain. 7α-Hydroxypregnenolone stimulates locomotor activity through activation of the dopaminergic system. To understand the functional significance of 7α-hydroxypregnenolone in the regulation of locomotor activity, diurnal and seasonal changes in synthesis of 7α-hydroxypregnenolone have also been demonstrated in the newt brain. Melatonin derived from the pineal gland and eyes regulates 7α-hydroxypregnenolone synthesis in the brain, thus inducing diurnal locomotor changes. Prolactin, an adenohypophyseal hormone, regulates 7α-hydroxypregnenolone synthesis in the brain, and also induces seasonal locomotor changes. In addition, 7α-hydroxypregnenolone mediates corticosterone action to increase locomotor activity under stress. This review summarizes the discovery, progress and prospect of 7α-hydroxypregnenolone, a new key regulator of amphibian locomotion.Copyright © 2011 Elsevier Inc. All rights reserved.
Structure | Name/CAS No. | Molecular Formula | Articles |
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17a-Hydroxypregnenolone
CAS:387-79-1 |
C21H32O3 |
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[The alternative androgen synthesis pathway in humans].
2013-01-01 [Klin. Padiatr. 225(1) , 3-7, (2013)] |
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