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Biomedical subjects

S Paredez

Publications and source records attributed to S Paredez.

3 recordsLinked to original sources

Effects of light and an alpha-2-adrenergic agonist on serotonin N-acetyltransferase activity in chick pineal gland.

Pineal serotonin N-acetyltransferase (NAT) is the enzyme that catalyzes the production of N-acetylserotonin from serotonin and is the rate limiting step in the biosynthesis of melatonin in the chick pineal gland. Chick pineal NAT activity is decreased by light and by noradrenergic agents that act at the alpha-2-adrenergic receptor. Light-induced inhibition of nocturnal NAT activity can be demonstrated by exposing 4-day-old chicks to light, or by exposing pineal gland explants cultured in vitro either to light or to UK 14,304 (an alpha-2-adrenergic agonist). The inhibition by either light or UK 14,304 is preceded by a transient, but consistent rise in NAT activity. The paradoxical, transient light-induced rise in enzyme activity is mimicked by UK 14,304 which suggests a similarity in mechanisms of light and adrenergic signal transduction associated with the regulation of NAT activity.

Adrenergic alpha-Agonists

Ontogeny of light-induced decrease of N-acetyltransferase activity in explanted chick pineal glands.

The ontogeny of chick pineal serotonin N-acetyltransferase (NAT) activity was investigated in explanted chick pineal glands at 4, 10 and 21 d of age. Nocturnal levels of the enzyme and the response of the enzyme to light exposure were determined in pineal glands maintained in short-term culture at each age. The results indicate that nocturnal NAT activity was increased in the glands from older birds. Nocturnal levels of NAT activity at the time of the initiation of the experiment were threefold greater in glands from 21-d-old birds as compared to that in glands from 4-day-old chicks. The response to light was similar in all three ages examined; light induced a significant decrease in NAT activity within 60 min in explanted glands from 4-d-old chicks and within 180 min in the glands from the 10- and 21-d-old chicks. A paradoxical transient increase in enzyme activity occurred immediately (within 5 min) following light exposure which was significant in the glands from the youngest chicks, and present, but more variable, in the older chicks. These data indicate that the nocturnal enzyme activity is greater in glands from older birds, but that light exposure of explanted glands initiates a transient rise followed by a decrease in NAT activity at all three ages.

Acetyltransferases

Reduced sensitivity of hypothalamic-preoptic area norepinephrine and dopamine to testosterone feedback in adult fetal ethanol-exposed male rats.

Endocrine feedback of testosterone (T) in regulation of the hypothalamus is via the effects of T on the noradrenergic system. The current experiment was performed to determine the effects of fetal ethanol exposure (FEE) on the norepinephrine (NE) and dopamine (DA) content in the hypothalamic-preoptic area (HPOA) of adult male rats, and the response of NE and DA to T administration. Pregnant rats were exposed to diets containing either a liquid diet containing ethanol, a liquid diet containing sucrose isocalorically substituted for ethanol, or a chow and water diet. Male offspring were castrated or sham-operated at 45 days of age. The animals received either testosterone propionate (TP) or an oil vehicle. HPOA was collected at 55 days of age from each animal and NE and DA content was measured by HPLC-EC. There was no significant alteration of NE or DA content in the HPOA in FEE animals compared to catecholamine levels in animals derived from dams on the control diets. Castration had no significant effect on NE and DA content in the chow-fed or pair-fed animals. TP administration significantly reduced NE content only in the chow- and pair-fed animals but not in the FEE animals. DA content in the HPOA was not affected by castration, but TP administration also resulted in significantly reducing DA content in chow- and pair-fed castrate male rats but not in FEE castrate male rats. The results indicate that FEE alters the response of the noradrenergic and dopaminergic neurons in the HPOA to T administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals