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Y Moon

Publications and source records attributed to Y Moon.

9 recordsLinked to original sources

Hormonal and nutritional control of the fatty acid synthase promoter in transgenic mice.

To study the molecular basis of tissue-specific and hormonally regulated expression of the fatty acid synthase (FAS) gene in vivo, we generated lines of transgenic mice carrying 2.1 kilobases of the 5'-flanking region (-2100 to +67) of the rat FAS gene fused to a chloramphenicol acetyltransferase (CAT) reporter gene. This reporter gene construct was strongly expressed in tissues that normally express high levels of FAS mRNA, which include liver and white adipose tissues. In contrast, CAT reporter activity was not detected in appreciable levels in lung, heart, kidney, and muscle tissues, which do not normally show significant levels of FAS activity. The relative levels of the CAT mRNA driven by the rat FAS promoter in various tissues of the transgenic animals approximated those of the endogenous mouse FAS mRNA. We also examined the hormonal and nutritional regulation of the FAS(2.1)-CAT reporter gene in transgenic mice. CAT activity was increased in both liver and white adipose tissue when fasted animals were refed a high carbohydrate, fat-free diet. These changes in CAT activity and CAT mRNA levels occurred in parallel to the changes in endogenous mouse FAS mRNA levels. On the other hand, fasting/refeeding did not change CAT activity appreciably in other tissues, such as muscle and brown adipose tissue. Administration of dibutyryl cAMP at the start of refeeding prevented an increase in CAT activity in liver. However, the cAMP effect was tissue-specific as cAMP treatment did not bring about change in CAT activity in adipose tissue. Next, to examine the effect of insulin, we made the transgenic mice insulin-deficient by streptozotocin treatment. Insulin treatment of the streptozotocin-diabetic mice increased both the CAT activity and CAT mRNA levels driven by the rat FAS promoter in liver and white adipose tissue. These changes in CAT expression by insulin paralleled those in endogenous FAS mRNA levels. Administration of glucocorticoids increased CAT activity in all tissues examined: liver, white and brown adipose tissues, lung, heart, and spleen. Overall, the first 2.1 kilobases of the 5'-flanking region of the rat FAS gene appear to contain sequence elements necessary to confer tissue-specific and hormonally regulated expression characteristic of the endogenous FAS gene.

Adipose Tissue

Nitrous oxide: sensory, motor, associative, and behavioral tolerance effects in classical conditioning of the rabbit nictitating membrane response.

Experiment 1, of a series of six experiments with the rabbit nictitating membrane response (NMR) preparation, revealed that nitrous oxide (0%, 33%, 67%) impaired acquisition of conditioned responses (CRs). Subsequent experiments indicated that nitrous oxide (N2O) had no reliable effects upon nonassociative processes (Experiment 2); impaired unconditioned response (UR) amplitude (Experiment 3); attenuated tone-conditioned stimulus (CS) intensity (Experiment 4); decremented tone-induced reflex modification of the unconditioned NMR (Experiment 5); and demonstrated no reliable evidence of behavioral tolerance (Experiment 6). It was concluded that N2O's impairment of CR acquisition was attributable to its attenuation of the intensity of tone CSs and shock USs and/or UR amplitude. These findings are consistent with the behavioral laws of conditioning: the attenuation of the intensive sensory properties of the CS and US and/or UR components of conditioning affect their ability to enter into the establishment of CS-CR connections and, therefore, the development of associative learning.

Acoustic Stimulation

Prostaglandin E and F concentration in the fimbria of the rabbit fallopian tube increases at the time of ovulation.

To see if the fimbrial concentrations of Prostaglandin E (PGE) and Prostaglandin F (PGF) change in the process of ovulation, these prostaglandins were measured in the fimbriae of one group of 18 doe rabbits using the specific radioimmunoassay; 13 rabbits were bred so as to induce ovulation and 5 rabbits were not bred. The PGE and PGF in the fimbriae of the 13 bred rabbits were 105.4 +/- 18.5 pg/mg of protein and 186 +/- 26.9 pg/mg protein, respectively. In the 5 control unbred animals, the fimbrial PGE and PGF concentrations were 39.6 +/- 5.9 pg/mg protein and 111 +/- 14.7 pg/mg protein, respectively (p less than 0.05). In an additional group of 8 rabbits (2 before ovulation and 6 after ovulation), it was found that the rise in the PGE and PGF concentration association with ovulation was maximal in fimbriae harvested immediately before ovulation (8 hours-8 hours 30 postcoitally) (p less than 0.001). These findings are consistent with the hypothesis that fimbrial PGE and PGF play a role in the process of ovum retrieval in the rabbit.

Animals