Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P01178 (oxytocin)
15,767 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Arginine vasopressin (AVP) and oxytocin (OXT) were measured simultaneously by radioimmunoassay in neurohypophyses of rats immediately before birth (fetal day 22) onward to day 50 of life. The neurohypophysial content of AVP exceeded that of OXT by factor 17 at fetal day 22, by 20 immediately post natum, and by 2 at day 21 of life, respectively. As compared to day 0, the content at day 21 is considerably higher (AVP 24 fold, OXT 270 fold). The poor correlation between neurohypophysial AVP and OXT content suggests the possibility of a different onto-genetic development of both neuropeptide systems. Both AVP and OXT were detected in pooled rat plasma at various postnatal stages. Hypo- and hyperthyroidism induced experimentally during gestation did not result in a significant change in neuropeptide content of fetal neural lobes.
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PMID:Levels of vasopressin and oxytocin in neurohypophysis and plasma of the postnatally developing rat and the influence of hypothyroidism on rat fetuses. 654 Jun 95

The osmolarity of body fluid is strictly controlled through the action of diuretic hormones, which are secreted in the hypothalamus. In the mammalian brain, ubiquitin-like 5 (UBL5) is expressed in oxytocin- and vasopressin-positive neurons in the hypothalamus, and these neurons play a role in regulating osmolarity. We examined the dynamics of UBL5 levels in response to hyper- or hypo-osmotic conditions. Hypo-osmotic conditions led to significantly reduced levels of UBL5 both in brain slices from the hypothalamus and in NIH-3T3 cells. This decrease in UBL5 was transcription-independent and proteasome-dependent. Time-course immunocytochemical studies using exogenous UBL5 revealed that the protein was exported from the nucleus under hypo-osmotic conditions and decreased in a proteasome-dependent manner. This report is the first to describe changes in the intracellular and subcellular localization of UBL5 in response to hypo-osmotic conditions. Our results imply osmoregulation of UBL5.
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PMID:Hypo-osmotic shock induces nuclear export and proteasome-dependent decrease of UBL5. 1702 61