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Developmental variation in copper,zinc and metallothionein mRNA in brindled mutant and nutritionally copper deficient mice
Authors:Julian FB Mercer  Trevor Stevenson  Samantha A Wake  Georgia Mitropoulos  James Camakaris  David M Danks
Institution:1. The Scobie and Claire Mackinnon Trace Element Laboratory, Murdoch Institute for Research into Birth Defects, Parkville, Victoria Australia;2. Department of Applied Biology, Royal Melbourne Institute of Technology, Melbourne, Victoria Australia;3. Department of Genetics, University of Melbourne, Parkville, Victoria Australia
Abstract:The concentrations of copper, zinc and metallothionein-I (MT-I) mRNA were determined in the liver, kidney and brain of the brindled mutant mouse from birth until the time of death. Despite accumulation of copper in the kidney of the mutant, MT-I mRNA concentrations were normal. There was no difference between the MT-I mRNA in the brain of mutant and normal in the first 10 days of life, but after day 10 metallothionein mRNA levels were increased in the mutant. The concentration of copper was very low in the liver of the mutant, and on day 6 after birth the metallothionein mRNA was also reduced by about 50%. This reduction was not seen in copper-deficient 6-day-old pups, despite very low hepatic copper levels. This suggests that the lower hepatic MT-I mRNA in the day 6 brindled mouse was not simply due to the reduction in hepatic copper and also that hepatic copper is not regulating metallothionein gene expression the liver of neonatal mice. After day 12 hepatic MT-I mRNA levels were elevated in mutant and in copper deficient mice, both of which die at 14 to 16 days. These increases and the increase in brain MT-I mRNA in older mutant mice are likely to be caused by stress. Overall the results support the conclusions that the brindled mutation does not cause a constitutive activation of the metallothionein genes, and that the differences in metallothionein mRNA between mutant and normal are most probably secondary consequences of the mutation.
Keywords:Developmental variation  Metallothionein mRNA  Heavy metal  (Mouse)
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