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    Tissue metabolism and enzyme activities in the rodent Heterocephalus glaber, a poor temperature regulator.

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    Date
    1977
    Author
    Gesser, H
    Johansen, K
    Maloiy, GMO
    Type
    Article
    Language
    en
    Metadata
    Show full item record

    Abstract
    1. Tissue oxygen uptake and enzyme activities were investigated in the naked mole rat, Heterocephalus glaber, a mammal notable for its low body temperature and metabolism and poor temperature regulating ability. 2. Q10 for O2 uptake of Heterocephalus crude liver homogenates ranged from 1.91 for the temperature interval 25-30 degrees C to 1.76 within the range 30-38 degrees C, values similar to those reported for typical homoiotherms. 3. Km pyruvate of lactate dehydrogenase in heart muscle had the same temperature dependence in the mole rat and mouse. 4. O2 uptake and cytochrome oxidase activity of skeletal muscle were higher for mole rat than mouse. The reverse was true for heart muscle. Brain and liver O2 uptake showed similar values for both species, while kidney O2 uptake was highest in the mouse. 5. Pyruvate kinase activity in heart and skeletal muscle was higher in mouse than mole rat, suggesting a greater reliance on glycolysis in the former. 6. Na+, K+ -ATPase activity of liver and kidney was 60% higher in mouse than mole rat, while brain was 30% higher in mouse. 7. The results indicate that the effects of temperature on tissue metabolism in the mole rat conform to those in typical homoiotherms. The low body temperature and O2 uptake in the mole rat find no expression in the tissue respiratory capacity.
    URI
    http://www.sciencedirect.com/science/article/pii/0305049177900566
    http://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/23737
    Citation
    Comparative biochemistry and physiology. B. 1977;57(4):293-6.
    Publisher
    Department of Veterinary Anatomy and Physiology, University of Nairobi
    Subject
    Tissue metabolism
    Enzyme
    Rodent Heterocephalus glaber
    Temperature regulator
    Description
    Journal article
    Collections
    • Faculty of Agriculture & Veterinary Medicine (FAg / FVM) [5481]

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