• Title of article

    αMUPA mice: a transgenic model for increased life spansmall star, filled

  • Author/Authors

    Ruth Miskina، نويسنده , , Tamar Masos، نويسنده , , Shlomo Yahav، نويسنده , , Dimitri Shinder، نويسنده , , Amiela Globerson، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1999
  • Pages
    10
  • From page
    555
  • To page
    564
  • Abstract
    αMUPA is a line of transgenic mice that, compared with their wild type (WT) counterparts, spontaneously eat less (not, vert, similar20%) and live longer (average not, vert, similar20%), thus resembling dietary-restricted (DR) mice. Here, we show that body temperature was significantly reduced in αMUPA compared with WT throughout a wide range of ages. Plasma corticosterone was significantly higher in young αMUPA compared to young WT; however, it significantly declined in aged αMUPA, but not in aged WT. In addition, age-associated thymus involution occurred in αMUPA as it did in WT. Thus αMUPA mice appear to largely resemble, but also to somewhat differ from diet-restricted animals. We also report on four new transgenic lines that, like αMUPA, produced in the brain the mRNA that encodes the extracellular protease urokinase (uPA); however, transgenic uPA expression was most extensive and widespread in the αMUPA brain, where it also occurred in the hypothalamus. αMUPA was also the only line that ate less, but also showed another characteristic, high frequency leg muscle tremor seen only at unstable body states. We hypothesize that transgenic uPA in the brain could have caused the αMUPA phenotypic alterations. Thus αMUPA offers a unique transgenic model of inherently reduced eating to investigate the homeostatic state of delayed aging at the systemic and single-cell levels.
  • Keywords
    Body temperature , Dietary restriction , uPA , urokinase-type plasminogen activator , Hypothalamus , Corticosterone , Muscletremor , aMUPA transgenic mice , longevity
  • Journal title
    Neurobiology of Aging
  • Serial Year
    1999
  • Journal title
    Neurobiology of Aging
  • Record number

    819864