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Sökning: WFRF:(Mannervik Bengt) > (1990-1999) > (1992) > Further characteriz...

Further characterization of hormonal regulation of glutathione transferase in rat liver and adrenal glands. Sex differences and demonstration that growth hormone regulates the hepatic levels

Staffas, Louise (författare)
Wallenberg Laboratory, Stockholm University, Sweden
Mankowitz, Louise (författare)
Wallenberg Laboratory, Stockholm University, Sweden
Söderström, Mats (författare)
Wallenberg Laboratory, Stockholm University, Sweden
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Blanck, Agneta (författare)
Huddinge University Hospital, Sweden
Porsch-Hällström, Inger (författare)
Huddinge University Hospital, Sweden
Sundberg, Carola (författare)
Wallenberg Laboratory, Stockholm University, Sweden
Mannervik, Bengt (författare)
Uppsala University, Sweden
Olin, Birgit (författare)
Uppsala University, Sweden
Rydström, Jan (författare)
Royal Institute of Technology, Stockholm, Sweden
DePierre, Joseph W (författare)
Wallenberg Laboratory, Stockholm University, Sweden
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 (creator_code:org_t)
Portland Press, 1992
1992
Engelska.
Ingår i: Biochemical Journal. - : Portland Press. - 0264-6021 .- 1470-8728. ; 286 ( Pt 1), s. 65-72
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Immunoblot experiments and reverse-phase h.p.l.c. were used to study the levels of glutathione transferase subunits 1, 2, 3, 4, 6, 7 and 8 in the liver and adrenal of intact and hypophysectomized male and female Sprague-Dawley rats. A sexual dimorphism in the levels of several of these isoenzymes and in their responses to hypophysectomy was demonstrated. In the liver of sham-operated females and males there are differences in glutathione transferase activities and isoenzyme pattern. H.p.l.c. analysis showed higher levels of subunits 1, 3 and 4 in male rats compared with females. In contrast with the pronounced sex differences in sham-operated rats, the isoenzyme patterns of hypophysectomized males and females were very similar. In the adrenal glands, however, a sexual dimorphism became apparent only after hypophysectomy, when the level of subunit 4 was increased 14-fold in the female, whereas the corresponding increase in the male rat was only 2.7-fold. The hepatic pattern of glutathione transferase subunits could be altered by continuous infusion of growth hormone to both sham-operated and hypophysectomized rats of both sexes. This treatment feminized the isoenzyme pattern in sham-operated males and a similar effect was obtained upon treating hypophysectomized rats with thyroxine, cortisone acetate and a continuous infusion of growth hormone.

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