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SELENIUM AND GLUTATHIONE PEROXIDASE IN DEVELOPING RAT BRAIN1
Authors:J R Prohaska  H E Ganther
Abstract:Abstract– Week-old rats were given a subcutaneous injection of carrier-free Na275SeO3 and brain 75Se distribution was studied after 30 days, with special reference to the selenoprotein, glutathione peroxidase (GSH-Px). Chemical fractionation studies showed the 75Se was associated mainly with protein and not extracted by hot trichloroacetic acid or chloroform-methanol. Subcellular fractions also revealed a parallel distribution of 75Se and protein with the notable exception that 75Se was concentrated in the mitochondria and reduced in the cytosol. GSH-Px activity was demonstrated in the isolated mitochondrial fraction. The estimated biological half-life of brain 75Se was 45 days. Gel filtration (Sephadex G-150) of brain cytosol resulted in four 75Se peaks: peak 1 was associated with the void volume, and had the greatest 75Se content; peak 2 (Ve/Vo= 1.4) contained nearly as much 75Se and had an apparent molecular weight of 94,000; peak 3 (Ve/V0= 2.4) had an apparent molecular weight of 13,500 and was markedly increased when brain was homogenized in the presence of Triton X-100; peak 4 consisted of low molecular weight compounds. When fresh cytosol (with or without Triton X-100) was chromatographed on Sephadex G-150, GSH-Px was detectable only in the void volume; however, storage of cytosol prepared in the presence of Triton X-100 shifted most of the activity to peak 2 (94,000). The GSH-Px activity in the void volume resembled the purified enzyme with regard to pH dependence, Km for cumene hydroperoxide at fixed GSH], and first-order kinetic behavior with respect to GSH. A minor peak of GSH-Px activity showing zero-order kinetics with respect to GSH concentration and an apparent molecular weight of 46,000 was detected when larger amounts of protein were chromatographed. The concentration of rat brain Se measured by chemical analysis reached adult levels by 2 weeks after birth, an age when the level of GSH-Px had just begun to rise. It was estimated that only 1/5 of the total brain Se may be accounted for by its presence in GSH-Px, suggesting that the function of the majority of brain Se remains to be determined.
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