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Biomedical subjects

W A Gahl

Publications and source records attributed to W A Gahl.

5 recordsLinked to original sources

Putrescine-oxidase activity in adult bovine serum and fetal bovine serum.

Putrescine-oxidase activity was found in fetal bovine serum (FBS) with a pH optimum of 8.0 and in adult bovine serum (ABS) with a pH optimum of 9.8. The crude FBS enzyme had a KM for putrescine of 2.58 x 10(-6) M and a Vmax of 0.53 nmol per hr per 50 microliter serum. Aminoguanidine competitively inhibited the enzyme with a KI of 1.8 x 10(-8) M. Spermidine and spermine proved competitive inhibitors of putrescine for both the FBS and the crude ABS putrescine oxidases. The Vmax for the ABS putrescine oxidase was 2.10 nmol per hr per 50 microliter serum, and the KM for putrescine, 50.3 x 10(-6) M. The K1 of the ABS putrescine oxidase for aminoguanidine was 41 x 10(-6) M. On the basis of both the KM and KI values, the adult serum enzyme, at its optimal pH of 9.8, bound spermidine and spermine more avidly than the smaller putrescine and aminoguanidine; whereas the FBS enzyme, at pH 8.0, bound aminoguanidine and putrescine more tightly than the larger polyamines. Each of the enzymes retained over 80% of its activity after heating at 56 degrees C for 30 min. Applications of these data to the study of polyamines in tissue culture and to the purification of diamine oxidases are discussed.

Animals

Reversal by aminoguanidine of the inhibition of proliferation of human fibroblasts by spermidine and spermine.

The inhibitory effect of the polyamines, spermidine and spermine, on the proliferation of human fibroblasts in culture was found to be reversed by the addition of aminoguanidine (AM), a specific and highly effective inhibitor of diamine oxidase (DAO) present in fetal calf serum (FCS). Aminoguanidine itself in concentration as high as 10(-3) M exhibited no effect upon cell proliferation nor did putrescine at similar concentrations. However, at higher concentrations of putrescine, cell proliferation was inhibited and this inhibition was unaffected by the addition of mM concentrations of AM. These studies support earlier hypotheses on the mechanisms of the toxic effects of polyamines on cell proliferation and establish further that the diamine oxidase-catalyzed metabolism of spermine and spermidine is necessary for their toxic effects in cell culture.

Amine Oxidase (Copper-Containing)

The effect of spermidine and spermine on proliferation in vitro of fibroblasts from normal and cystic fibrosis patients.

The effects of spermidine and spermine at varying concentrations upon the replicative ability of human fibroblasts in cell culture have been studied. The average concentrations of spermidine causing a 50% inhibition of prolifertion (ID50) after 3 days of growth for three normal cell strains and three strains derived from patients with cystic fibrosis (CF) were 4.4 X 10(-6) +/- 1.2 M and 6.2 X 10(-6) +/- 2.1 M, respectively. The values for spermine were 2.0 X 10(-6) +/- 0.5 M for normal and 2.2 X 10(-6) +/- 0.1 M for fibroblasts from cystic fibrosis patients. No significant difference between the replicative ability of normal and CF cell strains was seen over a wide range of polyamine concentrations employed for a period of up to 3 days.

Cell Division