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R H Hammerstedt

Publications and source records attributed to R H Hammerstedt.

16 recordsLinked to original sources

Mode of orthophosphate uptake and ATP labeling by mammalian cells.

Incubation of HeLa cells with [32P]orthophosphate results in more rapid labeling of the gamma-phosphorus of ATP than of the intracellular pool of orthophosphate. The specific radioactivity of ATP equals that of extracellular orthophosphate after 2 h of incubation. A similar pattern of labeling is seen with human erythrocytes when incubated at physiological concentrations of orthophosphate (2 mM) and pH 7.4-7.8. At lower pH, 6.8-7.2, the rate of orthophosphate uptake increases and exceeds the rate of labeling of ATP. These data are explained by the existence of a primary system for ATP uptake which involves the mediation of membrane-bound glyceraldehyde-3-phosphate dehydrogenase. Phosphate first enters the cell as 1,3-diphosphoglyceric acid, is then transferred to ATP, and then enters the intracellular orthophosphate pool. At lower pH monovalent orthophosphate also enters the erythrocyte by a process not involving glyceraldehyde-3-phosphate dehydrogenase.

Adenosine Diphosphate

Adenine nucleotide changes at initiation of bull sperm motility.

Testicular and cauda epididymal sperm were obtained via catheters previously implanted in the rete testis and proximal vas deferens of bulls and were used to examine the relationships among sperm motility, cyclic adenosine 3':5'-monophosphate (cAMP) level, adenine nucleotide levels, and rates of glucose and oxygen consumption. Testicular, cauda epididymal, and ejaculated sperm contain cAMP-stimulated protein kinase, adenylate cyclase, and nucleotide phosphodiesterase. Treatment of the nonmotile testicular sperm with phosphodiesterase inhibitors resulted in a doubling of cellular cAMP concentration and a 25% increase in their glucose consumption. No change in motility, ATP level, or rate of oxygen consumption was observed. Sperm in neat cauda epididymal semen had flagellating tails but no progressive motility. Dilution of these sperm into glucose-containing buffer resulted in an increase in intracellular cAMP concentration and a decrease in ATP level with concomitant increases in ADP and AMP levels. These biochemical changes occurred within 30 s after dilution and apparently preceded the initiation of progressive motility by most cells. Since sperm in neat cauda epididymal semen became progressively motile when diluted with neat cauda epididymal plasma as well as accessory sex gland fluid or buffer, composition of the fluid surrounding the sperm is not responsible for the initiation of progressive motility upon dilution nor does cauda epididymal plasma contain an inhibitory factor. Perhaps release from contact immobilization provides the stimulation for the initial acquisition of progressive motility by cauda epididymal sperm. We conclude that during epididymal passage sperm develop from a cell physically unresponsive to changes in cAMP concentration to a form which initiates progressive motility upon changes in cAMP concentration.

3',5'-Cyclic-AMP Phosphodiesterases

Adenosine triphosphate in milk.

Freshly secreted goat's milk contains a number of viable metabolic pathways including those for the synthesis of triglycerides and phospholipids. Toward understanding this matter, amounts of the fundamentally important energy substrate, adenosine triphosphate, in goat's milk were evaluated. Milk left in the goat udder overnight had less adenosine triphosphate (12.4 muM) than fresh secreted milk (37.6 muM). In similar experiments the skim milk derived from whole accumulating in the udder overnight was lower in adenosine triphosphate (14.2 muM) than skim milk from freshly secreted milk (26.0 muM). To determine changes in quantities of adenosine triphosphate after milking, milks were divided into two parts, one containing only milk and the other milk plus 2,4-dinitrophenol and sodium arsenate, inhibitors of oxidative and substrate level phosphorylation. Adenosine triphosphate in milk decreased during 4-h in vitro incubations, and the rate of decline was markedly greater in the presence of the inhibitors. Thus, freshly secreted goat's milk contains significant amounts of adenosine triphosphate, and more can be synthesized therein after removal from the udder. In limited samples human and bovine milks contained much lower concentrations of the compound than those in goat's milk.

Adenosine Diphosphate