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D F Rinder

Publications and source records attributed to D F Rinder.

3 recordsLinked to original sources

Intrarenal angiotensin I conversion at normal and reduced renal blood flow in the dog.

Intrarenal conversion of angiotensin I (ANG I) to angiotensin II (ANG II) under conditions of normal and reduced renal blood flow (RBF) elicited by constriction of the renal artery was examined in pentobarbital-anesthetized dogs. In eight animals, tracer doses of 125I-ANG I (5-12 pmol) were injected into the renal artery and 125I-ANG I, 125I-ANG II, and 125I-labeled metabolites were measured in renal venous effluent by high-voltage paper electrophoresis. The mean conversion of ANG I to ANG II during a single passage through the kidney was 21.8 +/- 2.1% at control RBF. When RBF was decreased by 25 and 53%, percent ANG I conversion was not altered significantly. In six dogs percent conversion of 125I-[Sar1, Ile5]ANG I, an ANG I analogue refractory to hydrolysis by aminopeptidases, was 18.1 +/- 1.7% at control RBF and did not change significantly when the RBF was reduced by 55%. Although there were severalfold increases in renal renin secretion rate and net ANG I generation rate during reduced RBF, net renal ANG II formation rate did not change significantly. These data indicate that there is substantial conversion of ANG I in a single passage through the dog kidney and that intrarenal ANG I conversion is independent of RBF even under conditions in which renin secretion rate and ANG I generation rate are increased severalfold.

Angiotensin I↗

Thiocyanate utilization by an Arthrobacter.

An Arthrobacter species, which utilized thiocyanate (SCN-) as a nitrogen source, was isolated from soil by the enrichment culture method. The organism tolerated SCN- concentrations up to 0.1 M. On addition of nitrate or ammonium ion to cultures of the isolate growing in the presence of SCN-, the organism continued to degrade SCN-. Degradation could be followed by release of 14CO2 from SCN-(14C). The SCN- -degrading activity diminished to low levels as the stationary phase of growth was appraoched.

Arthrobacter↗