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Biomedical subjects

F B Rudolph

Publications and source records attributed to F B Rudolph.

At least 19 recordsLinked to original sources

Immunohemopoietic effects of dietary nucleotide restriction in mice.

The influence of dietary sources of nucleotides on host in vivo and in vitro immuno-hematologic responses in BALB/c (NCI) mice was studied. Adenosine deaminase (ADA) and purine nucleoside phosphorylase (PNP) were measured in popliteal lymph nodes undergoing proliferative response to syngeneic and allogeneic in vivo stimulation. Supplementation of a nucleotide-free (NF) diet with yeast RNA (NFR) or uracil (NFU) significantly enhanced the host PLN immune response as compared with NF and NF supplemented with adenine (NFA) diets. Levels of ADA and PNP enzymes in the PLNs increased with the alloimmune PLN response of host, and immunosuppression was associated with decreased ADA and PNP activities in lymphocytes following antigenic stimulation. The induction of these enzymes during immune response appears to require dietary sources of certain nucleotides. When bone marrow cells from control chow fed animals were cultured with supernatants (sups) from mitogen activated splenocytes of animals on each dietary group, NF sups significantly decreased (P less than 0.05) the BM proliferative response compared with the response observed with NFR sups, and similar to NFA or NFU sups. When stimulated with purified IL-3, NFR BM cells had higher levels of Thy1.2 or Lyt 1 surface markers as compared with other test groups. In the in vivo splenic colony formation-CFUs assay, spleens from NFR- and NFU-fed animals had a significantly higher number of colonies than spleens from NF- or NFA-fed mice. Thus, NF diet decreases both in vivo lymphoproliferation response to alloantigen and hemopoietic growth factor production, rendering the host splenic environment deficient for stem cell growth. These adverse effects are reversed by RNA supplementation of NF diet. These nutritional studies demonstrate a critical and regulatory role for dietary nucleotides in immunohemopoiesis.

Adenosine Deaminase

Effect of anthraquinone dyes and evaluation of the kinetic mechanism of yeast phosphoglycerate kinase.

Cibacron Blue 3G-A (CB3G-A, I) was investigated as a ternary complex analogue of lactate dehydrogenase and phosphoglycerate kinase as had been suggested earlier (Stellwagen, E. (1977) Accts. Chem. Res. 10, 92-98). CB3G-A and Procion Brilliant Blue (PBB, II), a structural isomer of the Cibacron dye without the sulfonated benzoyl moiety, were attached covalently to Sepharose CL-6B. The two enzymes were adsorbed to the columns and then eluted by substrates in various combinations. CB3G-A and PBB interact similarly with the two enzymes in spite of the structural differences between the dyes indicating that the specific structure of CB3G-A is not a ternary complex analogue. Inhibition studies of phosphoglycerate kinase by CB3G-A suggest that 2 molecules of dye bind per monomer and are consistent with multiple substrate binding sites. It is suggested that the kinetic mechanism of phosphoglycerate kinase is best described as steady state random.

Anthraquinones

Biosynthesis of the pyrimidine moiety of thiamin in Escherichia coli: incorporation of stable isotope-labeled glycines.

Methods are described for the cleavage, extraction, and subsequent gas chromatographic-mass spectrometric analysis of the pyrimidine moiety of thiamin as 2-methyl-4-amino-5-[(ethylthio)methyl]pyrimidine. The methods are of a general nature and can be applied to any system. Using these methods to evaluate the incorporation of 13C-, 15N-, and 2H-labeled glycines into the pyrimidine moiety of thiamin by Escherichia coli, we established that the nitrogen and carbon atoms of glycine are incorporated as a unit into the pyrimidine. 13C- and 15N-labeled glycines are incorporated at greater than 60% but deuterium from [2-(2)H2]glycine was incorporated at only 18%. A detailed analysis of the mass fragmentation pattern of the pyrimidine derivative has established that the glycine nitrogen atom supplies the N-1 of the pyrimidine and that the C-1 and C-2 of the glycine supplies the C-4 and C-6 of the pyrimidine, respectively. This evidence is consistent with the substitution of a C2 unit between the C-5 and C-4 of the 4-aminoimidazole ribonucleotide precursor during the biosynthesis of the pyrimidine moiety of thiamin in E. coli.

Carbon Isotopes

Purine biosynthesis in Helix aspersa: metabolic fate of labelled precursors.

1. The hepatopancreas of terrestial snails actively synthesizes purines from labelled formic acid. 2. The guanine nucleotides are initially labelled to the highest specific activity followed by adenine and hypoxanthine. 3. The labelling patterns suggest that uric acid synthesis is the primary catabolic process for nitrogen excretion while guanine excretion is due to an inability to reutilize the base.

Animals

Effect of CrATP on the association of the reacting forms of yeast hexokinase.

Reacting enzyme sedimentation studies have been performed with yeast hexokinase isozymes A and B in the presence and absence of chromium ATP at pH 6.75. Preincubation of either isozyme with CrATP causes a shift in the monomer-dimer equilibrium toward the monomeric form. The results are consistent with the observed increase in inhibition caused by CrATP (Danenberg, K.D., and Cleland, W.W. (1975) Biochemistry 14, 28-39) being due to a conformational change in the protein which causes a decrease in the association constant for the monomer.

Adenosine Triphosphate

The catalytic activity of monomeric yeast hexokinase A.

It has been suggested [Williams, D.C. & Jones, J.G. (1976) Biochem. J. 155, 661-667] that monomeric hexokinase isoenzyme A is not catalytically active. We here present data from reacting-enzyme sedimentation, dissociation experiments and from previous studies which are consistent with the monomeric form possessing catalytic activity.

Catalysis

Regulation of purine metabolism: a comparative study of the kinetic properties of adenylosuccinate synthetases from various sources.

1. Adenylosuccinate synthetase has been partially purified from rat liver, fetal rat liver, Novikoff ascites cells, Walker carcinoma 256 solid tumors, chicken liver and muscle, rabbit muscle and pig brain. 2. Considerable differences exist in Michaelis constants among the various species and the changes possibly reflect differences in regulation. 3. The kinetic properties of the enzyme are generally consistent with proposed metabolic roles in various tissues.

Adenylosuccinate Synthase