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Biomedical subjects

B Friedrich

Publications and source records attributed to B Friedrich.

At least 163 records · Page 9Linked to original sources

Regulation of Chorismate mutase-prephenate dehydratase and prephenate dehydrogenase from alcaligenes eutrophus.

Highly purified enzymes from Alcaligenes eutrophus H 16 were used for kinetic studies. Chorismate mutase was feedback inhibited by phenylalanine. In the absence of the inhibitor, the double-reciprocal plot was linear, yielding a Km for chorismate of 0.2 mM. When phenylalanine was present, a pronounced deviation from the Michaelis-Menten hyperbola occurred. The Hill coefficient (n) was 1.7, and Hill plots of velocity versus inhibitor concentrations resulted in a value of n' = 2.3, indicating positive cooperativity. Chorismate mutase was also inhibited by prephenate, which caused downward double-reciprocal plots and a Hill coefficient of n = 0.7, evidence for negative cooperativity. The pH optimum of chorismate mutase ranged from 7.8 to 8.2; its temperature optimum was 47 C. Prephenate dehydratase was competitively inhibited by phenylalanine and activated by tyrosine. Tyrosine stimulated its activity up to 10-fold and decreased the Km for prephenate, which was 0.67 mM without effectors. Tryptophan inhibited the enzyme competitively. Its inhibition constant (Ki = 23 muM) was almost 10-fold higher than that determined for phenylalanine (Ki = 2.6 muM). The pH optimum of prephenate dehydratase was pH 5.7; the temperature optimum was 48 C. Prephenate dehydrogenase was feedback inhibited by tyrosine. Inhibition was competitive with prephenate (Ki = 0.06 mM) and noncompetitive with nicotinamide adenine dinucleotide. The enzyme was further subject to product inhibition by p-hydroxyphenylpyruvate (Ki = 0.13 mM). Its Km for prephenate was 0.045 mM, and that for nicotinamide adenine dinucleotide was 0.14 mM. The pH optimum ranged between 7.0 and 7.6; the temperature optimum was 38 C. It is shown how the sensitive regulation of the entire enzyme system leads to a well-balanced amino acid production.

Alcaligenes↗

[Ergometric findings depending on the severity and localization of coronary artery disease (author's transl)].

Ergometric and coronary angiographic findings were compared in 145 patients with proximal lesions of at least 50% of major coronary arteries. 75% of the patients had had a previous myocardial infarction. The following ergometric parameters occur most frequently in 3-vessel disease. (1) coronary insufficiency persisting after myocardial infarction, (2) ST-segment depression of at least 0.2 mV, (3) maximum exercise tolerance limited to less than 75 Watts. However, these parameters cannot predict 3-vessel disease with absolute certainty, nor can they exclude a single vessel disease. 3-vessel disease is not likely, if there is a maximum heart rate of 150 beats per minute or more. There were only slight differences between patients with 1-vessel disease and patients with 2-vessel disease. Patients who were limited at the 50 Watts level were found to have significant LAD disease, either alone or in combination with other vessels, with the exception of one patient.

Adult↗

[Hemodynamics at rest and during exercise depending on severity and localization of coronary artery disease (author's transl)].

Left ventricular filling pressure and cardiac output (C.O.) were studied at rest and during exercise in 145 patients with severe coronary artery disease, i.e. narrowing of at least one major coronary artery of greater than or equal to 50%. 95% of these patients had had a previous myocardial infarction. The most important findings are as follows: (1) Inappropriate C.O. at rest and during exercise indicates multiple vessel disease in most cases. (2) Marked increase of filling pressure during exercise indicates multiple vessel disease in most cases. (3) PCP during exercise is higher in patients with LAD disease (isolated or in combination with additional lesions), than in patients with RCA and/or left CX involvement.

Arteriosclerosis↗

Aromatic amino acid biosynthesis in Alcaligenes eutrophus H16. II. The isolation and characterization of mutants auxotrophic for phenylalanine and tyrosine.

1. Mutants derived from the hydrogen bacterium Alcaligenes eutrophus strain H 16 auxotrophic for phenylalanine and tyrosine were isolated employing mutagenic agents (EMS, nitrite), the colistine counterselection technique and the "pin-point" isolation method. Three different types of mutants were found: (1) Mutants, requiring phenylalanine or phenylpyruvate for growth, were affected in chorismate mutase as well as prephenate dehydratase. Both activities were regained by reversion to prototrophy. The auxotrophic strains accumulated chorismic acid. (2) Strains with a growth response similar to that of the first group lacked only prephenate dehydratase activity which was partially regained by reversion. Chorismate mutase and prephenate dehydrogenase were derepressed up to two-fold. Mutants grown in minimal medium excreted prephenic acid. (3) The third type of mutants required phenylalanine or phenylpyruvate and grew slowly when supplemented with chorismate or prephenate. The enzymes involved in the specific pathway of phenylalanine and tyrosine were found to be present. Some of them were even more active than in the wild-type. 2. Mutants accumulating chorismic acid or prepheric acid were able to grow on minimal medium when incubated long enough. The chemical instability of the excretion products resulted in their nonenzymatic conversion to subsequent intermediates which were taken up by the cells, allowing growth. 3. A method is described for preparing barium prephenate using the auxotrophic mutant 6B-1 derived from A.eutrophus H 16. Prephenic acid, excreted by this strain, was obtained from the culture filtrate with a purity of at least 70% and a yield of approximately 180 mg per 21 of medium.

Alcaligenes↗