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Biomedical subjects

G Griesmann

Publications and source records attributed to G Griesmann.

5 recordsLinked to original sources

Polyamine metabolism in McCoy cells: I. Comparative studies of extracellular polyamine conjugated proteins of human fibroblast and McCoy cultures.

polyamine conjugated proteins were identified in culture medium from both human skin fibroblasts and transformed mouse cells (McCoy cells). Sephadex G-100 column chromatography of medium allowed identification of two polyamine conjugated proteins from both types of cell cultures; one with Mr greater than 100,000 (MP1) and one with Mr = 60,000-70,000 (MP2). Human skin fibroblast MP1 contained putrescine and spermidine while MP1 from McCoy cultures contained putrescine, spermidine and spermine. MP2 isolated from both cultures contained all three polyamines. The relative concentration of polyamines in MP1 and MP2 for human fibroblasts and McCoy cells were different. The spermidine and spermine associated with MP1 and MP2 of McCoy cultures was covalently bound while for putrescine only 70.5% in MP1 and MP2 of McCoy cultures was covalently bound while for putrescine only 70.5% in MP1 and 74.5% in MP2 was covalently bound. The covalent nature of the polyamine protein conjugation was confirmed by autoradiography following isogel agarose isoelectric focusing. MP2 was resolved into three radiolabeled proteins with pI's between 5.25 and 5.20. Both MP1 and MP2 of McCoy cultures were heterogeneous. MP1 consisted of at least five proteins with Mr's of 180,000, 38,000, 76,000 and 68,000. The major protein (or proteins) had a pI of 5.25. MP2 consisted of at least three proteins with Mr's 72,000, 68,000 and 62,000; their pI's were between 5.20 and 5.25.

Cells, Cultured

Polyamine metabolism in McCoy cells: III. Comparative studies of the metabolic fate of exogenous putrescine in human fibroblasts and McCoy cultures.

The fate of exogenously added 14C-putrescine following incubation for 24 hours with McCoy and human skin fibroblast cultures was examined. The nature of the polyamine derivatives found were quite different indicative of a difference in the cellular metabolism of polyamines. Exogenously added putrescine (PUT) was metabolized by both McCoy and human skin fibroblast cultures to form spermidine (SPD), spermine (SPM), gamma-aminobutyric acid (GABA) and some unidentified compounds. Within the experimental period of observation, human cultured fibroblasts metabolized PUT more efficiently than McCoy cells and converted more than 50% of it into SPD, SPM, GABA and unknown compounds. Monoacetyl putrescine (MAP) was formed by human skin fibroblasts. It was mainly identified in the culture medium. No MAP was detectable either intracellularly or extracellularly in McCoy cultures. The percentage of 14C-radioactivity found as PUT in the culture medium was greater in McCoy cells (86.0%) than in human fibroblasts (53.9%). The reverse was true for the percentage distribution of 14C-radioactivity as PUT inside the cells. No low Mr conjugates of SPD or SPM were found in the medium or intracellularly with either culture type. Some low Mr putrescine conjugates were found in the culture media; these were identified by the liberation of PUT upon acid hydrolysis.

Cell Compartmentation

On the formation of amino acids deriving from spermidine and spermine.

Evidence obtained from experiments with rats and mice is presented suggesting that the naturally occurring amino acids putreanine and N8-(2-carboxyethyl)spermidine, and most probably also related compounds deriving from the polyamines spermidine and spermine by oxidative metabolism, are formed within two anatomical compartments. In the first step polyamines are converted into aldehydes by serum spermine oxidase in the circulation. A certain portion of these aldehydes can be taken up by liver and other organs and transformed by aldehyde dehydrogenase into the corresponding amino acids. Putreanine is not only derived from spermidine, but can also be formed from N8-(2-carboxyethyl)spermidine by oxidative deamination, catalysed by serum spermine oxidase, and subsequent spontaneous elimination of acrolein.

Amino Acids

Polyamine metabolism in Menkes kinky hair disease.

Clinical investigations of the urinary excretion of putrescine and the polyamines spermidine and spermine in a patient with Menkes kinky hair disease are reported. This disorder, characterized by intra- and extracellular copper deficiency, is associated with significant depression of diamine oxidase and monoamine oxidase activity. Urinary excretion of diamine and polyamines, monitored over a 2-month interval in a 4-month old patient with Menkes kinky hair disease, documented a 3- to 10-fold increase in the excretion of free putrescine, spermidine and spermine as well as the conjugated derivatives of putrescine and spermidine. These observations suggest that abnormalities in diamine and polyamine concentration occur in disease states in which the metabolic transformation of these compounds is impaired.

Amine Oxidase (Copper-Containing)

Polyamine-peptide conjugates: proposed functions.

Six polyamine-conjugated proteins were identified in human amniotic fluid. Three contained covalently bound spermine, one contained covalently bound spermidine, and two contained covalently bound putrescine. All were characterized by high content of serine, glycine, glutamate, and aspartate. Polyamination of proteins may participate in mechanisms for (1) polyamine specificity in cell growth; (2) cell surface attachment of polyamines; (3) transport of polyamines; (4) endocytosis and other cellular uptake processes; and (5) signaling protein degradation.

Amino Acids