Search PubMedSearch

Biomedical subjects

L S Grinna

Publications and source records attributed to L S Grinna.

9 recordsLinked to original sources

Glycoprotein biosynthesis. Rat liver microsomal glucosidases which process oligosaccharides.

Asparagine-linked oligosaccharides of glycoproteins undergo extensive modification or "processing" following their attachment to protein. A key step in post-glycosylation processing is the sequential removal of glucose residues from the protein-linked oligosaccharide. We have studied rat liver preparations which catalyze removal of glucose from Glc3Man9GlcNAc, Glc2Man9GlcNAc, and Glc1Man9GlcNAc. Detergent solubilization studies, inhibitor studies, and temperature-activity profiles indicate that at least two distinct glucosidases are present in the membranes. One of these glucosidases removes the distal glucose from Glc3Man9GlcNAc, and the other glucosidase sequentially removes glucose from Glc2Man9GlcNAc and Glc1Man9GlcNAc. The latter glucosidase has been solubilized from the microsomal memrbranes and purified 12-fold. The glucosidases, which are integral membrane proteins, are localized in the rough and smooth microsomes and appear to be located on the cisternal surface of the microsomal vesicles. These glucosidases are suggested to be of biological importance in catalyzing the initial events in the post-glycosylation processing of cellular glycoprotein.

Animals

Age-related alterations in membrane lipid and protein interactions: Arrhenius studies of microsomal glucose-6-phosphatase.

Arrhenius plots of glucose-6-phosphatase (EC 3.1.3.9) activity in liver microsomes from 6-month-old rats (young) showed discontinuities at 39, 30, 20 and 12 degrees C and change in activation energy at 20 degrees C. The enzyme activity in kidney microsomes of young rats showed essentially the same thermal discontinuities. In liver microsomes of 24-month-old rats (old) the enzyme showed discontinuities at 38, 30, 24 and 16 degrees C but not at 12 degrees C and the activation energy changed at 24 degrees C. In kidney microsomes of old rats discontinuities were seen at 38, 31, 22, 16 and 12 degrees C and the activation energy was constant from 0 to 41 degrees C. These results indicate that the interactions of membrane components are altered with age.

Aging

Changes in cell membranes during aging.

Age-related changes in the morphology and composition of mammalian membranes are reviewed. Certain age-related changes in the functional character of mammalian membranes are highlighted. The need for integrated studies of membrane changes during aging is discussed.

Aging

Effect of dietary alpha tocopherol on liver microsomes and mitochondria of aging rats.

Rats of three age groups were fed tocopherol deficient or supplemented diets for 16 weeks or until signs of tocopherol deficiency were apparent. Erythrocyte hemolysis and liver tocopherol content were used as measurements of the tocopherol status of the rats. The following measurements were made on liver microsomal and mitochondrial fractions of all three groups; phospholipid content, lipid peroxidation, fatty acid patterns, pigment fluorescence, ANS fluorescence and the activities of several membrane bound enzymes. Eleven week-old rats displayed signs of vitamin E deficiency after consuming the diet for 7 weeks. Forty-two-week-old rats displayed borderline deficiency signs after 16 weeks of consuming the diet whereas 67-week-old rats displayed no deficiency signs. The need for dietary tocopherol, therefore, appeared to decrease with increasing animal age. Age related alterations in membrane compositional and functional parameters were not modified by either tocopherol deficient or supplemented diets. Tocopherol does not appear to stabilize microsomal membrane composition or function although mitochondrial membranes appear to be labilized by the dietary manipulation of the vitamin.

Age Factors

Multiple thermal discontinuities in glucose-6-phosphatase activity.

The temperature dependence of glucose-6-phosphatase (D-glucose-6-phosphate phosphohydrolase EC 3.1.3.9) was studied in rat liver and kidney microsomal fractions. Arrhenius plots were non-linear and showed four distinct discontinuities in enzyme activity over the temperature range 2-41 degrees C. The discontinuities occurred at approx. 39, 30, 20 and 12 degrees C in the liver and were similar to this in the kidney. Changes in the energy of activation for the enzyme were noted at approx. 20 degrees C in both tissues. The multiple discontinuities in glucose-6-phosphatase activity are viewed as a reflection of complex reorganization and/or change in physical state of the membrane components, primarily lipid.

Animals

Age related changes in the lipids of the microsomal and the mitochondrial membranes of rat liver and kidney.

The lipid contents of the microsomal and mitochondrial membrane fractions of liver and kidney were determined in 6 and 24 month old rats. A significant age related increase in the molar ratio of cholesterol/phospholipid was observed in all membrane fractions. A significant age related reduction of phospholipid was noted in the microsomal fractions of liver and kidney. The relative amount of phosphatidylethanolamine was found to decrease in all membrane fractions during aging. Membrane glyceride content, however, remained relatively constant with age. Significant increase in oleic acid was seen in the neutral lipid of both liver and kidney and in the polar lipid of kidney. Significant increase in docosahexaenoic acid and significant decrease in linoleic acid were seen in the polar lipid of the liver membrane fractions. Possible alterations in membrane physiochemical properties and in membrane function due to these age related lipid changes are discussed.

Aging

Turnover of lipid components in liver microsomes, mitochondria and plasma membrane of 6-, 12- and 24-month old rats.

The turnover of lipid was examined in the livers of 6-, 12- and 24-month old rats. Heterogeneity of turnover was noted for each membrane fraction. The lipid turnover rate was highest in 12-month old rats and was the same in 6- and 24-month old rats. The higher rate of lipid turnover at 12 months was observed in both the neutral and polar lipid components of the liver membranes. In the polar lipid fractions isolated from the microsomal and mitochondrial membranes the increase in lipid turnover rate at 12 months was related to increase in the turnover of phosphatidylethanolamine.

Age Factors