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R D Knapp

Publications and source records attributed to R D Knapp.

22 records · Page 2Linked to original sources

Structure of an apolipoprotein-phospholipid complex: apoC-III induced changes in the physical properties of dimyristoylphosphatidylcholine.

The effect of ApoC-III, a major apoprotein constituent of human very low density lipoproteins, on the physical properties of dimyristoylphosphatidylcholine (DMPC) vesicles has been studied by magnetic resonance and fluorescence techniques. The sharp gel-liquid crystalline transition usually observed at 23 C in DMPC is both broadened and elevated when ApoC-III is bound as determined (a) from measurements of microscopic viscosity by pyrene excimer fluorescence, (b) from the distribution of di-tert-butyl nitroxide between the bulk aqueous phase and the fluid lipid phase, and (c) from the motion of fatty acyl chains of spin-labeled phosphatdylcholine. Experiments involving the translocation of ascorbate and charged nitroxide ions and the movement of paramagnetic Eu 3+ ions indicate that when ApoC-III binds to DMPC vesicles, it increases their permeability or destroys their original bilayer structure. These two possibilities were distinguishable by gel filtration of the DMPC-ApoC-III complex (approximately 34 mol mol) that indicated that the product particles were significantly smaller than the original vesicles. Taken together, the data indicate that ApoC-III binding to DMPC not only decreases the acyl chain motion of individual lipid molecules, but also induces break-down of bilamellar vesicular structure to give significantly smaller complexes.

Apoproteins↗

Determination of the structure of dextran by 13C-nuclear magnetic resonance spectroscopy.

The 13C-n.m.r. spectra have been recorded for a series of dextrans whose structures, in terms of degree and type of branching, had previously been determined by methylation analysis. The spectra established that all observable linkages in these dextrans are alpha-linked. Correlation of the spectra with methylation data indicated that the 75-85-p.p.m. spectral region is diagnostic for establishing the presence of alpha-D-(1 leads to 2)-, alpha-D-(1 leads to 3)-, or alpha-D-(1 leads to 4)-linkages. Each chemical shift has been found to be temperature-dependent (deltadelta/deltaT) when referenced to either the deuterium lock or an external standard (tetramethylsilane). All carbohydrate deltadelta values are positive, and range from 0.01 to 0.03 p.p.m./degrees C. These values are considerably larger than analogous deltadelta/deltaT values previously observed for smaller molecules. Larger than average deltadelta/deltaT values are associated with the non-anomeric, sugar-linking carbon atoms.

Dextrans↗