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Biomedical subjects

R L Felsted

Publications and source records attributed to R L Felsted.

13 recordsLinked to original sources

Phaseolus vulgaris isolectin binding to human erythrocytes.

The Phaseolus vulgaris isolectins L4,L3E1, L2E2, L1E3, and E4 were isolated by affinity and ion exchange chromatography. Pure isolectins were radiolabeled by the chloramine-T method with Na125IO4 and their binding to human erythrocytes was studied. A normal erythrocyte has approximately 8 times 10(5) receptor sites for each isolectin; however, the association constants (Ka) of binding increased from 1.1 times 10(7) M-1 to 3.8 times 10(8) M-1, with increasing number of E subunits per tetrameric isolectin molecule. Isolectin to erythrocyte binding reached equilibrium rapidly and was reversed by fetuin. All isolectins competed with 125I-E4 for erythrocyte binding sites, with a constant (KI) similar to the Ka calculated for each respective radiolabeled isolectin. When isolectin binding at 0 degrees C, 4 degrees C, or 8 degrees C was compared to that at 25 degrees C, there was no reduction in the number of binding sites per cell, but the Ka of E4 was reduced to 3 times 10(7) M-1. Fixed erythrocytes displayed similar isolectin binding characteristics.

Binding Sites

Inhibitory effects of phytohemagglutinin isolectins L4 and E4 on L1210 cells.

Phytohemagglutinin isolectins L4 and E4 inhibit the growth and proliferation of cultured L1210 murine leukemia cells. L1210 cells were incubated with L4 or E4, and the metabolic and morphological characteristics of the cells were assessed. Dose-dependent inhibition of up to 90% occurs for [3H]thymidine and [14C]uridine incorporation. L4 is 30 to 50 times more potent an inhibitor than is E4. Inhibition begins 2 to 3 hr after exposure of L1210 cells to L4 and persists for as long as the cells are exposed to this isoleuctin. Total DNA and oxygen consumption in L4-treated cultures is also decreased. Whereas protein synthesis assessed by [14C]valine incorporation is less affected, glucose utilization remains unchanged. The binding of L4 and E4 to L1210 cells and human lymphocytes is similar and is reversible by porcine thyroglobulin. Porcine thyroglobulin also reverses L4-induced inhibition of nucleotide incorporation. Cell aggregation is the major morphological consequence of isoleuctin treatment observed by light or electron microscopy. L1210 cells are agglutinated at lower doses of isoleuctins than are normal murine lymphocytes. No evidence of cell death as estimated by 51Cr release or trypan blue uptake has been noted. Our data indicate that L4 and E4 have cytostatic properties and demonstrate that the reversible binding of a macromolecule to the surface of a malignant cell can modulate synthetic pathways and the rate of proliferation.

Animals

Biological and biochemical properties of Phaseolus vulgaris isolectins.

Affinity-purified phytohemagglutinin from red kidney bean resolves into five isolectins by SP-Sephadex ion exchange chromatography. Recoveries ranging from 30 to 130 mg of protein for each isolectin are easily achieved. The isolectins have similar amino acid compositions which differ only in threonine, lysine, and arginine. A distinguishing feature of the amino acid composition is the total lack of sulfur-containing amino acids. Each isolectin contains about 4% mannose and 2.2% N-acetyl-D-glucosamine. All isolectins on electrophoresis form single protein bands under denaturing and nondenaturing conditions in polyacrylamide gels, and all have apparent subunit molecular weights of 33,000 by sodium dodecyl sulfate polyacrylamide gel electrophoresis. The isolectins are also homogeneous by ultracentrifugation and have apparent native molecular weights of 115,000 +/- 4,130, suggesting tetrameric quaternary structures. Whereas 80% of the starting erythroagglutinin activity is recovered, one of the five isolectins possesses 50% of that original activity. As sequentially eluted from the ion exchange column, each isolectin displays progressively higher erythroagglutinin and lower lymphocyte mitogenic activities. Based on their relative biological activities, the isolectins are assigned the structures L4, L3E1, L2E2, L1E3, and E4, where L and E represent lymphocyte- and erythrocyte-reactive subunits, respectively, and the subscripts represent the proposed subunit composition.

Amino Acids

Recombinations of subunits of Phaseolus vulgaris isolectins.

Phaseolus vulgaris phytohemagglutinin is formed in vivo by the combination of erythrocyte (E)-reactive and lymphocyte (L)-reactive subunits into five tetrameric isolectins:L4,L3E1, L2E2, L1E3, and E4. Evidence for phytohemagglutinin subunit structure is obtained by in vitro dissociation of native isolectins in 6 M guanidine HCl followed by removal of dissociating agents to allow subunit recombination. Dissociation and recombination of L4 yielded a single protein, electrophoretically indistinguishable from the native L4. Similar treatment of E4 also yielded a single protein indistinguishable from native E4. Treatment of L3E1, L2E2, L1E3, or a mixture of L4 and E4, yielded five distinct proteins electrophoretically similar to all five native phytohemagglutinin isolectins. Milligram quantities of all five recombinant isolectins were prepared either from L2E2 or a mixture of L4 and L1E3 proportioned to yield equimolar quantitives of the two subunits on dissociation. The recombinant isolectins were purified by affinity and SP-Sephadex ion exchange chromatography. Electrophoretic and chromatographic properties and the erythroagglutinating and mitogenic activities of recombinant isolectins were essentially identical with the native isolectins. The inclusion of 125I-labeled L4 in the dissociation results in a distribution of 125I-labeled L subunit among the purified recombinant isolectins proportional to their proposed subunit structures.

Chemical Phenomena

Oxisuran reduction by rabbit tissue preparations.

Oxisuran, 2-((methylsulfinyl)acetyl)pyridine is reduced to alpha-((methylsulfinyl)methyl-2-pyridinemethanol, oxisuranol, by cytoplasmic enzymes from rabbit liver, kidney, brain, intestine, and lung. The cytoplasmic enzyme from liver is dependent on NADPH as cofactor and has an optimal pH of 6.0. Enzymatic activity is also present in liver mitochondria but at a lower specific activity. The cytoplasmic extracts catalyze the formation of two oxisuranol products, presumably the diastereoisomers described by Di Carlo and associates from in vivo studies. Verification of the product as oxisuranol was accomplished by thin-layer chromatography and mass spectrometry.

Animals