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R F Howard

Publications and source records attributed to R F Howard.

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Synthesis of merozoite proteins and glycoproteins during the schizogony of Plasmodium falciparum.

We have investigated the protein and glycoprotein content of Plasmodium falciparum merozoites by metabolically labeling cultures of schizont-stage parasites with [35S]methionine or with [3H]glucosamine followed by incubation in nonradioactive medium to allow the schizonts to mature into merozoites, infect new erythrocytes, and develop into ring-stage parasites. The ring stages were separated from schizonts by sedimentation through Percoll. Labeled proteins were resolved by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and visualized by fluorography. Using [35S]methionine, four major proteins (p) with apparent relative molecular weights (Mr) = 202k , 136k , 82k , and 46k and two proteins of intermediate labeling (Mr = 185k and 142k ) were observed in the schizont-labeled ring-stage parasites. Because corresponding proteins were also observed in the schizont stage, we conclude that they had been present in the invading merozoite. In contrast, prominent proteins which were generally labeled during the ring stage and some major schizont-stage proteins were virtually absent in the schizont-labeled ring-stage. By labeling the parasite proteins with [3H]glucosamine followed by separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, five major glycoproteins (gp) of apparent Mr = 185k , 88k , 56k , 46k , and 34k were identified. Their presence in both the schizont and the schizont-labeled ring stage demonstrated that the merozoite contains glycoproteins. Immune owl monkey serum recognized all five glycoproteins. A comparison of proteins by two-dimensional gel electrophoresis (isoelectric focusing and sodium dodecyl sulfate-polyacrylamide gel electrophoresis) suggested that p185 and gp185 were identical, as were p46 and gp46 .

Animals↗

Proteins responsible for a punctate fluorescence pattern in Plasmodium falciparum merozoites.

Mouse monoclonal antibodies (McAbs) have been used to characterize the proteins of the asexual erythrocytic cycle of Plasmodium falciparum. Three different McAbs react with antigens of the schizont and extracellular merozoite to give a punctate fluorescence pattern. In many cases, such areas of fluorescence were composed of two adjacent, fluorescent bodies; these were distinct from the nuclei. In contrast, McAbs which bound to the ring-stage parasite were not localized, but were diffusely distributed within or around the ring-stage parasite. These McAbs immunoprecipitated five prominent, 35S-methionine-labeled schizont proteins (p) of Mr 82K, 70K, 67K, 39K, and 37K. Only p82, p39, and p37 were immunoprecipitated from schizont-labeled ring-stage parasites; thus, it appears that p70 and p67 are modified, degraded, or secreted some time between intracellular merozoite maturation and erythrocyte invasion.

Animals↗

The increase in hormone-stimulated adenylate cyclase activity following Rous sarcoma virus transformation.

Rous sarcoma virus (RSV)-infected chicken embryo cells were used to study the effect of viral transformation on the hormone-stimulated synthesis of cyclic AMP. Transformation by RSV greatly increased the cells' ability to synthesize and accumulate cyclic AMP in response to the beta-adrenergic agonist isoproterenol as compared to untransformed cells. This enhancement was observed in both intact cells and in membranes prepared from these cells. The inclusion of guanosine 5'-0-(3-thiotriphosphate), a nonhydrolyzable analogue of GTP, in assays of adenylate cyclase activity did not abolish the quantitative differences between the transformed and normal cell membranes. Infection of cells by Rous-associated virus, which lacks the oncogene src, did not induce this hyperresponsiveness thus indicating the probable involvement of the src gene product in this phenomenon. The duration of the isoproterenol-induced cyclic AMP elevation was longer in the transformed than in the untransformed cells; transformed cells, unlike untransformed cells, required at least 120 min before full desensitization became established. Membranes prepared from transformed cells specifically bound more than 5 times the quantity of the beta-adrenergic radiolabeled antagonist (-)3H-dihydroalprenolol and 125I-iodocyanopindolol compared to the untransformed cell membranes. Thus, it appears that major differences between the transformed and normal phenotypes reside in the concentration of membrane beta-adrenergic receptors and the inability of RSV-transformed cells to self-limit their response to specific external stimuli.

Adenylyl Cyclases↗

Cell cycle changes in the adenylate cyclase of C6 glioma cells.

The adenylate cyclase of C6 glioma cell cultures was characterized for sensitivity to the beta-adrenergic agonist isoproterenol, as well as fluoride, and GTP as a function of the cell cycle. The mitotic phase of the cell cycle was emphasized because both the basal cellular cyclic AMP level and the intact C6 cell's capacity to accumulate cyclic AMP in response to isoproterenol decreased during mitosis. Basal and stimulated adenylate cyclase activities in mitotic cells were decreased relative to the enzyme activities in the G1, S, and G2 phases of the cell cycle. Analysis of the beta-adrenergic receptor using the radioligand(-)[3H]dihydroalprenolol showed that neither ligand affinity nor receptor density changed during the cell cycle, indicating that the reduced adenylate cyclase activity of the mitotic C6 cell was not caused by alterations in this hormone receptor. The reduction in the mitotic cell's basal adenylate cyclase activity was more prominent than the decrease in isoproterenol-, fluoride, or GTP-stimulated activities suggesting that the effectiveness of these enzymes activators (i.e., the efficiency of the coupling mechanism) was not attenuated during mitosis. These studies indicate that the intrinsic catalytic capacity (not the beta-adrenergic receptor or the coupling mechanism) of the C6 adenylate cyclase complex is reduced during mitosis and contributes to the mitotic cell's inability to accumulate and maintain the cyclic AMP concentration at the interphase level.

Adenylyl Cyclases↗

The lower-molecular-weight protein complex (RI) of the Plasmodium falciparum rhoptries lacks the glycolytic enzyme aldolase.

The gene for the Plasmodium falciparum glycolytic enzyme aldolase (PfA) has been cloned. Since polyclonal antibodies raised to an affinity-purified preparation of an approximately 41-kDa parasite rhoptry protein were used to isolate this clone, and its nucleotide sequence was verified using amino acid sequence information generated from the purified 41-kDa protein, the authors concluded that this rhoptry protein was PfA. In the present report, monoclonal antibodies which immunoprecipitate those rhoptry protein complexes containing 39-kDa (p39) and 37-kDa proteins (p37) were used along with PfA-specific polyclonal antibodies to further examine this conclusion. The electrophoretic mobilities of PfA and the rhoptry proteins in the presence of sodium dodecyl sulfate differed from each other in both reducing and nonreducing conditions after immunoprecipitation with these antibodies. Lysates of P. falciparum-infected erythrocytes contained abundant aldolase activity which was removed by anti-PfA antibodies. However, no aldolase activity was associated with affinity-purified rhoptry proteins. Controlled proteolysis with the endoproteinase V8 protease generated different digestion patterns for PfA, p39, and p37. While both PfA and the rhoptry proteins were components of multimeric protein complexes, as demonstrated by sucrose gradient centrifugation, their cellular localization patterns were quite different. These results demonstrate that PfA and the rhoptry-associated proteins p39 and p37 are different entities.

Antibodies, Monoclonal↗

Surgical management of refractory trochanteric bursitis.

We reviewed a single surgeon's experience with the surgical management of refractory trochanteric bursitis in an active population group. The surgical procedure consisted of simple longitudinal release of the iliotibial band over the greater trochanter and excision of the subgluteal bursa. To our knowledge, this is the first series to use this technique. Seven hips in five patients form the basis of the study, making it one of the largest surgical series reported. All patients had no improvement after a minimum of 1 year of nonoperative management consisting of nonsteroidal antiinflammatory medication, iliotibial band stretching, diathermy, ultrasound, and injections of local anesthetics combined with corticosteroids (average, 4.8 injections). Patients had experienced symptoms preoperatively for an average of 3.8 years and had noted marked limitation in vocational and recreational activities. The preoperative Harris hip score averaged 51.7. Four of the five patients (six hips) were available for evaluation at the time of this study, at an average of 20 months postoperatively. The average Harris hip score was 95.0. All patients were satisfied with the surgical results and had returned to unrestricted vocational and athletic activities. The remaining patient was last seen 6 months postoperatively and her Harris hip score had improved from 49 to 84.

Adult↗