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D H Howard

Publications and source records attributed to D H Howard.

At least 37 records · Page 2Linked to original sources

Intracellular growth inhibition of Histoplasma capsulatum induced in murine macrophages by recombinant gamma interferon is not due to a limitation of the supply of methionine or cysteine to the fungus.

Recombinant murine gamma interferon (rMuIFN-gamma) stimulates mouse peritoneal macrophages to inhibit the intracellular growth of the zoopathogenic fungus Histoplasma capsulatum. In some systems, the inhibition of growth of an intracellular parasite by rIFN-gamma has been related to nutritional constraints induced in the host cells by the lymphokine. Such an explanation might apply to H. capsulatum because the fungus is a functional methionine-cysteine (Met-Cys) auxotroph at 37 degrees C; its sulfite reductase is repressed at that temperature. For this reason, we set about to examine whether or not the antihistoplasma state induced in rMuIFN-gamma is due to a restriction in the availability of Met-Cys. Omission of Met-Cys from the medium in which macrophages were cultivated prevented H. capsulatum from growing within them. Addition of Met or Cys to the macrophage cultures did not antagonize the inhibitory effect induced in the cells by rMuIFN-gamma. Thus, there was no evidence from our work that rMuIFN-gamma evokes the antihistoplasma effect in mouse peritoneal macrophages by limiting the supply of Met-Cys to the fungus.

Animals↗

Virulence, serotype, and molecular characteristics of environmental strains of Cryptococcus neoformans var. gattii.

Four strains of Cryptococcus neoformans var. gattii originating from Eucalyptus camaldulensis, three from Australia and one from San Francisco, were tested for their serotype, virulence for mice, and a number of genetic and molecular characteristics. All were found to be serotype B and showed significantly higher virulence for mice than did the type strains of C. neoformans var. gattii and Filobasidiella neoformans var. bacillispora, which were obtained from human cryptococcosis cases. Electrophoretic karyotypes of the strains from Australia were identical, although they were collected from sites at least 15 to 500 km apart. The electrophoretic karyotype of the strain from San Francisco was the same as that of the Australian isolates except for the mobility of one chromosome. On the contrary, no two isolates of serotype B (of a total of 11) from clinical sources were the same, regardless of their geographic origin. Furthermore, none of the clinical isolates showed a chromosomal banding pattern identical to that of Eucalyptus-originated strains. The Eucalyptus-originated strains failed to form dikaryons when crossed with the tester strains of the two varieties of F. neoformans. Hybridization analysis with a nucleic acid probe (AccuProbe C. neoformans Culture Confirmation Test; Gen-Probe Inc., San Diego, Calif.), however, showed signals of equal intensity for clinical strains and the Eucalyptus-originated strains. Various fungi phylogenetically related to C. neoformans, including a phenol oxidase-positive strain of Cryptococcus laurentii obtained from E. camaldulensis, were negative in the nucleic acid hybridization test. These observations confirm that, in spite of karyotypic differences and the lack of dikaryon formation with the tester strains of F. neoformans, Eucalyptus-originated C. neoformans var. gattii is the same organism as those isolated from cases of human infection. Furthermore, the C. neoformans culture confirmation test using a commercial nucleic acid probe is specific for C. neoformans.

Animals↗

Iron limitation and the gamma interferon-mediated antihistoplasma state of murine macrophages.

The zoopathogenic fungus Histoplasma capsulatum requires iron for growth. Intracellular growth of the fungus within mouse peritoneal macrophages is inhibited by recombinant murine gamma interferon (IFN-gamma). Such treatment of mouse peritoneal macrophages induces a marked downshift in transferrin receptors. We tested whether the antihistoplasma effect of IFN-gamma-treated macrophages is the result of iron deprivation. Treatment of mouse peritoneal macrophages with the intracellular iron chelator deferoxamine inhibits the intracellular growth of H. capsulatum. Exposure of macrophages to holotransferrin antagonizes the effect of both recombinant murine IFN-gamma and deferoxamine treatments. These results suggest that iron restriction may be one of the bases for the IFN-gamma-induced antihistoplasma effect of mouse macrophages.

Animals↗

The intracellular fate of Histoplasma capsulatum in human macrophages is unaffected by recombinant human interferon-gamma.

Human alveolar, peritoneal, and cultured macrophages were exposed in vitro to human recombinant interferon-gamma (rHuIFN-gamma) and were tested for their ability to inhibit intracellular replication of yeast-phase Histoplasma capsulatum. Exposure at various concentrations, and for different time periods, failed to activate the macrophages to inhibit multiplication of intracellular yeast. Macrophages were, however, activated by rHuIFN-gamma as shown by their ability to inhibit intracellular replication of Trypanosoma cruzi and by their enhanced production of superoxide when stimulated by phorbol myristate acetate. These data indicate that rHuIFN-gamma by itself does not activate human macrophages to inhibit intracellular proliferation of yeast-phase H. capsulatum.

Cells, Cultured↗

Nutritional stress proteins in Candida albicans.

Starving cells of Candida albicans synthesize at least seven proteins that represent nutritional-stress proteins (NSP). Such NSPs are formed by both germination-competent and germination-deficient strains of C. albicans. Heat-shock proteins (HSP) are not formed by starving cells. Germination-competent cells synthesize specific sets of proteins when incubated in a starvation medium that contains the germ-tube-inducing substances N-acetyl-D-glucosamine or L-proline. Both sets of induced proteins were also synthesized by a germination-deficient strain of C. albicans.

Acetylglucosamine↗

Naloxone benzoylhydrazone (NalBzoH) analgesia.

Naloxone benzoylhydrazone (NalBzoH) is a novel mixed agonist/antagonist. Against mu agonists, NalBzoH is a potent antagonist with a prolonged duration of action corresponding to its extremely slow rate of dissociation from mu receptors in binding assays. In the present studies, NalBzoH also antagonized mu analgesia, reversing both mu 1 and mu 2 analgesia independently elicited by intracerebroventricular or intrathecal [D-Ala2,MePhe4,-Gly(ol)5]enkephalin injections. It also antagonized kappa 1 analgesia elicited by U50,488H, and delta analgesia produced by intrathecal [D-Pen2,D-Pen5]enkephalin. Yet, at higher doses, NalBzoH alone produced analgesia in the tail-flick, hot plate and writhing assays. Neither the mu-selective antagonist beta-funaltrexamine, the delta-selective antagonist naltrindole, nor the kappa 1-selective antagonist norbinaltorphimine reversed NalBzoH analgesia in the tail-flick test. Analgesia observed with systemically administered NalBzoH was reversed easily by the antagonist WIN44,441 when it was given intracerebroventricularly, but not intrathecally. These observations confirm the opioid nature of NalBzoH analgesia and imply a supraspinal mechanism of action. In contrast, intrathecal, but not intracerebroventricular WIN44,441 reversed analgesia from systemic U50,488H quite potently. Thus, NalBzoH antagonizes mu, delta and kappa 1 actions while retaining its ability to elicit analgesia through a novel and distinct supraspinal kappa 3 system.

Analgesia↗

Thermotolerance and the heat-shock response in Candida albicans.

At elevated temperatures, yeast cells of Candida albicans synthesized nine heat-shock proteins (HSPs) with apparent molecular masses of 98, 85, 81, 76, 72, 54, 34, 26 and 18 kDa. The optimum temperature for the heat-shock response was 45 degrees C although HSPs were detected throughout the range 41-46 degrees C. Protein synthesis was not observed in cells kept at 48 degrees C. Yeast cells survived exposure to an otherwise lethal temperature of 55 degrees C when they had previously been exposed to 45 degrees C. The thermotolerance induced during incubation at 45 degrees C required protein synthesis, since protection was markedly reduced by trichodermin. Mercury ions induced a set of three stress proteins, one of which corresponded in size to an HSP, and cadmium ions evoked one stress protein seemingly unrelated to the HSPs observed after temperature shift.

Candida albicans↗

Macrophage cell lines P388D1 and IC-21 stimulated with gamma interferon fail to inhibit the intracellular growth of Histoplasma capsulatum.

Histoplasma capsulatum, a facultative intracellular parasite of macrophages, grows within mononuclear cells of the P388D1 and IC-21 cell lines with a generation time comparable to that with which it grows in normal resident peritoneal macrophages (10 +/- 2 h). Recombinant murine gamma interferon (rMuIFN-gamma) activates P388D1 cells to express la antigens but not to inhibit the intracellular growth of H. capsulatum, alone or in combination with lipopolysaccharide. IC-21 cells also could not be activated to fungistasis with rMuIFN-gamma. Explanted resident peritoneal macrophages of the C57BL/6 (from which the IC-21 cell line derives), C3H/HeJ, DBA/2 (from which the P388D1 cell line derives), A/J, and SJL/J strains of mice were all stimulated by rMuIFN-gamma to inhibit the fungus.

Animals↗

Ethanol tolerance and the induction of stress proteins by ethanol in Candida albicans.

Ethanol is one of the products of the metabolism of glucose by Candida albicans. The amount produced is directly related to the concentration of glucose in the medium. The fungus utilizes ethanol as a sole source of carbon but is relatively intolerant of ethanol in its environment. Ethanol induces germ tube formation by blastoconidia of C. albicans. Germination was not seen under fermentation conditions even though the amount of ethanol produced was in the range form stress proteins that are similar to heat shock proteins. The possibility that stress proteins may regulate germ tube formation by C. albicans is discussed.

Autoradiography↗

Inhibition of the intracellular growth of Histoplasma capsulatum by recombinant murine gamma interferon.

Recombinant murine gamma interferon as well as lymphokines prepared from immune splenocytes and concanavalin A-stimulated T-cell hybridoma activated normal mouse peritoneal macrophages to inhibit the intracellular growth of Histoplasma capsulatum. The activities of the lymphokine from immune splenocytes and of recombinant murine gamma interferon were neutralized by rabbit anti-murine gamma interferon antibody. The intracellular yeasts were not killed by the interaction even though growth was completely inhibited.

Animals↗

Arginine auxotrophs of Candida albicans deficient in argininosuccinate lyase.

Auxotrophic mutants of Candida albicans FC18 were induced by a combination of treatments with nitrous acid and UV irradiation. Arginine (Arg-), histidine (His-) and methionine/cysteine (MetA-) auxotrophs were recovered by this means. The Arg- auxotrophs lacked active argininosuccinate lyase (EC 4.3.2.1), the enzyme catalysing the final step in arginine biosynthesis. Thus the locus may be designated arg-4. The mutant strains bearing this mutation did not form germ tubes unless the germination medium contained arginine.

Arginine↗

Phenotypic characteristics of a slow-growing, nongerminating variant of Candida albicans.

Some of the phenotypic characteristics of a slow-growing, nongerminating variant of a commonly studied strain of Candida albicans are described. The variant arose as a chance isolate. The rate of occurrence was about 0 X 1% and the reversion rate was about 1 per 10(6) cells. The colony size was typically smaller than that of the parent and the yeast cells tended not to separate from one another so that catenulate strands of cells (pseudohyphae) were formed. Under standard conditions the generation time of the small-colony variant in liquid shake cultures was about twice that of the parental strain. Growth of the variant was suppressed by antimycin A, indicating that the small colony form was not the consequence of a defect in the cytochrome system. The colony size of the variant was not influenced by chlorobenzotriazole, which suggested that adenine metabolism was not involved in the small-colony phenotype. The pseudohyphal growth pattern was not relieved by high concentrations of utilizable carbohydrates, which means the catenulate microscopic appearance of the yeast cells was not simply an exaggeration of the normal growth pattern of isolates of C. albicans but more probably represented the growth of a cell-cycle mutant defective at the cell separation step. The cytoplasmic proteins of the variant and the parent were very similar though some unique peptides were displayed by each.

Antifungal Agents↗