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Detection of villous conidia of Conidiobolus coronatus in a blood sample by scanning electron microscopy investigation.

Conidiobolus coronatus is a major insect pathogen belonging to the fungal order Entomophthorales, causing a rare subcutaneous infection of the nasofacial region, resulting in swelling of predominantly the nose, mouth, and perinasal tissue. Later in the course of the infection firm, painless, subcutaneous nodules develop that are attached to the underlying tissues but not to the skin. No morphological studies are available in the literature on the morphology of C. coronatus in vivo and all morphological studies have been conducted on in vitro cultures. Here the authors report on the ultrastructural pathology as seen with a scanning electron microscope (SEM) of villous conidia of C. coronatus, detected in a 37-year-old woman who presented to the casualty department at Pretoria Academic Hospital, South Africa with left-sided facial pain and headache. The diagnosis of C. coronatus was confirmed by LightCycler real-time flourescence PCR technique. Research shows that typically diagnosis of the pathogen is established only on histological examination, and in over 85% of cases cultures for the causative organism is negative. This pathogen has not previously been found in a blood sample and the authors present for the first time the morphology of C. coronatus in blood using the SEM.

Adult↗

IL-12 gene therapy using an electrically mediated nonviral approach reduces metastatic growth of melanoma.

Interleukin-12 (IL-12) has been evaluated in both preclinical and clinical immunotherapy protocols as a potential therapy for melanoma. However, delivery of IL-12 in the form of recombinant protein can result in severe toxicity, and gene therapy has had limited success against B16.F10 murine melanoma. This study investigated the therapeutic effect of delivering a plasmid encoding IL-12 followed by electroporation on primary and secondary tumors. Three treatments of intratumoral (i.t.) plasmid injection and electroporation resulted in 80% of mice with B16.F10 melanoma tumors being tumor free for >100 days (cure). The "cured animals" were resistant to challenge with B16 cells. In a separate experiment, B16 cells were injected on the opposite flank of the treated tumor on the day of treatment. Eighty-seven percent of control mice developed a distant tumor while only 43.8% of mice receiving two or three i.t. electroporation treatments developed a distant tumor. For examination of tumor development in the lungs, mice were injected intravenously with B16.F10 cells then treated with i.m. injections of plasmid with or without electroporation. Only 37.5% of mice receiving i.m. injections and electroporation developed nodules in the lungs compared to 87.5% of mice in the no-treatment group. The results show that administration of a plasmid encoding IL-12 with electroporation has a therapeutic effect on primary tumors as well as distant tumors and metastases.

Angiogenesis Inhibitors↗

Subcutaneous phaeohyphomycosis of the finger caused by Exophiala spinifera.

A patient with severe rheumatoid arthritis treated with prednisone had a painless soft tissue nodule develop on the dorsal aspect of the ring finger. She denied any history of hand trauma, animal exposure, or systemic symptoms such as fever or malaise. Fungal cultures performed on an aseptically obtained aspirate of this lesion demonstrated dark, olive-black creamy colonies on Sabouraud's agar. Slide cultures made from mold colonies produced slender conidial forms with annellations and spine-like conidiophores, features characteristic of Exophiala spinifera. The lesion was surgically excised, and the patient was successfully treated with a course of oral itraconazole. This nodular lesion has not recurred at the time of this writing. Exophiala species are difficult to differentiate, and E. spinifera may be confused with Exophiala jeanselmei. A literature review will consider Exophiala species and clinical manifestations produced by these dematiaceous fungi.

Arthritis, Rheumatoid↗

Survey of various chemicals for initiating and promoting activities in a short-term in vivo system based on generation of hyperplastic liver nodules in rats.

The effects of pre- (initiation stage) and post- (promotion stage) administration of 17 chemical carcinogens (including both hepatic and non-hepatic carcinogens), 3 promoters and 2 non-carcinogenic analogs, on the induction of liver hyperplastic nodules were investigated in rats. Test chemicals were administered during the initiation stage after which rats were fed dietary N-2-fluorenylacetamide (2-FAA) for 2 weeks in conjugation with necrogenic CCl4 to enhance production of nodules initiated by test chemicals. Alternatively, effects of test chemicals administered during the promotion phase were evaluated in rats given a combination of dietary 2-FAA for 2 weeks and necrogenic CCl4. This initiation regimen resulted in very few nodules unless a promoter was subsequently used. All chemical carcinogens administered during the initiation stage induced more frequent, larger hyperplastic nodules than did control treatments. However, neither the promoters nor the non-carcinogenic analogs induced hyperplastic nodules if they were administered during the initiation stage. In contrast, hepatocarcinogens and a promoter of hepatocarcinogenesis (phenobarbital) administered in the promotion stage had enhancing (promoting) activity on hyperplastic liver nodules, whereas non-hepatocarcinogens, a promoter for skin carcinogenesis (12-O-tetradecanoylphorbol-13-acetate) and a promoter for urinary bladder carcinogenesis (saccharin) did not. Non-carcinogenic analogs were not active when administered during either the initiation or promotion stages. These findings demonstrated the utility of employing short-term in vivo assays for both initiating and enhancing (promoting) activities of chemicals. By our system, chemicals were classified into 4 main groups, namely, (i) hepatocarcinogens which have both initiating and enhancing activity, (ii) non-hepatocarcinogens with initiating activity only, (iii) promoters of hepatocarcinogenesis which have promoting activity and (iv) non-carcinogens and non liver promoters which did not initiate nor promote nodule development. This is a more discriminating means of assaying carcinogenic activity than is possible with short-term in vitro screening assays for mutagenicity.

Animals↗

Tumour-derived and host-derived nitric oxide differentially regulate breast carcinoma metastasis to the lungs.

To study the role of nitric oxide (NO) in lung metastasis of breast carcinoma, we isolated two cell clones (H and J) from the parental EMT-6 murine breast carcinoma cell line, based on their differential NO production. In vitro, EMT-6 J cells, but not EMT-6H cells, constitutively expressed inducible NO synthase (NOS II) and secreted high levels of NO. IL-1beta increased NO production in both clones, and TNF-alpha had a synergistic effect on IL-1beta-induced NO production, but NO production by EMT-6 J cells was always higher than by EMT-6H cells. Proliferation, survival and adhesion to lung-derived endothelial cells of both clones were similar and were not affected by NO. In vivo, both clones similarly located in the lungs of syngeneic mice 48 h after injection. However, EMT-6H cells were significantly more tumorigenic than EMT-6 J cells as assessed at later time points. Injection of EMT-6 J cells and simultaneous treatment of mice with aminoguanidine (AG), a NOS II inhibitor, significantly increased tumour formation. Injection of EMT-6H and EMT-6 J cells into NOS II-deficient mice resulted in a significant survival increase as compared with wild-type animals. Simultaneous administration of AG increased the death rate of NOS II-deficient mice injected with EMT-6 J cells. These results demonstrate that: (i) NO does not influence the early stages of tumour metastasis to the lungs and (ii) NOS II expression in tumour cells reduces, while NOS II expression in host cells enhances, tumour nodule development. In conclusion, the cellular origin and the local NO production are critical in the metastatic process.

Animals↗

Coexpression of IL-6 and soluble IL-6R causes nodular regenerative hyperplasia and adenomas of the liver.

Studies with tumor necrosis factor p55 receptor- and interleukin-6 (IL-6)-deficient mice have shown that IL-6 is required for hepatocyte proliferation and reconstitution of the liver mass after partial hepatectomy. The biological activities of IL-6 are potentiated when this cytokine binds soluble forms of its specific receptor subunit (sIL-6R) and the resulting complex interacts with the transmembrane signaling chain gp130. We show here that double transgenic mice expressing high levels of both human IL-6 and sIL-6R under the control of liver-specific promoters spontaneously develop nodules of hepatocellular hyperplasia around periportal spaces and present signs of sustained hepatocyte proliferation. The resulting picture is identical to that of human nodular regenerative hyperplasia, a condition frequently associated with immunological and myeloproliferative disorders. In high expressors, hyperplastic lesions progress with time into discrete liver adenomas. These data strongly suggest that the IL-6/sIL-6R complex is both a primary stimulus to hepatocyte proliferation and a pathogenic factor of hepatocellular transformation.

Adenoma↗

Analysis of a 1600-kilobase Rhizobium meliloti megaplasmid using defined deletions generated in vivo.

A series of 120-600 kilobase deletions with defined endpoints were made in the 1600-kilobase Rhizobium meliloti megaplasmid pRmeSU47b, by homologous recombination between the IS50 elements of transposon insertions. Utilizing IS 50-mediated homologous recombination we also made defined reductions in deletion size and combined adjacent deletions. Deletion structure was confirmed by phage transduction and Southern hybridization analysis. Collectively these deletions span 1400 kilobases of pRmeSU47b, indicating that the majority of the plasmid is not essential for cell viability. This was further confirmed by the construction of a strain SU47 derivative which carries only 450 kilobases of the pRmeSU47b megaplasmid. Examination of the deletion mutants for phenotype revealed novel loci required for dulcitol, melibiose, raffinose, beta-hydroxybutyrate, acetoacetate, protocatechuate and quinate utilization. Previously unidentified loci required for effective root nodule development and exopolysaccharide synthesis were also found. Various deletion mutants were deficient in dicarboxylate transport, lactose utilization, and thiamine and exopolysaccharide biosynthesis, as predicted from earlier studies of this megaplasmid.

Blotting, Southern↗

Modulation of lung tumor colony formation by a subcutaneously growing tumor.

When monodisperse tumor cell suspensions of the mouse sarcoma L1 were injected iv into inbred BALB/c mice bearing subcutaneous grafts of the same tumor, the number of tumor nodules developing in the lungs was highest in animals bearing the oldest primary tumor (28 days) and lowest in animals bearing the oldest primary tumor (28 days) and lowest in animals bearing 16-day-old primary tumors. The number of metastases developing in mice bearing 9-day-old subcutaneous tumors was the same as that in control animals without a subcutaneous tumor. This state of low and high susceptibility to lung metastases can be transferred from tumor-bearing mice to whole-body irradiated mice by means of spleen cells, and this transfer of susceptibility is stable for at least 3 weeks. The results indicate a) that a growing subcutaneous tumor can modulate the number of artificial metastases occurring in the lungs as a result of the iv injection of tumor cells, and b) that this modulation occurs by immune mechanisms. In the model presented here, the host is first protected and then made more susceptible to artificial lung metastases by the presence of a progressively growing subcutaneous tumor.

Animals↗

Thirteen nodule-specific or nodule-enhanced genes encoding products homologous to cysteine cluster proteins or plant lipid transfer proteins are identified in Astragalus sinicus L. by suppressive subtractive hybridization.

Thirteen nodule-specific or nodule-enhanced genes have been revealed by suppressive subtractive hybridization (SSH) with two mRNA populations of infected and uninfected control roots of Astragalus sinicus. Eleven of them encode small polypeptides showing homology to cysteine cluster proteins (CCPs) that contain a putative signal peptide and conserved cysteine residues. Among these CCP-like genes, AsG257 codes for a homologue of the defensin 2 family and AsD255 contains a scorpion toxin-like domain at the C-terminus. Sequence analysis of a genomic AsD255 fragment which was isolated revealed that one intron separates the first exon encoding the signal peptide from the second exon encoding the cysteine cluster domain of this nodulin. Another two genes, AsE246 and AsIB259, encode two different products similar to lipid transfer proteins (LTPs). Virtual northern blot and reverse transcription-polymerase chain reaction (RT-PCR) analysis indicated that the other genes except AsIB259 and AsC2411 were expressed exclusively in inoculated roots and that their expression was 2-4 d later than that of the leghaemoglobin (Lb) gene during nodule development. Transcription of AsIB259 was also detected in uninfected control roots but with a significant decline in expression and a temporal expression similar to Lb. AsC2411 had a basal expression in control roots identified by RT-PCR. Sequence alignment showed that the putative proteins AsE246 and AsIB259 show lower homology with LTPs from legumes than with those from other plants.

Alphaproteobacteria↗

Aldehyde oxidase (AO) in the root nodules of Lupinus albus and Medicago truncatula: identification of AO in meristematic and infection zones.

Phytohormones are involved in the organogenesis of legume root nodules. The source of the auxin indole-3-acetic acid (IAA) in nodules has not been clearly determined. We studied the enzyme aldehyde oxidase (AO; EC 1.2.3.1), that catalyzes the last step of IAA biosynthesis in plants, in the nodules of Lupinus albus and Medicago truncatula. Primordia and young lupin nodules and mature M. truncatula nodules showed AO activity bands after native polyacrylamide gel electrophoresis. Gel activity analyses using indole-3-aldehyde as substrate indicated that the nodules of white lupin and M. truncatula have the capability to synthesize IAA via the indole-3-pyruvic acid pathway. Immunolocalization and in situ hybridization experiments revealed that AO is preferentially expressed in the meristematic and the invasion zones in Medicago nodules and in the lateral meristematic zone of Lupinus nodules. High IAA immunolabeling was also detected in the meristematic and invasion zones. Low expression levels and no AO activity were detected in lupin Fix- nodules that displayed restricted growth and early senescence. We propose that local synthesis of IAA in the root nodule meristem and modulation of AO expression and activity are involved in regulation of nodule development.

Abscisic Acid↗

Genetic suppressors of the Lotus japonicus har1-1 hypernodulation phenotype.

Lotus japonicus har1 mutants respond to inoculation with Mesorhizobium loti by forming an excessive number of nodules due to genetic lesions in the HAR1 autoregulatory receptor kinase gene. In order to expand the repertoire of mutants available for the genetic dissection of the root nodule symbiosis (RNS), a screen for suppressors of the L. japonicus har1-1 hypernodulation phenotype was performed. Of 150,000 M2 plants analyzed, 61 stable L. japonicus double-mutant lines were isolated. In the context of the har1-1 mutation, 26 mutant lines were unable to form RNS, whereas the remaining 35 mutant lines carried more subtle symbiotic phenotypes, either forming white ineffective nodules or showing reduced nodulation capacity. When challenged with Glomus intraradices, 18 of the 61 suppressor lines were unable to establish a symbiosis with this arbuscular mycorrhiza fungus. Using a combined approach of genetic mapping, targeting induced local lesions in genomics, and sequencing, all non-nodulating mutant lines were characterized and shown to represent new alleles of at least nine independent symbiotic loci. The class of mutants with reduced nodulation capacity was of particular interest because some of them may specify novel plant functions that regulate nodule development in L. japonicus. To facilitate mapping of the latter class of mutants, an introgression line, in which the har1-1 allele was introduced into a polymorphic background of L. japonicus ecotype MG20, was constructed.

Alleles↗

Accumulation of transcripts encoding a lipid transfer-like protein during deformation of nodulation-competent Vigna unguiculata root hairs.

A cDNA library was constructed from RNA of Vigna unguiculata root hairs harvested 1 day and 4 days after inoculation with Rhizobium sp. NGR234. A heterologous probe was used to identify a cDNA clone, the predicted 99-amino-acid sequence of which shares homology with a nonspecific lipid transfer protein (LTP) of Hordeum vulgare. Other characteristics, including an estimated molecular weight of 10.4 kD, an isoelectric point of 8.6, and a signal peptide with a hydrophobic region at the amino-terminal end, are shared by most LTPs. A transcript of 630 nt was found in all tissues tested, except nodules. Levels of mRNA increased in root hairs 24 hr after treatment with Rhizobium sp. NGR234, with different hormones, or with Nod factors. Amounts of transcripts were dependent on the concentration of Nod factors. Accumulation of transcripts during nodule development correlated with root hair deformation, the first visible step in the Rhizobium-legume symbiosis.

Amino Acid Sequence↗

Characterization of a Casuarina glauca nodule-specific subtilisin-like protease gene, a homolog of Alnus glutinosa ag12.

In search of plant genes expressed during early interactions between Casuarina glauca and Frankia, we have isolated and characterized a C. glauca gene that has strong homology to subtilisin-like protease gene families of several plants including the actinorhizal nodulin gene ag12 of another actinorhizal plant, Alnus glutinosa. Based on the expression pattern of cg12 in the course of nodule development, it represents an early actinorhizal nodulin gene. Our results suggest that subtilisin-like proteases may be a common element in the process of infection of plant cells by Frankia in both Betulaceae (Alnus glutinosa) and Casuarinaceae (Casuarina glauca) symbioses.

Actinomycetales↗

Rhizobium sp. BR816 produces a complex mixture of known and novel lipochitooligosaccharide molecules.

Rhizobial lipochitooligosaccharide (LCO) signal molecules induce various plant responses, leading to nodule development. We report here the LCO structures of the broadhost range strain Rhizobium sp. BR816. The LCOs produced are all pentamers, carrying common C18:1 or C18:0 fatty acyl chains, N-methylated and C-6 carbamoylated on the nonreducing terminal N-acetylglucosamine and sulfated on the reducing/terminal residue. A second acetyl group can be present on the penultimate N-acetylglucosamine from the nonreducing terminus. Two novel characteristics were observed: the reducing/terminal residue can be a glucosaminitol (open structure) and the degree of acetylation of this glucosaminitol or of the reducing residue can vary.

Carbohydrate Conformation↗

The endosymbiosis-induced genes ENOD40 and CCS52a are involved in endoparasitic-nematode interactions in Medicago truncatula.

Plants associate with a wide range of mutualistic and parasitic biotrophic organisms. Here, we investigated whether beneficial plant symbionts and biotrophic pathogens induce distinct or overlapping regulatory pathways in Medicago truncatula. The symbiosis between Sinorhizobium meliloti and this plant results in the formation of nitrogen-fixing root nodules requiring the activation of specific genes in the host plant. We studied expression patterns of nodule-expressed genes after infection with the root-knot nematode Meloidogyne incognita. Two regulators induced during nodule organogenesis, the early nodulin gene ENOD40 involved in primordium formation and the cell cycle gene CCS52a required for cell differentiation and endoreduplication, are expressed in galls of the host plant. Expression analysis of promoter-uidA fusions indicates an accumulation of CCS52a transcripts in giant cells undergoing endoreduplication, while ENOD40 expression is localized in surrounding cell layers. Transgenic plants overexpressing ENOD40 show a significantly higher number of galls. In addition, out of the 192 nodule-expressed genes tested, 38 genes were upregulated in nodules at least threefold compared with control roots, but only two genes, nodulin 26 and cyclin D3, were found to be induced in galls. Taken together, these results suggest that certain events, such as endoreduplication, cell-to-cell communication with vascular tissues, or water transport, might be common between giant cell formation and nodule development.

Animals↗

Rhizobium leguminosarum bv. trifolii PssP protein is required for exopolysaccharide biosynthesis and polymerization.

Rhizobium leguminosarum bv. trifolii produces an acidic exopolysaccharide (EPS) that is important for the induction of nitrogen-fixing nodules on clover. Recently, three genes, pssN, pssO, and pssP, possibly involved in EPS biosynthesis and polymerization were identified. The predicted protein product of the pssP gene shows a significant sequence similarity to other proteins belonging to the PCP2a family that are involved in the synthesis of high-molecular-weight EPS. An R. leguminosarum bv. trifolii TA1 mutant with the entire coding region of pssP deleted did not produce the EPS. A pssP mutant with the 5' end of the gene disrupted produced exclusively low-molecular-weight EPS. A mutant that synthesized a functional N-terminal periplasmic domain but lacked the C-terminal part of PssP produced significantly reduced amounts of EPS with a slightly changed low to high molecular form ratio. Mutants affected in the PssP protein carrying a stable plasmid with a constitutively expressed gusA gene induced nodules on red clover that were not fully occupied by bacteria. A mutant with the entire pssP gene deleted infected only a few plant cells in the nodule. The pssP promoter-gusA reporter fusion was active in bacteroids during nodule development.

Bacterial Proteins↗

Clinical aspects of juvenile rheumatoid arthritis.

This paper reviews studies in epidemiology, differential diagnosis, clinical manifestations, and treatment of juvenile rheumatoid arthritis (JRA) that have appeared during the past year. One epidemiologic study suggested a decreased incidence recently; however, changes over time in the ethnic and racial characteristics of the patients studied may also have played a role. Findings from an Australian study suggested that some studies may underestimate the true incidence of JRA if visits of physicians are the only basis for the studies. Finally, a Canadian study of incidence showed no seasonal correlations--except for the Prairie region--raising the possibility that the disease varies by region because of environmental factors or variations in ethnic background. Differential diagnostic issues were covered in several reports. One study suggested that elevations in lactate dehydrogenase levels identified children with malignancies who presented with musculoskeletal symptoms. Another study of children with Lyme disease failed to find any patients with asymmetric joint involvement, in contrast to JRA patients. Two studies from Europe reached opposite conclusions regarding whether the incidence of celiac disease was increased in JRA patients. Clinical studies included a French study showing increased production of interleukin-6 and interleukin-1-Ra during fever spikes in children with systemic JRA. An Italian study explored the potential role of interleukin-6 in the anemia of JRA patients. An American study confirmed decreases in markers of bone formation in JRA patients. Two treatment studies addressed the use of intravenous gamma globulin in JRA. Another report described two JRA patients who developed nodules while receiving methotrexate. Finally, a report added confirmation to the successful use of cyclosporine for macrophage activation syndrome in JRA.

Antirheumatic Agents↗

Immunoreactive endothelin in Taiwanese thyroid cystic fluid.

Endothelin-1 is a major vasoconstrictor peptide, first found in endothelial cells and later in many other tissues, including the thyroid gland. It is well known that endothelins can act as autocrine and/or paracrine regulators of thyroid homeostasis and growth. Previously we have demonstrated that immunoreactive endothelins (IR-ET) are present in various human body fluids, and IR-ET has also been detected in pathologic breast and thyroid cystic fluids. In this study, the IR-ET in Taiwanese thyroid cystic fluid was measured by radioimmunoassay and characterized by chromatography. Human thyroid cystic fluid was obtained by fine needle aspiration, was centrifuged, and the supernatant was stored at -20 degrees C until IR-ET assay. IR-ET has been detected in 25 of 33 samples of thyroid cystic fluid [25 cases, 4.11 +/- 0.31 fmol/mL (mean +/- standard error of the mean); other eight cases, undetectable]. Gel permeation chromatography of the extract of pooled cystic fluid showed only one major peak at the elution position of human endothelin-1 standard. No difference in cystic IR-ET levels was found in our patients with cystic nodules in relation to differences in thyroid function. It is probable that endothelin-1 is produced by the epithelial cells lining the thyroid cysts, and the increased levels of IR-ET in cystic fluid found in our patients could either be secondary to cystic nodule development or have a role in goiter formation.

Asian People↗