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CPP1, a DNA-binding protein involved in the expression of a soybean leghemoglobin c3 gene.

Nodulin genes are specifically expressed in the nitrogen-fixing root nodules. We have identified a novel type of DNA-binding protein (CPP1) interacting with the promoter of the soybean leghemoglobin gene Gmlbc3. The DNA-binding domain of CPP1 contains two similar Cys-rich domains with 9 and 10 Cys, respectively. Genes encoding similar domains have been identified in Arabidopsis thaliana, Caenorhabditis elegans, the mouse, and human. The domains also have some homology to a Cys-rich region present in some polycomb proteins. The cpp1 gene is induced late in nodule development and the expression is confined to the distal part of the central infected tissue of the nodule. A constitutively expressed cpp1 gene reduces the expression of a Gmlbc3 promoter-gusA reporter construct in Vicia hirsuta roots. These data therefore suggest that CPP1 might be involved in the regulation of the leghemoglobin genes in the symbiotic root nodule.

Amino Acid Sequence↗

RNAi knock-down of ENOD40s leads to significant suppression of nodule formation in Lotus japonicus.

ENOD40 is one of the most intriguing early nodulin genes that is known to be induced very early in response to interaction of legume plants with symbiotic Rhizobium bacteria, but its function in the nodulation process is still not known. Lotus japonicus has two ENOD40 genes: LjENOD40-1 is abundantly induced in very early stages of bacterial infection or Nod factor application, whereas LjENOD40-2 is abundantly expressed only in mature nodules. We generated transgenic lines of L. japonicus with an RNAi (RNA interference) construct that expresses hairpin double-stranded RNA for LjENOD40-1 to induce sequence-specific RNA silencing. In the transgenic plants, expression of both LjENOD40-1 and -2 was significantly reduced, and no accumulation of ENOD40 transcripts was detected upon Mesorhizobium loti inoculation. The transgenic plants exhibited very poor nodulation (only 0-2 nodules per plant) and could not grow well without additional nitrogen supply. Analysis of segregation in the T(2) progeny indicated that the suppression of nodulation is perfectly linked with the presence of the transgene. Microscopic observation of the infection process using lacZ-labeled M. loti, together with expression analysis of infection-related nodulin genes, demonstrated that ENOD40 knock-down did not inhibit the initiation of the bacterial infection process. In contrast, nodule primordium initiation and subsequent nodule development were significantly suppressed in the transgenic plants. These results clearly indicate that ENOD40 is required for nodule initiation and subsequent organogenesis, but is not involved in early infection events.

Base Sequence↗

Phosphoserine aminotransferase in soybean root nodules : demonstration and localization.

Phosphoserine aminotransferase activity was detected in the plant and bacteroid fractions from soybean (Glycine max) root nodules. Both total and specific activities increased in the plant fraction during nodule development. Serine-pyruvate aminotransferase activity was not detectable in the plant or bacteroid fractions of these nodules. Sucrose density gradient fractionation indicated a proplastid localization for phosphoserine aminotransferase. The data presented support a role for this enzyme in carbon supply to purine biosynthesis in the pathway of ureide biogenesis in soybean nodules.

Journal Article↗

Phytohormonal responses in enod40-overexpressing plants of Medicago truncatula and rice.

Phytohormones are well-known regulators of the symbiotic Rhizobium-legume association in the plant host. The enod40 nodulin gene is associated with the earliest phases of the nodule organogenesis programme in the legume host and modifying its expression resulted in perturbations of nodule development in Medicago truncatula. Therefore in our pursuit to mimic the initial signal transduction steps of legume nodulation in the alien physiological set-up of a rice plant, we have expressed the Mtenod40 gene in rice. Molecular data confirm the stable integration, inheritance and transcription of the foreign gene in this non-legume. We have compared the phytohormonal responses of Mtenod40-overexpressing and control plants in a homologous legume background (M. truncatula) and in the non-legume rice. An enod40-mediated root growth response, induced by inhibition of ethylene biosynthesis, was observed in both plants. On the other hand, a significant differential effect of cytokinins was observed only in rice plants. This suggests that ethylene inhibits enod40 action both in legumes and non-legumes and reinforces that some of the early signal transduction steps of the nodule developmental programme may function in rice.

Journal Article↗

An immunohistochemical study of calcitonin-containing cells in benign and malignant thyroid lesions.

Parafollicular cells (C-cells) in benign and malignant thyroid lesions were studied immunohistochemically with a polyclonal anti-calcitonin (CT) antibody. The C-cells were seen most frequently in the middle third of the lateral lobes in the thyroid gland of normal individuals and patients with Graves' disease and chronic thyroiditis, although in the latter the number of such cells was significantly decreased (p less than 0.05). In adenomatous goiter, C-cells were present in nodular lesions from an early stage of nodule development (frequency about 19%), whereas in the later stage these cells were rarely observed inside type 1 nodules, which were generally characterized by an admixture of follicles with considerably different sizes. However, C-cells were not observed inside type 2 nodules, which were composed of similar-sized follicles, or in the parenchyma of 56 cases of benign and malignant thyroid tumors. These findings suggest that since C-cells are present in nodular lesions, the histogenesis of adenomatous goiter is quite different from that of follicular adenoma; thyroid neoplasms generally contain no C-cells in the parenchyma.

Adenoma↗

Influence of Phosphate on the Growth and Nodulation Characteristics of Rhizobium trifolii.

The growth and nodulating characteristics of Rhizobium trifolii 6 and 36 differed under different external phosphate conditions. Under growth conditions designed to deplete the internal phosphate content of the rhizobia, strain 6 maintained a generation time of 5 h during the exponential phase over two cycles of growth in phosphate-depleted medium. In contrast, the generation time of strain 36 was extended from 3.5 to 9.8 h over two cycles of phosphate-depleted growth, although the organism eventually achieved the same cell density and cellular phosphate content as that of strain 6 at stationary phase. Phosphate-depleted strain 6 required 0.51 +/- 0.08 muM phosphate to commence proliferation, whereas phosphate-depleted strain 36 required 0.89 +/- 0.04 muM phosphate under the same conditions. Phosphate-depleted strain 6 maintained viability when exposed to external phosphate concentrations subcritical for growth to occur, whereas phosphate-depleted strain 36 lost viability within 48 h when exposed to medium containing phosphate at concentrations subcritical for growth. Phosphate-depleted strain 36 was inferior to phosphate-depleted strain 6 at nodulating subterranean clover (Trifolium subterraneum L. cv. Mt. Barker) by taking 2 to 4 days longer to develop nodules in phosphatedepleted plant grown medium at pH 5.5. Nodulation by phosphate-depleted strain 36 was accelerated either by including phosphate in the plant growth medium at pH 5.5 or by raising the solution pH of phosphate-depleted plant growth medium to pH 6.5. External phosphate and pH effects were not observed on the nodulating capabilities of phosphate-depleted strain 6 or on luxury phosphate-grown cells of either strain. Phosphatedepleted strains 6 and 36 proliferated to a similar extent on the rhizoplanes even under stringently low external P(i) concentrations. The phosphatase activities of both phosphate-depleted strains were significantly (P = 0.05) higher at pH 6.5 than at pH 5.5, and the activity of strain 6 was significantly higher (P = 0.05) than that of strain 36 at pH 5.5 and 5.0.

Journal Article↗

[Incidence of immunogenic hyperthyroidism after radioiodine therapy of focal thyroid gland autonomy. Results of a multicenter study].

BACKGROUND: There are case reports in the literature that patients occasionally develop immunogenic hyperthyroidism 2 to 14 months following iodine-131-therapy of focal, non-immunogenic, autonomous thyroid nodules with a prevalence between 0.05 and 2.5%. Purpose of this multicenter evaluation was to assess the appearance of this phenomenon in a larger patient population. PATIENTS AND METHODS: So far 2867 patients out of 4 university hospitals are included in our study focusing on the appearance of pathologically elevated levels of thyrotropin-receptor-antibodies (TRAb) combined with hyperthyroidism following iodine-therapy. Records of the patients were screened for pre- and post-therapeutic biochemical tests, scintigraphic uptake patterns and ultrasound findings of the thyroid. RESULTS: Nineteen of 2867 patients with pretherapeutically scintigraphic "hot nodules" developed recurrent hyperthyroidism suggestive for immunogenic genesis 2 to 12 months following iodine-131-therapy (elevated TRAb-levels, homogeneous uptake in Tc-99m-pertechnetate scans). Pretherapeutically, 9 of these patients presented with a strictly focal scintigraphic uptake-pattern, 10 cases with a mixed disseminated-focal pattern. Because of missing pretherapeutic TRAb-tests in 8/9 patients presenting with a strictly focal scintigraphic uptake pattern, postradiogenic immunogenic hyperthyroidism could be reliably assessed in 1 case only. CONCLUSION: One could speculate that iodine-131-therapy may stimulate immunogenic mechanisms finally leading to immunogenic hyperthyroidism. Posttherapeutically observed hyperthyroidism following iodine-treatment might be based on an exacerbation of a preexisting--clinically not relevant/detectable--immunothyropathia. Also pretherapeutic TRAb-negative immunogenic hyperthyroidism could not be definitely excluded. Our multicenter data collected in a large patient population show similar results to the case reports of immunogenic hyperthyroidism following iodine-131-treatment in smaller populations. Therfore, the occurrence of this phenomenon plays a minor role regarding to its prevalence. Therapeutical consequences in treatment of functional thyroid autonomy are not recommended.

Adult↗

Long term regeneration of cis-platinum and X ray treated human tumor nodules maintained in continuous organotypic culture.

A simple method for maintaining tumor cells in continuous three-dimensional culture, derived from Wolff's organotypic technique, has been used to study the effects of cis-platinum and X rays on growth inhibition, regrowth and long term regeneration of cultures maintained in low traumatizing conditions (absence of enzymatic dissociation of the cells and the possibility of avoiding subculturing, if necessary). The tumor nodules were derived from cells of the A 549 lung carcinoma cell line. The nodules developed an alveolar structure. After 1 h treatment with 15 micrograms/ml cis-platinum the growth of the nodules was slightly inhibited during the first 10 days, and then resumed normal growth. After treatment with 100 micrograms/ml cis-platinum, growth inhibition lasted longer and regrowth was observed after about 30 days. Treatment with 300 micrograms/ml of cis-platinum induced cell necrosis and loss of alveolar structures. Forty days later, regeneration occurred; two months after the drug treatment, the reconstituted nodules could be routinely subcultured. A single 15 Gy X ray dose (inducing a 0.005% survival in A 549 monolayer cells, n = 8; D0 = 1.4 Gy; Dq = 1.48) caused an early growth inhibition of about 25%. The alveolar structures disappeared. Alveolar structures reappeared in 17% of the nodules 50 days after irradiation. A slight regrowth was observed 90 days after the irradiation. A 549 nodules supported an about 20-fold higher cis-platinum concentration than monolayer cells. An almost lethal X ray dose (15 Gy, inducing a survival of 0.005%) for monolayer cells induced a prolonged lag phase in nodules followed by a slight but regular regrowth. These results support the idea that cells maintained in three dimensional culture are more resistant to radiation and drug-induced injury than monolayer cells. The organotypic culture method may be a useful tool for determining the activity of antitumoral agents.

Adenocarcinoma↗

A new class of plant homeobox genes is expressed in specific regions of determinate symbiotic root nodules.

A cDNA containing a homeobox sequence was isolated from a soybean nodule-specific expression library. This homeobox cDNA, Ndx (nodulin homeobox), represents a small gene family with at least two members in soybean (Glycine max) and three in Lotus japonicus. One complete 3304 bp Ndx cDNA from L. japonicus encodes a protein, NDX, of 958 amino acids. An unusual type of homeodomain that differs in two of the most conserved amino acid positions in the consensus sequence is located close to the C-terminal and appears to be the only DNA-binding domain. Weak Ndx gene expression in the root increases very shortly after infection with Rhizobium and remains throughout nodule development. In situ hybridizations show cell-specific expression patterns that suggest developmentally separate regions in maturing determinate nodules. Thus in the maturing nodule Ndx and leghemoglobin genes are expressed in a mutually exclusive fashion. The Ndx transcript is also detectable in the young nodule primordium. Ndx expression is not confined to the root nodule since Ndx is also expressed in shoot and root meristems, indicating that the Ndx gene products might also be involved in developmental processes in other plant tissues.

Amino Acid Sequence↗

Stimulation of nodulation in field peas (Pisum sativum) by low concentrations of ammonium in hydroponic culture.

Although the inhibitory effects of high concentrations of mineral N (> 1.0 mM) on nodule development and function have often been studied, the effects of low, static concentrations of NH4+ (< 1.0 mM) on nodulation are unknown. In the present experiments we examine the effects of static concentrations of NH4+ at 0, 0.1 and 0.5 mM in flowing, hydroponic culture on nodule establishment and nitrogenase activity in field peas [Pisum sativum L. cv. Express (Svalöf AB)] for the initial 28 days after planting (DAP). Peas grown in the presence of low concentrations of NH4+ had significantly greater nodule numbers (up to 4-fold) than plants grown without NH4+. Nodule dry weight per plant was significantly higher at 14, 21 and 28 DAP in plants grown in the presence of NH4+, but individual nodule mass was lower than in plants grown without NH4+. The nodulation pattern of the plants supplied with NH4+ was similar to that often reported for supernodulating mutants, however the plants did not express other growth habits associated with supernodulation. Estimates of N2 fixation indicate that the plus-NH4+ peas fixed as much or more N2 than the plants supplied with minus-NH4+ nutrient solution. There were no significant differences in nodule numbers, nodule mass or NH4+ uptake between the plants grown at the two concentrations of NH4+. Nodulation appeared to autoregulate by 14 DAP in the minus-NH4+ treatment. Plant growth and N accumulation in the minus-NH4+ plants lagged behind those of the plus-NH4+ treatments prior to N2 fixation becoming well established in the final week of the experiment. The plus-NH4+ treatments appeared not to elicit autoregulation and plants continued to initiate nodules throughout the experiment.

Culture Media↗

Nod factors of Rhizobium leguminosarum bv. viciae and their fucosylated derivatives stimulate a nod factor cleaving activity in pea roots and are hydrolyzed in vitro by plant chitinases at different rates.

Nod factors (NFs) are rhizobial lipo-chitooligosaccharide signals that trigger root nodule development in legumes. Modifications of NF structures influence their biological activity and affect their degradation by plant chitinases. Nodulation of certain pea cultivars by Rhizobium leguminosarum bv. viciae requires modification of NFs at the reducing end by either an O-acetyl or a fucosyl group. Fucosylated NFs were produced by an in vitro reaction with NodZ fucosyltransferase and purified. Their biological activity on pea was tested by measuring their capacity to stimulate the activity of a hydrolase that cleaves NFs. Nonmodified and fucosylated NFs displayed this activity at nano- to picomolar concentrations, while a sulfated NF from Sinorhizobium meliloti was inactive. In an additional series of experiments, the stability of non-modified and fucosylated NFs in the presence of purified tobacco chitinases was compared. The presence of the fucosyl group affected the degradation rates and the accessibility of specific cleavage sites on the chitooligosaccharide backbone. These results suggest that the fucosyl group in NFs also weakens the interaction of NFs with certain chitinases or chitinase-related proteins in pea roots.

Chitinases↗

Nucleoside diphosphatase and 5'-nucleotidase activities of soybean root nodules and other tissues.

Nucleoside diphosphatase and 5'-nucleotidase activities were both found to be very high in extracts of soybean (Glycine max L.) root nodules. Both activities increased early in soybean nodule development, prior to the rise in leghemoglobin, and both were found at equivalent levels in nitrogenfixing and nonfixing nodules. Based on a survey of other tissues, these activities were both highest in soybean nodules (1300 nanomoles per milligram protein per minute, nucleoside diphosphatase and 500 nanomoles per milligram protein per minute, 5'-nucleotidase), but they were not always associated with each other; in some tissues one was high and the other low. Neither activity correlated well with ureide production; both seem, rather, to be primarily involved in some other metabolic function. Both the nucleoside diphosphatase and 5'-nucleotidase of soybean nodules were soluble proteins, and neither appeared to be associated with plastids, mitochondria, or bacteroids.

Journal Article↗

Subcutaneous granuloma annulare with Hodgkin's disease.

We report an 85-year-old woman with subcutaneous granuloma annulare. Three nodules developed on her scalp and sacral regions and gradually increased with tenderness. Histologically, a biopsy specimen of the nodule was interpreted as subcutaneous granuloma annulare because palisading granuloma was present in the dermis and subcutaneous fatty tissue. Laboratory tests, including RA, showed no remarkable changes except for hyperglycemia and glycosuria. These nodules spontaneously regressed without medication. One year later, she noted swelling of some lymph nodules in the left axillary region. These were diagnosed as Hodgkin's disease (mixed cellularity type). She was treated with chemotherapy, but died after two months. Subcutaneous granuloma annulare which occurs suddenly in the elderly may be a dermadrome of malignant blood disease.

Aged↗

Arthroscopic treatment of patellar clunk.

Excellent results have been reported with posterior stabilized total knee arthroplasty. A common complication relating to patellofemoral articulation is patellar clunk syndrome. Patellar clunk syndrome occurs when a fibrous nodule develops just proximal to the patellar button. At approximately 30 degrees to 45 degrees from full extension, the nodule catches the anterior flange of the femoral prosthesis, resulting in the clunk and a painful range of motion. The present study examines the use of arthroscopic debridement for this disorder. Thirty consecutive patients (32 knees) with the diagnosis of patellar clunk syndrome were evaluated at 1 year after arthroscopic debridement. All patients were evaluated clinically and radiographically according to the Knee Society score. In addition, patients were questioned specifically regarding anterior knee pain and patellofemoral symptoms. Radiographs were evaluated further regarding patella and component position. Patients were diagnosed with patellar clunk at an average of 12 months after their latest knee arthroplasty, with a range of 3 to 47 months. All patients complained of anterior knee pain and the clunk. All patients had a hypertrophic nodule at the junction of the proximal pole of the patella and quadriceps tendon and underwent arthroscopic debridement through a superolateral portal. All patients were free of patellar clunk postoperatively; one patient reported persistent anterior knee pain. Knee Society scores increased from an average of 64 points preoperative to 93 points postoperative. Radiographs showed patella alta in eight knees, patella baja in two. Four femoral components were in 5 degrees flexion. The present study represents the largest collection of data regarding patellar clunk syndrome. The data appear to support arthroscopic debridement as a successful treatment of patellar clunk syndrome.

Aged↗

Hepatic adenomata with type 1 glycogen storage disease.

In older patients with glucose-6-phosphatase deficiency adenomatous nodules develop within the liver parenchyma. Investigation of eight such patients, age 3 to 28 years, using radioisotopic scans, has demonstrated areas of depressed isotope uptake in the liver in all except the one preteenaged child. Three patients were further studied with hepatic angiograms and liver biopsy specimens. A diffuse nodularity, more widespread than apparent on isotopic scans, was demonstrated on angiograms. Although initial histologic study in each case showed adenomatous tissue without evidence of neoplasm, the development of hepatocellular carcinoma in one of our patients and in others from the literature suggests that the nodules may be premalignant.

Adolescent↗

The sulfate transporter SST1 is crucial for symbiotic nitrogen fixation in Lotus japonicus root nodules.

Symbiotic nitrogen fixation (SNF) by intracellular rhizobia within legume root nodules requires the exchange of nutrients between host plant cells and their resident bacteria. Little is known at the molecular level about plant transporters that mediate such exchanges. Several mutants of the model legume Lotus japonicus have been identified that develop nodules with metabolic defects that cannot fix nitrogen efficiently and exhibit retarded growth under symbiotic conditions. Map-based cloning of defective genes in two such mutants, sst1-1 and sst1-2 (for symbiotic sulfate transporter), revealed two alleles of the same gene. The gene is expressed in a nodule-specific manner and encodes a protein homologous with eukaryotic sulfate transporters. Full-length cDNA of the gene complemented a yeast mutant defective in sulfate transport. Hence, the gene was named Sst1. The sst1-1 and sst1-2 mutants exhibited normal growth and development under nonsymbiotic growth conditions, a result consistent with the nodule-specific expression of Sst1. Data from a previous proteomic study indicate that SST1 is located on the symbiosome membrane in Lotus nodules. Together, these results suggest that SST1 transports sulfate from the plant cell cytoplasm to the intracellular rhizobia, where the nutrient is essential for protein and cofactor synthesis, including nitrogenase biosynthesis. This work shows the importance of plant sulfate transport in SNF and the specialization of a eukaryotic transporter gene for this purpose.

Amino Acid Sequence↗

beta-Glycerophosphate-induced mineralization of osteoid does not alter expression of extracellular matrix components in fetal rat calvarial cell cultures.

When fetal rat calvarial cells are cultured in medium containing vitamin C, osteoid nodules develop after approximately 15 days of culture. Upon addition of an organic phosphate (beta-glycerophosphate, beta GP), these nodules mineralize. We have now used this system to explore the suggestion made by others that a negative feedback may exist between matrix mineralization on the one hand and the synthesis of alkaline phosphatase and bone matrix collagen on the other by analyzing the synthesis of these proteins and the levels of their mRNAs in mineralizing and nonmineralizing cultures. Our results indicate that in the osteoid nodule-bone nodule system, matrix mineralization did not affect the mRNA levels for osteopontin, type I collagen, bone sialoprotein, or osteocalcin. Synthesis of total protein and collagen and the osteocalcin content of culture media were also not different in the mineralizing and nonmineralizing cultures. However, alkaline phosphatase mRNA was increased in early mineralizing cultures and alkaline phosphatase activity in the cell layer was also increased in mineralizing cultures. Thus, the hypothesis that a direct negative feedback exists between mineralization and matrix protein synthesis is not supported by our experiments.

Alkaline Phosphatase↗

Heterogeneity of sucrose synthase genes in bean (Phaseolus vulgaris L.): evidence for a nodule-enhanced sucrose synthase gene.

Sucrose synthase (SS), the key sucrose hydrolytic enzyme (EC 2.4.1.13), plays an important role in N(2)-fixing nodule metabolism. It has also been proposed that N(2) fixation in soybean nodules could be mediated by the potential to metabolize sucrose. The isolation and characterization of a nodule-enhanced SS full-length cDNA clone from the bean Phaseolus vulgaris is reported here. Southern blot analysis indicated that there are at least two SS genes in beans. Using a 3' specific probe from this SS cDNA clone, it was possible to identify a nodule-enhanced SS gene (PvSSn), which is expressed almost exclusively in nodules. A second gene (PvSS), which is expressed in all tissues tested, was detected using a coding region probe. Nodule-enhanced PvSSn transcript levels, but not the enzyme activity or protein amount, is reduced during nodule development. These data indicated that this reduction could be due to a limitation on the carbon availability in the nodule. PvSSn expression is reduced in the asparagine-treated nodules. By contrast, PvSSn transcript levels in nodules increased in the presence of glutamine, allantoin and allopurinol. This result suggests a relationship between ureide transport and SS regulation and could help in understanding why the ureide transport mechanism is activated during nitrogen fixation in bean.

Allantoin↗