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Exopolysaccharides in plant-bacterial interactions.

Rhizobial plant symbionts and bacterial plant pathogens produce exopolysaccharides that often play essential roles in the plant interaction. Many of these exopolysaccharides are acidic heteropolysaccharides that have repeating subunit structures with carbohydrate and noncarbohydrate substituents, while others are homopolysaccharides such as alginate, levan, cellulose, and glucan. While the homopolysaccharides are synthesized by mechanisms that vary with the particular polysaccharide, the heteropolysaccharides as a rule are synthesized by subunit assembly from nucleotide diphosphate-sugar precursors on a membrane-bound lipid carrier followed by polymerization and secretion. Many mutants in exopolysaccharide synthesis have been isolated, and in several cases this has led to the identification of genes that function in particular steps of biosynthesis, as well as in regulation of exopolysaccharide biosynthesis. The genetic regulation of exopolysaccharide synthesis in many plant pathogens is complex, perhaps reflecting the various niches, free living and in planta, in which exopolysaccharides function. In some cases, exopolysaccharide synthesis is regulated coordinately with other virulence factors, and in other cases separately. Regulatory genes that have homology to the two-component sensor and transcriptional effector systems are a common motif. In Rhizobium species, exopolysaccharide synthesis is regulated by transcriptional as well as posttranslational mechanisms. Exopolysaccharides function differently in the root-nodule symbiosis versus plant pathogenesis. Specific Rhizobium exopolysaccharide structures promote nodule development and invasion in legumes that form indeterminate nodules. In plant pathogenesis, less specific mechanisms of pathogenesis occur: exopolysaccharides cause wilting by blocking xylem vessels, are partly responsible for water-soaked lesions, and may also aid in invasion, growth, and survival in plant tissues.

Carbohydrate Sequence↗

Thyroid nodules. The place of fine-needle aspiration biopsy in management.

Although the advent of fine-needle aspiration biopsy (FNAB) has revolutionized evaluation of thyroid nodules, the procedure remains an imperfect instrument when used alone. Careful consideration of factors in the patient's history and physical examination can signal an indication for biopsy; an abundance of high-risk factors should override even negative biopsy results. Suspicious (cellular) biopsy results require singular attention. Subsequent radioisotopic imaging revealing an autonomous (hot) nodule essentially excludes the possibility of carcinoma, but warm or cold nodules require surgical excision for definitive diagnosis. Low false-negative rates accompanying benign or indeterminate results on FNAB permit management with suppressive therapy and periodic examination to detect growth or changes in characteristics of the nodule, development of adenopathy, or vocal cord paralysis. Persistent nodules justify rebiopsy in 1 year, or sooner if new risk factors emerge.

Algorithms↗

Thyroid nodules in Graves' disease: classification, characterization, and response to treatment.

Thyroid nodules in patients with Graves' disease are common and raise concern about coexistent thyroid malignancy. Alternative etiologies for such nodules are more frequent, and separation from thyroid malignancy is important for rational management. To characterize the types of thyroid nodules present in patients with Graves' disease, evaluate the response of these nodules to treatment, and stratify the risk of thyroid malignancy, we report on a retrospective single center study in an ambulatory setting of 468 Graves' patients ages (12-75) followed for 1-31 years (mean = 5.1) treated with radioiodine (n = 345), near total thyroidectomy (n = 19), thionamide antithyroid drugs (n = 88) or observation (n = 18). Sixty patients (12.8% of the total) had nodules and were classified as: (1) Graves' disease with a solitary hypofunctional nodule (n = 27, 5.8%); (2) Graves' disease with multiple nodules (n = 21, 4.5%); (3) Graves' disease with autonomous nodule (n = 4, 1%); or (4) patchy Graves' disease (n = 8, 1.7%). Six patients (1.3% of total or 10% of nodule patients) had cancer: 5 in group 1 and 1 in group 4. Based on the response to therapy or surgical and fine-needle aspirate pathology, the remaining patients demonstrated pseudo-nodules of autoimmune thyroid disease, autonomous nodules of Marine-Lenhart syndrome, colloid goiter, hyperplastic adenomatous disease, and Hashitoxicosis. In conclusion, Graves' patients present with or may develop nodules commonly (12.6%) and the majority of these are benign expressions of autoimmune changes and coexistent nodular goiter. Thyroid cancer occurs in 10% of all nodules, 19% of palpable solitary cold nodules and 1.3% of the total patients. If the fine-needle aspiration biopsy (FNAB) cytology is benign, it is reasonable to use nonsurgical therapy. Any single cold nodule that remains or develops after treatment needs careful re-examination due to the high risk of malignancy.

Adolescent↗

Influences of diethylnitrosamine on longevity of surrounding hepatocytes and progression of transplanted persistent nodules during phenobarbital promotion of hepatocarcinogenesis.

The possibility that phenobarbital (PB) selectively promotes liver nodule development by decreasing survival of surrounding hepatocytes previously exposed to diethylnitrosamine (DENA) was evaluated. Livers of F-344 rats were labelled with [3H-methyl]-thymidine (3H-TdR) during developmental or regenerative growth. Neonatal rats given 3H-TdR between days 3 and 12 were subjected at 12 weeks of age to partial hepatectomy (PH) followed 24 hr later by DENA (10 mg/kg) or saline. Subsequent administration of PB (0.1% in drinking water) for 28 weeks reduced total liver label to 46 +/- 10% (saline group) or 40 +/- 4% (DENA group). Adult male rats initiated with DENA (200 mg/kg) and later labelled with 3H-TdR after PH also lost total liver label during 28 weeks' promotion with PB (0.05% in water) at rates similar to those exhibited by noninitiated rats given PB, and by DENA-treated or control rats not given PB. Large persistent (12 weeks) liver nodules generated by DENA in the Solt-Farber model were transplanted as small fragments into the spleens of syngeneic rats previously given 0, 100 or 200 mg/kg of DENA. Subsequent exposure to PB (0.05% in drinking water for 40 weeks) or Aroclor 1254 (6 X 300 mg/kg per month) promoted nodule and cancer development only in livers of DENA-initiated recipients. Surviving transplanted nodules remained as small microscopic clusters even after 40 weeks of promotion. However, PB increased transplant survival (50% vs. 21% in controls) whereas Aroclor reduced it to 8%. These findings indicate that promotion of liver nodules by PB occurs without enhanced mortality of surrounding hepatocytes previously damaged by DENA. They further suggest that promoters such as PB and PCBs do not directly influence the progression of established persistent nodules.

Animals↗

Thyroid nodules in Graves' disease: classification, characterization, and response to treatment.

Thyroid nodules in patients with Graves' disease are common and raise concern about coexistent thyroid malignancy. Alternative etiologies for such nodules are more frequent, and separation from thyroid malignancy is important for rational management. To characterize the types of thyroid nodules present in patients with Graves' disease, evaluate the response of these nodules to treatment, and stratify the risk of thyroid malignancy, we report on a retrospective single center study in an ambulatory setting of 468 Graves' patients ages (12-75) followed for 1-31 years (mean = 5.1) treated with radioiodine (n = 345), near-total thyroidectomy (n = 19), thionamide antithyroid drugs (n = 88), or observation (n = 18). Sixty patients (12.8% of the total) had nodules and were classified as: (1) Graves' disease with a solitary hypofunctional nodule (n = 27, 5.8%); (2) Graves' disease with multiple nodules (n = 21, 4.5%); (3) Graves' disease with autonomous nodule (n = 4, 1%); or (4) patchy Graves' disease (n = 8, 1.7%). Six patients (1.3% of total or 10% of nodule patients) had cancer: five in group 1 and and one in Group 4. Based on the response to therapy or surgical and fine-needle aspirate pathology, the remaining patients demonstrated pseudo-nodules of autoimmune thyroid disease, autonomous nodules of Marine-Lenhart syndrome, colloid goiter, hyperplastic adenomatous disease, and Hashitoxicosis. In conclusion, Graves, patients commonly present with or may develop nodules (12.6%) and the majority of these are benign expressions of autoimmune changes and coexistent nodular goiter. Thyroid cancer occurs in 10% of all nodules, 19% of palpable solitary cold nodules, and 1.3% of the total patients. If the fine-needle aspiration biopsy (FNAB) cytology is benign, it is reasonable to use nonsurgical therapy. Any single cold nodule that remains or develops after treatment needs careful re-examination due to the high risk of malignancy.

Adolescent↗

Environmental regulation of rhizobial symbiotic nitrogen fixation genes.

Adaptation of rhizobia to a symbiotic life style and synthesis of the nitrogen-fixing apparatus are coordinated with nodule development by the microaerobic conditions prevailing in the central nodule tissue. Sensing and transduction of the "low oxygen' signal involves similar regulatory elements in different rhizobia, yet, these are combined in species-specific circuits.

Environment↗

Is benign prostatic hyperplasia (BPH) an immune inflammatory disease?

OBJECTIVES: Chronic inflammation has been documented for years in benign prostatic hyperplasia (BPH), but only now has it become evident as a major factor in disease progression. This review highlights the immunologic key features of chronic inflammation in BPH and the present interpretation of these changes in the development and progression of BPH. RESULTS: Almost all BPH specimens show inflammatory infiltrates at histologic examination, but correlation to bacterial or other foreign antigens has not been established. Recognition of prostate secretion products by autoreactive T cells and animal models on experimental prostatitis demonstrate an autoimmune component to chronic inflammation. The infiltrate consists predominantly of chronically activated CD4(+) T lymphocytes, which are permanently recruited to prostate tissue via elevated expression of interleukin 15 (IL-15) and interferon gamma (IFN-gamma), proinflammatory cytokines produced by smooth muscle and T cells, respectively. With the appearance of infiltrates, T cell-derived cytokine production of IFN-gamma, IL-2, and transforming growth factor beta increases, the former two ultimately reaching 10-fold and the latter 2-fold higher levels in fully developed BPH than in normal prostates. As "mature" BPH nodules develop, IL-4 and IL-13 expression increases >2-fold, corresponding to a T-helper (Th)0/Th2 cytokine pattern. Dysregulation of the immune response in BPH may occur via elevated expression of proinflammatory IL-17, which stimulates a multifold production of IL-6 and IL-8, key executors of stromal growth in BPH. CONCLUSIONS: These data strongly suggest that BPH is an immune inflammatory disease. Unravelling the specific nature of immune dysregulation may help design novel drugs with these specific targets in mind.

Autoimmunity↗

Aerenchyma formation and recovery from hypoxia of the flooded root system of nodulated soybean.

BACKGROUND AND AIMS: Flooding results in hypoxia of the root system to which N2 fixation of nodulated roots can be especially sensitive. Morphological adaptions, such as aerenchyma formation, can facilitate the diffusion of oxygen to the hypoxic tissues. Using soybean, the aim of the study was to characterize the morphological response of the nodulated root system to flooding and obtain evidence for the recovery of N metabolism. METHODS: Sections from submerged tissues were observed by light microscopy, while sap bleeding from the xylem was analysed for nitrogenous components. KEY RESULTS: Flooding resulted in the rapid formation of adventitious roots and aerenchyma between the stem (immediately above the water line), roots and nodules. In the submerged stem, taproot, lateral roots and adventitious roots, lysigenous aerenchyma arose initially in the cortex and was gradually substituted by secondary aerenchyma arising from cells derived from the pericycle. Nodules developed aerenchyma from cells originating in the phellogen but nodules situated at depths greater than 7-8 cm showed little or no aerenchyma formation. As a result of aerenchyma formation, porosity of the taproot increased substantially between the 4th and 7th days of flooding, coinciding with the recovery of certain nitrogenous products of N metabolism of roots and nodules transported in the xylem. Thus, on the first day of flooding there was a sharp decline in xylem ureides and glutamine (products of N2 fixation), together with a sharp rise in alanine (product of anaerobic metabolism). Between days 7 and 10, recovery of ureides and glutamine to near initial levels was recorded while recovery of alanine was partial. CONCLUSIONS: N metabolism of the nodulated soybean root system can recover at least partially during a prolonged period of flooding, a process associated with aerenchyma formation.

Nitrogen Fixation↗

Actin monoubiquitylation is induced in plants in response to pathogens and symbionts.

Most dramatic examples of actin reorganization have been described during host-microbe interactions. Plasticity of actin is, in part, due to posttranslational modifications such as phosphorylation or ubiquitylation. Here, we show for the first time that actins found in root nodules of Phaseolus vulgaris are modified transiently during nodule development by monoubiquitylation. This finding was extended to root nodules of other legumes and to other plants infected with mycorrhiza or plant pathogens such as members of the genera Pseudomonas and Phytophthora. However, neither viral infections nor diverse stressful conditions (heat shock, wounding, or osmotic stress) induced this response. Additionally, this phenomenon was mimicked by the addition of a yeast elicitor or H2O2 to Phaseolus vulgaris suspension culture cells. This modification seems to provide increased stability of the microfilaments to proteolytic degradation and seems to be found in fractions in which the actin cytoskeleton is associated with membranes. All together, these data suggest that actin monoubiquitylation may be considered an effector mechanism of a general plant response against microbes.

Actins↗

Soybean root nodule acid phosphatase.

Acid phosphatases are ubiquitous enzymes that exhibit activity against a variety of substrates in vitro, although little is known about their intracellular function. In this study, we report the isolation, characterization, and partial sequence of the major acid phosphatase from soybean (Glycine max L.) root nodules. The phosphatase was purified predominantly as a heterodimer with subunits of 28 and 31 kD; homodimers of both subunits were also observed and exhibited phosphatase activity. In addition to the general phosphatase substrate, p-nitrophenyl phosphate, the heterodimeric form of the enzyme readily hydrolyzed 5'-nucleotides, flavin mononucleotide, and O-phospho-L-Tyr. Low or negligible activity was observed with ATP or polyphosphate. Purified nodule acid phosphatase was stimulated by magnesium, inhibited by calcium and EDTA, and competitively inhibited by cGMP and cAMP with apparent Ki values of 7 and 12 microM, respectively. Partial N-terminal and internal sequencing of the nodule acid phosphatase revealed homology to the soybean vegetative storage proteins. There was a 17-fold increase in enzyme activity and a noticeable increase in protein levels detected by immunoblotting methods during nodule development. Both of these parameters were low in young nodules and reached a peak in mature, functional nodules, suggesting that this enzyme is important for efficient nodule metabolism.

Acid Phosphatase↗

Effect of salinity on nodule formation by soybean.

A split-root growth system was employed to evaluate the effect of NaCl on nodule formation by soybean (Glycine max L. Merr. cv Davis). By applying the salinity stress and rhizobial inoculum to only one-half the root system, the effects of salinity on shoot growth were eliminated in the nodulation process. Rhizobium colonization of inoculated root surfaces was not affected by the salt treatments (0.0, 26.6, 53.2, and 79.9 millimolar NaCl). While shoot dry weight remained unaffected by the treatments, total shoot N declined from 1.26 grams N per pot at 0.0 millimolar NaCl to 0.44 grams N per pot at 79.9 millimolar NaCl. The concentration of N in the shoot decreased from 3.75% N (0.0 millimolar NaCl) to 1.26% N at 79.9 millimolar NaCl. The decrease in shoot N was attributed to a sharp reduction in nodule number and dry weight. Nodule number and weight were reduced by approximately 50% at 26.6 millimolar NaCl, and by more than 90% at 53.2 and 79.9 millimolar NaCl. Nodule development, as evidenced by the average weight of a nodule, was not as greatly affected by salt as was nodule number. Total nitrogenase activity (C(2)H(2) reduction) decreased proportionally in relation to nodule number and dry weight. Specific nitrogenase activity, however, was less affected by salinity and was not depressed significantly until 79.9 millimolar NaCl. In a second experiment, isolates of Rhizobium japonicum from nodules formed at 79.9 millimolar NaCl did not increase nodulation of roots under salt stress compared to nodule isolates from normal media (0.0 millimolar NaCl). Salt was applied (53.2 millimolar NaCl) to half root systems at 0, 4, 12, and 96 hours from inoculation in a third experiment. By delaying the application of salt for 12 hours, an increase in nodule number, nodule weight, and shoot N was observed. Nodule formation in the 12- and 96-hour treatments was, however, lower than the control. The early steps in nodule initiation are, therefore, extremely sensitive to even low concentrations of NaCl. The sensitivity is not related to rhizobial survival and is probably due to the salt sensitivity of root infection sites.

Journal Article↗

Nodular breast lesions during pregnancy and lactation.

A review of the clinical and pathological features of 30 lactating nodules which were retrieved over the period 1975-1991 was undertaken. Clinically, the nodules occurred during any pregnancy and in subsequent pregnancies no further nodules developed. There were no favoured sites or lateralization of nodules, nor was there any correlation between nodule occurrence and ethnic background. Morphologically, a pre-existing underlying lesion was readily recognized in 18 cases. Seven fibroadenomas, five tubular adenomas, two of which were infarcted, and six breast hamartomas were identified. The other 12 cases were well circumscribed nodules with a variable degree of inflammation and lobular hyperplasia. It is best to recognize these lesions as a heterogeneous group and designate them as lactating nodules, noting any underlying pathological process rather than using the older term lactating adenoma which implies a single neoplastic entity.

Adenoma↗

Morphologic and histochemical analysis of hepatocytes transplanted into syngeneic hosts.

Suspensions of freshly isolated hepatocytes were prepared by collagenase perfusion of livers of adult Fischer 344 female rats. The cells were injected into the dorsal fascia of 2/3 partially hepatectomized syngeneic hosts (10(6) cells per injection site) and were monitored from 3 days to 3 months after injection. Brown nodules developed at the transplantation site. Histologic examination of the nodules revealed that the hepatocytes were arranged in cords and clusters surrounded by fibrovascular connective tissue. Bile ductules were also seen. Hepatocytes were positive for glucose-6-phosphatase. Staining for gamma-glutamyltranspeptidase showed that the parenchymal hepatocytes were mostly (approximately 95%) negative, whereas bile ductules were positive. These histochemical findings were seen in hepatocytes up to 3 months after transplantation and did not vary with the age of the transplants. Electron-microscopic examination of the transplanted nodules demonstrated that the cells maintained the characteristics of hepatocellular cytoplasmic structure. The relationship between the bile canaliculi and the stromal vessels was found to be similar to the bile canaliculi and hepatic sinusoid polarity seen in the normal liver. Autoradiographic analysis showed that a fraction of the transplanted cells was active in DNA synthesis. This system may become a tool in the study of survival and neoplastic transformation of hepatocytes as a result of exposure to X-irradiation and chemical carcinogens.

Animals↗

Key role of bacterial NH(4)(+) metabolism in Rhizobium-plant symbiosis.

Symbiotic nitrogen fixation is carried out in specialized organs, the nodules, whose formation is induced on leguminous host plants by bacteria belonging to the family Rhizobiaceae: Nodule development is a complex multistep process, which requires continued interaction between the two partners and thus the exchange of different signals and metabolites. NH(4)(+) is not only the primary product but also the main regulator of the symbiosis: either as ammonium and after conversion into organic compounds, it regulates most stages of the interaction, from the production of nodule inducers to the growth, function, and maintenance of nodules. This review examines the adaptation of bacterial NH(4)(+) metabolism to the variable environment generated by the plant, which actively controls and restricts bacterial growth by affecting oxygen and nutrient availability, thereby allowing a proficient interaction and at the same time preventing parasitic invasion. We describe the regulatory circuitry responsible for the downregulation of bacterial genes involved in NH(4)(+) assimilation occurring early during nodule invasion. This is a key and necessary step for the differentiation of N(2)-fixing bacteroids (the endocellular symbiotic form of rhizobia) and for the development of efficient nodules.

Bacterial Proteins↗

The relevance of DNA repair in the cytotoxic response of mammalian cells to alkylating agents.

Some experiences on the relevance of the DNA repair mechanisms in the sensitivity of mammalian cells to alkylating agents are illustrated. Using mouse tumor cell lines we showed an interesting correlation between O6-alkylguanine repair, reduced cross-link formation, and resistance to antineoplastic drugs like chloroethylnitrosoureas. The same lines displayed cross-resistance to a methylating monomethyltriazene indicating a possible role of O6-methylguanine in the toxicity of alkylating agents. In other studies we characterized some modified tissues (nodules) developed during hepatic chemical carcinogenesis in the rat. Such hyperplastic nodules displayed higher DNA repair ability, in keeping with their resistant phenotype against toxic and carcinogenic compounds. Both approaches, using cells in culture or animals, gave interesting hints suggesting future developments which may be useful in the understanding of cell transformation mechanisms as well as in cancer chemotherapy.

Alkylating Agents↗

Accelerated nodulosis during low dose methotrexate therapy for rheumatoid arthritis. An analysis of ten cases.

OBJECTIVE: To obtain information on the occurrence of accelerated nodulosis during methotrexate (MTX) for rheumatoid arthritis (RA), localization, size and presence in heart and lungs of these nodules, predisposing factors, relationship with other extraarticular manifestations (EAM) and their histological features. METHODS: Ten patients with accelerated nodulosis were studied. Four participated in a double blind study of MTX and azathioprine. Patient characteristics, localization, size and histopathology of new nodules were determined. Echocardiography and chest roentgenograms were performed. RESULTS: Accelerated nodulosis occurred exclusively during treatment with MTX in our double blind study. The estimated incidence was 8%. One patient reported was rheumatoid factor negative. Newly developed nodules were small, and located in the fingers in all patients and in additional sites in 7. Pretreatment nodules were not found in the fingers. In one patient nodules on the mitral valve were found, but this was not likely to be associated with the use of MTX. No new pulmonary nodules were found. Other EAM developed concurrently in 4 patients. Histopathology revealed typical rheumatoid nodules. In 3 patients nodulosis regressed after MTX was stopped. In 2 of them they recurred after a rechallenge. CONCLUSIONS: Accelerated nodulosis during MTX for RA is not rare, and occurs despite good clinical response of polyarthritis. Rheumatoid factor positivity is not a prerequisite. New nodules are small and preferentially located in the fingers. Recurrence after rechallenge with MTX suggests causality.

Aged↗

Characteristics of granulation tissue which promote hypertrophic scarring.

Hypertrophic scars and keloids are characterized by nodules of collagen that originate in granulation tissue arising from full thickness or deep 2 degrees injuries to the skin. Fifty-six granulation tissues of varying ages post-injury were examined morphologically for evidences of how the nodules and, thus, the scar form. New microvessels grow in ascension towards the free surface in a milieu of inflammatory cells and fibroblasts. Collagen deposition increases with time from the base of the wound to the free surface and begins to concentrate between lateral branching of the new microvessels. Computer derived serial reconstructions of hypertrophic scar nodules indicate they are of varying shape and size probably due to fusion of adjacent microvascular collagen masses between lateral branches. This is accomplished by the gradual but persistent degeneration of microvascular endothelia and pericytes. Fifty-six pieces of granulation tissue taken from 5 cases of varying age post-injury were implanted into nude mice. Several proceeded to develop scar and some of those developed nodules. The latter developed only when the zero-time implant contained lateral microvascular branches. Hypertrophic scars and keloids are a product of granulation tissue elements, the most important of which are primed active fibroblasts and excessive microvascular regeneration, including lateral branching, which subsequently degenerates, in part, promoting nodule formation and remodeling.

Animals↗

Organogenesis of legume root nodules.

The N(2)-fixing nodules elicited by rhizobia on legume roots represent a useful model for studying plant development. Nodule formation implies a complex progression of temporally and spatially regulated events of cell differentiation/dedifferentiation involving several root tissues. In this review we describe the morphogenetic events leading to the development of these histologically well-structured organs. These events include (1) root hair deformation, (2) development and growth of infection threads, (3) induction of the nodule primordium, and (4) induction, activity, and persistence of the nodular meristem and/or of foci of meristematic activities. Particular attention is given to specific aspects of the symbiosis, such as the early stages of intracellular invasion and to differentiation of the intracellular form of rhizobia, called symbiosomes. These developmental aspects were correlated with (1) the regulatory signals exchanged, (2) the plant genes expressed in specific cell types, and (3) the staining procedures that allow the recognition of some cell types. When strictly linked with morphogenesis, the nodulation phenotypes of plant and bacterial mutants such as the developmental consequence of the treatment with metabolic inhibitors, metabolic intermediates, or the variation of physical parameters are described. Finally, some aspects of nodule senescence and of regulation of nodulation are discussed.

Bacteria↗