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Proteomic analysis revealed alterations of the Plasmodium falciparum metabolism following salicylhydroxamic acid exposure. Directory of Open Access Journals Sweden. The latter involves an alternative oxidase. Though the Plasmodium falciparum alternative oxidase is not yet identified, a specific inhibitor of this enzyme, salicylhydroxamic acid SHAM, showed a drug effect on P. The present study aimed to highlight the metabolic pathways that are affected in P.
Design: A proteomic approach was used to analyze the P. Results: After SHAM exposure, 26 proteins were significantly deregulated using a fluorescent two dimensional-differential gel electrophoresis.
Among these deregulated proteins. Full Text Available Metal ions are widely present in flotation pulp. Metal ions change solution chemistry and mineral surface properties, consequently affecting mineral flotation. In this work, the effect of strontium ions on bastnaesite flotation with salicylhydroxamic acid SHA was investigated by microflotation tests, contact angle measurements, zeta-potential measurements, and X-ray photoelectron spectroscopy XPS analysis.
Microflotation tests confirmed that the addition of strontium ions decreased bastnaesite floatability, compared with that in the absence of strontium ions. Contact angle measurements suggested that the pretreatment of strontium ions decreased SHA adsorption. Zeta potential measurements confirmed that the bastnaesite was depressed by the adsorption of positively charged strontium species, and the lower adsorption capacity of SHA onto the bastnaesite surfaces was obtained after modifying with strontium ions.
This occurrence hindered surface Ce sites which chelated with SHA and therefore, decreased bastnaesite floatability. Effect of salicylhydroxamic acid on endosperm strength and embryo growth of Lactuca sativa L. To determine whether SHAM acts on the embryo or the endosperm, we investigated separately effects of SHAM on growth potential of isolated embryos as well as on endosperm strength. Embryo growth potential was quantified by incubating decoated embryos in various concentrations of osmoticum and measuring subsequent radicle elongation.
Growth potential of embryos isolated from seeds pretreated with 4 millimolar SHAM was equal to that of untreated controls. To determine if the embryo must be in contact with the endosperm of SHAM to weaken the endosperm, some endosperms were incubated with SHAM only after dissection from seeds.
There was no difference in rupture strength in the cotyledonary region of endosperm isolated from seeds treated with SHAM in buffer or buffer alone. SHAM therefore stimulates germination not by enhancing embryo growth potential, but by weakening the micropylar region of the endosperm enclosing the embryo.
Metal complexes of salicylhydroxamic acid H2Sha , anthranilic hydroxamic acid and benzohydroxamic acid. Crystal and molecular structure of [Cu phen 2 Cl ]Cl x H2Sha, a model for a peroxidase-inhibitor complex.
In the preparation of ternary metal ion complexes of these ligands and 1,phenanthroline phen the crystalline complex [Cu phen 2 Cl ]Cl x H2Sha was obtained and its crystal structure determined. This complex is a model for hydroxamate-peroxidase inhibitor interactions.
Metal complexes which are formed in biological systems between a ligand and a metal ion are in dynamic In a continuation of our research work oriented towards studying the Antimicrobial activity techniques. Preparation of test samples. Salicylic acid -independent plant defence pathways. Salicylic acid is an important signalling molecule involved in both locally and systemically induced disease resistance responses.
Recent advances in our understanding of plant defence signalling have revealed that plants employ a network of signal transduction pathways , some of which are independent of salicylic acid. Evidence is emerging that jasmonic acid and ethylene play key roles in these salicylic acid -independent pathways. Cross-talk between the salicylic acid -dependent and the salicy A pivotal role of the jasmonic acid signal pathway in mediating radiation-induced bystander effects in Arabidopsis thaliana.
In higher plants, jasmonic acid JA and its bioactive derivatives are well accepted as systemic signal transducers that are produced in response to various environmental stresses. It is therefore speculated that the JA signal pathway might play a potential role in mediating radiation-induced bystander signaling of root-to-shoot.
After root irradiation, the aerial parts of A. Using the root micro-grafting technique, the JA signal pathway was shown to participate in both the generation of bystander signals in irradiated root cells and radiation responses in the bystander aerial parts of plants. Although radiation-induced bystander effects RIBE in Arabidopsis thaliana have been well demonstrated in vivo, little is known about their underlying mechanisms, particularly with regard to the participating signaling molecules and signaling pathways.
Recent advances in our understanding of plant defence signalling have revealed that plants employ a network of signal transduction pathways , some of which are. SHAM at 1 or 2 mM inhibits dissolved inorganic carbon DIC concentrating mechanisms in unicellular green algae as measured by photosynthetic oxygen evolution or by 14 C-inorganic carbon uptake using silicone oil centrifugation techniques.
This inhibition was reversed by high levels of DIC whereby the cells do not require the concentrating mechanism. Scenedesmus adapted to air at pH 9.
It is important to establish low optimum concentrations of SHAM, which varied with the algal species. Identification of an itaconic acid degrading pathway in itaconic acid producing Aspergillus terreus. Itaconic acid , one of the most promising and flexible bio-based chemicals, is mainly produced by Aspergillus terreus.
Previous studies to improve itaconic acid production in A. In this study, we used transcriptomic, proteomic, bioinformatic, and in vitro enzymatic analyses to identify three key enzymes, itaconyl-CoA transferase IctA , itaconyl-CoA hydratase IchA , and citramalyl-CoA lyase CclA , that are involved in the catabolic pathway of itaconic acid in A. In the itaconic acid catabolic pathway in A. Moreover, IctA can also catalyze the reaction between citramalyl-CoA and succinate to generate succinyl-CoA and citramalate.
These results, for the first time, identify the three key enzymes, IctA, IchA, and CclA, involved in the itaconic acid degrading pathway in itaconic acid producing A. The results will facilitate the improvement of itaconic acid production by metabolically engineering the catabolic pathway of itaconic acid in A. Purpose: To investigate the pathways involved in the oxidation of chlorogenic acid CA and phenol metabolism in honeysuckle buds.
Methods: A model that mimics CA oxidation by honeysuckle polyphenol oxidase PPO by controlling the reaction temperature or reaction duration was employed, and the resulting products Amino acids as regulators and components of nonproteinogenic pathways.
Amino acids are not only important precursors for the synthesis of proteins and other N-containing compounds, but also participate in the regulation of major metabolic pathways. J Electroanal Chem ; NO has been shown to act as an inducer or suppressor of signalling along AMPK-independent pathways regulate skeletal muscle fatty acid oxidation. To address this issue we have investigated the requirement for skeletal muscle AMPK in controlling aminoimidazolecarboxymidebeta-d-ribofuranoside AICAR and contraction-stimulated fatty acid oxidation utilizing transgenic mice expressing a muscle-specific kinase Full Text Available Intestine is always exposed to external environment and intestinal microorganism; thus it is more sensitive to dysfunction and dysbiosis, leading to intestinal inflammation, such as inflammatory bowel disease IBD, irritable bowel syndrome IBS, and diarrhea.
An increasing number of studies indicate that dietary amino acids play significant roles in preventing and treating intestinal inflammation. The review aims to summarize the functions and signaling mechanisms of amino acids in intestinal inflammation.
Amino acids , including essential amino acids EAAs, conditionally essential amino acids CEAAs, and nonessential amino acids NEAAs, improve the functions of intestinal barrier and expressions of anti-inflammatory cytokines and tight junction proteins but decrease oxidative stress and the apoptosis of enterocytes as well as the expressions of proinflammatory cytokines in the intestinal inflammation.
The innate immune system provides the first line of defense against pathogen infection though also influences pathways involved in cancer immunosurveillance. The innate immune system relies on a limited set of germ line-encoded sensors termed pattern recognition receptors PRRs , signaling proteins and immune response factors. Cytosolic receptors mediate recognition of danger damage-associated molecular patterns DAMPs signals. Once activated, these sensors trigger multiple signaling cascades, converging on the production of type I interferons and proinflammatory cytokines.
Recent studies revealed that PRRs respond to nucleic acids NA released by dying, damaged, cancer cells, as danger DAMPs signals, and presence of signaling proteins across cancer types suggests that these signaling mechanisms may be involved in cancer biology. DAMPs play important roles in shaping adaptive immune responses through the activation of innate immune cells and immunological response to danger DAMPs signals is crucial for the host response to cancer and tumor rejection. The involvement of NA-sensing mechanisms in the antitumor response makes these pathways attractive drug targets.
In addition, we present a targeted selection of recent clinical trials employing agonists of cytosolic NA-sensing pathways showing how these pathways. Kynurenine acid - metabolism and regulation of kynurenine pathway. KYNA probably plays an important role in the pathogenesis of many neurodegenerative and psychiatric diseases. The reduced KYNA concentration is characteristic for multiple sclerosis, Parkinson's disease, Huntington's disease and epilepsy. KYNA is an organic compound naturally occurring in nature.
This amino acid belongs to the group of exogenous amino acids and can be synthesized by plants and bacteria alone. Lower growth temperature increases alternative pathway capacity and alternative oxidase protein in tobacco. Suspension cells of NT1 tobacco Nicotiana tabacum L. Mitochondria isolated from cells maintained at 30 degrees C had a low capacity to oxidize succinate via the alternative pathway , whereas mitochondria isolated from cells 24 h after transfer to 18 degrees C displayed, on average, a 5-fold increase in this capacity from 7 to 32 nanoatoms oxygen per milligram protein per minute.
This increased capacity was lost upon transfer of cells back to 30 degrees C. A monoclonal antibody to the terminal oxidase of the alternative pathway the alternative oxidase from Sauromatum guttatum T. Elthon, R. Nickels, L. McIntosh  Plant Physiology recognized a kilodalton mitochondrial protein in tobacco. There was an excellent correlation between the capacity of the alternative path in isolated tobacco mitochondria and the levels of this kilodalton alternative oxidase protein.
Cycloheximide could inhibit both the increased level of the kilodalton alternative oxidase protein and the increased alternative pathway capacity normally seen upon transfer to 18 degrees C. We conclude that transfer of tobacco cells to the lower temperature increases the capacity of the alternative pathway due, at least in part, to de novo synthesis of the kilodalton alternative oxidase protein.
Taking Rumex K-1 leaves as test materials, this paper studied the role of mitochondrial alternative oxidase AOX pathway in photoprotection under different light intensities. Under low light intensity micromol x m -2 x s -1 , and after treated with salicylhydroxamic acid to inhibit the AOX pathway , the leaf actual photochemical efficiency of PS II, linear electron transport rate of photosynthesis, and photosynthetic O2 evolution rate all decreased significantly while the non-Q B reducing reaction center had a significant increase, indicating that under low light, the photoinhibition was aggravated while the scavenging enzymes of reactive oxygen species ROS increased, which avoided the over-accumulation of ROS and partially alleviated the photoinhibition of Rumex K-1 leaves.
Under high light intensity micromol x m -2 x s -1 , the inhibition of AOX pathway caused more severe photoinhibition, and the increased activities of ROS scavenging enzymes were insufficient to prevent the over-accumulation of ROS. This study demonstrated that AOX pathway played an important role in the photoprotection in Rumex K-1 leaves under both high and low light intensities, and the role of AOX pathway in photoprotection under high light could be irreplaceable by the other photoprotection pathways in chloroplast.
Fatty acid hydroperoxides pathways in plants. A review. Full Text Available The present paper focusses on the fatty acid hydroperoxides pathways , mainly hydroperoxide lyase and hydroperoxide dehydrase. For each enzyme, the definition, occurrence and subcellular localization is presented.
Particular attention is given to reaction mecanisms and to substrate specificity.
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