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V Betina

Publications and source records attributed to V Betina.

At least 19 recordsLinked to original sources

Properties of uracil transport by vegetative mycelium of Trichoderma viride.

The transport of radioactively labelled uracil into submerged mycelium of T. viride was measured by means of a membrane filtration technique. It was found to be time-dependent (up to 90 min) and concentration-dependent (up to 8 mmol l-1). Its concentration dependence was biphasic and consisted from the saturatable part (at the uracil concentration below 0.2 mmol l-1) with KM = 0.08 +/- 0.02 mmol l-1 and Vmax = 1.74 +/- 0.3 nmol (mg dry wt.)-1 h-1, and from the region at higher uracil concentration which showed only a weak saturatability with the substrate. The transport measured in the saturatable part of the curve was also pH- and temperature-dependent. The optimal pH was between 5.4 and 6.4 and the optimal temperature was at 37 degrees C. The activation energy of 54 kJ mol-1 and the temperature quotient of Q10 = 2.1 could be calculated from the temperature dependence. The entry of uracil was in part inhibited by nucleobases and their analogues, nucleosides, nucleotides and amino acids. The inhibitors had similar inhibitory efficiency about 50% at 0.2 mmol l-1. 3,3',4',5-tetrachlorosalicylanilide (TCS), the uncoupling agent, significantly inhibited the uracil transport, but its inhibitory efficiency decreased upon increasing the uracil concentration. Ionophore antibiotics valinomycin and monensin also inhibited the uracil transport. Inhibitors of RNA-polymerase, rifamycin and rifampicin were without effect. The results suggest that at low uracil concentrations (below 0.2 mmol l-1), its transport is mediated by a carrier and is driven by the electrochemical potential of protons. At higher uracil concentrations, the transport may be driven by the concentration difference of uracil with the contribution of the protonmotive force. It is feasible that inhibitors of uracil transport tested exert their inhibition by the dissipation of the driving force rather than by the direct competition with the substrate-binding site.

Biological Transport↗

Accumulation of Golgi-specific mannosyltransferases in Candida albicans cells grown in the presence of brefeldin A.

The fungal metabolite brefeldin A (BFA) is known for its ability to block the secretory process in eukaryotic cells by interfering in the endoplasmic reticulum (ER) to Golgi membrane traffic, causing the disassembly of Golgi apparatus and redistribution of Golgi enzymes into the ER. In sensitive yeasts, underglycosylated forms of secretory proteins accumulate in the cytoplasm in the presence of BFA. We investigated whether the incomplete glycosylation of mannoproteins could be due to repression of the synthesis of Golgi-located terminal mannosyltransferases and whether the underglycosylated mannoproteins can be incorporated into the cell walls in Candida albicans. However, we found that the microsomal membranes isolated from the yeast cells grown in the presence of 14 micrograms.mL-1 of BFA had on average three times higher overall specific activity of mannan synthase than membranes from control cells. The increase in specific activity of mannan synthase was mainly due to accumulation of Golgi-specific mannosyltransferases responsible for elongation of the O-glycosidically linked mannooligosaccharides and for the synthesis of the N-glycosidically linked mannan outer chain. As a consequence, the mannans synthesized in vitro from GDP-[U-14C]mannose by the membranes from cells grown in the presence of BFA had longer O-glycosidically linked oligosaccharides and longer side-chains in the N-glycosidically linked polymannose part of the molecule than mannans synthesized by membranes from the control cells. Contrary to results obtained in vitro, the structural features of cell wall mannans isolated from intact BFA-grown and from control cells were almost indistinguishable.

Antifungal Agents↗

The 45Ca2+ uptake by Trichoderma viride mycelium. Correlation with growth and conidiation.

The properties of Ca2+ uptake by Trichoderma viride were studied using radionuclide 45Ca2+ in conjunction with the study of effects of agents influencing the Ca2+ homeostasis on the 45Ca2+ uptake, vegetative growth and conidiation. Mycelium of T. viride was found to take up 45Ca2+ in time- and temperature-dependent manner. The 45Ca2+ uptake could be distinguished from the 45Ca2+ binding by the insensitivity to washing with EGTA (ethylene glycol-bis(2-amino ethyl ether)-N,N,N',N'-tetraacetic acid)-containing solution. The 45Ca2+ uptake was only slightly suppressed by the treatment used to de-energize cells. Agents known to influence Ca2+ homeostasis in animal and plant cells were also active in perturbing the Ca2+ homeostasis in T. viride. In this respect, the agents tested had dual (stimulatory or inhibitory) effects on the 45Ca2+ uptake. No clear correlation among the perturbation of the 45Ca2+ uptake and the inhibition of growth and conidiation was found for the group of compounds tested. Sr2+ and Mg2+ inhibited 45Ca2+ uptake but did not inhibit growth and conidiation. Co2+, Cd2+ inhibited both 45Ca2+ uptake and growth. Other agents tested (Cu2+, Ni2+, La3+, dihydropyridines), which inhibited growth of T. viride, induced massive 45Ca2+ uptake by its mycelium. Ba2+ and Mn2+ showed a biphasic effect on 45Ca2+ uptake-inhibition at lower, and stimulation at higher concentrations, but they had only a slight inhibitory effect on the growth or conidiation at higher concentrations. The 45Ca2+ uptake was influenced by addition of monovalent cations to a small extent only. Na+ (up to 75 mmol.l-1), less than K+, slightly suppressed the 45Ca2+ uptake leaving both growth and conidiation unaffected. Upon depriving the fungus of Ca2+ by chelation of extracellular Ca2+ (not Mg2+ or divalent trace metals) by EGTA, which interfered with Ca2+ homeostasis, vegetative growth rate, and starvation-induced conidiation were restricted. These results suggest that the sustained Ca2+ influx occurs across the T. viride plasma membrane which may be a target site for the antifungal action of heavy metal ions, and its perturbation may lead to disturbances in physiological processes including growth and conidiation. The properties of the Ca2+ influx in T. viride observed substantially differ from those observed in animal cells.

Biological Transport↗

Growth and conidiation of Trichoderma viride are affected by non-steroidal antiinflammatory agents.

Nonsteroid antiinflammatory agents (NSAIA's) (inhibitors of cyclooxygenase and lipoxygenase) of several structural series inhibited growth of Trichoderma viride. The most potent growth inhibitors were indomethacin and its derivative repanidal which inhibited in the range of 0.1 mmol/L. The weakest inhibitors were acetylsalicylic acid and lysine salicylate which exerted only a weak effect at concentrations above 1 mmol/L. The inhibition of growth was accompanied by a stimulation of conidiation in the dark. A light pulse increased the efficiency of these drugs to stimulate the conidiation. Saccharomyces cerevisiae was as sensitive to NSAIA's as T. viride while Botrytis cinerea was less sensitive. The results indicate that arachidonate metabolism may play a role in the growth of fungi and may participate also in the process of conidiation.

Anti-Inflammatory Agents, Non-Steroidal↗

Mutagenicity of substituted anthraquinones in the Ames/Salmonella microsome system.

Unsubstituted anthraquinone, 4 substituted anthraquinones (emodin, danthron, physcion, a new compound M-108-C) and 3 dimers (skyrin, rugulosin, rugulin) were tested using the Ames/Salmonella assay (strains TA98, TA100, TA1537 and TA102). Danthron and emodin were found to be mutagenic for TA1537 with or without metabolic activation, physcion only with metabolic activation. A significant difference was found between the mutagenic activities of emodin (16.2 His+/nmole) and danthron (6.5 His+/nmole) as well as a high specific mutagenic activity for physcion (11.6 His+/nmole). These results on structure-mutagenic activity relationships suggest that the 6-methyl group plays an important role in the mutagenic activity after metabolic activation. Furthermore, and contrary to emodin, physcion exhibited a weak mutagenic activity for TA102, probably due to the formation of a different metabolite. Such information is necessary to evaluate the potential carcinogenic hazard of these compounds.

Anthraquinones↗

Biological effects of the antibiotic brefeldin A (decumbin, cyanein, ascotoxin, synergisidin): a retrospective.

Brefeldin A has been recently characterized to act as an inhibitor of intracellular protein export with profound effects on the structure and function of the Golgi apparatus in animal cells. Manifold activities of the antibiotic (under different names) published in the 1960's and 1970's are reviewed: effects on fungal growth and morphogenesis, inhibition of mitosis in plant cells, cytotoxicity, cancerostatic, antiviral and antinematodal activity and peculiar effects on DNA, RNA and protein synthesis in microbial and animal cells.

Animals↗

Chromatographic methods as tools in the field of mycotoxins.

Achievements in the applications of chromatographic techniques in mycotoxicology are reviewed. Historically, column chromatography (CC) and paper chromatography (PC) were applied first, followed by thin-layer chromatography (TLC), high-performance liquid chromatography (HPLC) and gas chromatography (GC). Although PC techniques are no longer used in the analysis of mycotoxins, selected applications of PC are included to underline historical continuity. The most important achievements published from 1980 onwards are described. They include clean-up methods, TLC, CC, HPLC and GC of mycotoxins in environmental samples, foods, feeds, body fluids and in studies on biosynthesis and biotransformations of mycotoxins. Advantages and disadvantages of chromatographic techniques used in mycotoxicology are also evaluated.

Chromatography, Gas↗

Structure-activity relationships among mycotoxins.

Relationships between structural features and biological effects of mycotoxins are reviewed. Structure-activity relationships are characterized at the molecular, subcellular, cellular, or supracellular level. Major chemical and physicochemical factors responsible for bioactivity of mycotoxins are stressed. A variety of chemical families of mycotoxins are then discussed from the point of view of structure-activity relationships. The structurally related families comprise small lactones, macrocyclic lactones, isocoumarin derivatives, aflatoxins and related compounds trichothecenes, anthraquinones, indole-derived tremorgens and selected amino acid-derived mycotoxins such as sporidesmins and cyclosporines. Biological effects of mycotoxins include acute and chronic toxicity, antimicrobial activity, mutagenicity and genotoxicity, carcinogenicity and biochemical modes of action.

Animals↗

Uncoupling effect of fungal hydroxyanthraquinones on mitochondrial oxidative phosphorylation.

Structure-uncoupling activity relationship of seven anthraquinone derivatives were investigated using rat liver mitochondria. Three compounds bearing the free hydroxyl group at the beta-position of their anthraquinone nucleus (1,3,6,8-tetrahydroxyanthraquinone, 1-acetyl-2,4,5,7-tetrahydroxy-9,10-anthracenedione and skyrin) exhibited uncoupling effect. Rugulosin, rugulin and physcion (all lacking the hydroxyl at the beta-position) were ineffective. Erythroglaucin, a derivative of physcion with the free hydroxyl group at the gamma-position, exhibited the highest uncoupling activity in the series tested. In addition, erythroglaucin abolished the energy dependent Ca2+ retention in mitochondria and induced Ca2+ leak. It also prevented the energization of mitochondrial membrane by ATP and induced a loss of the ATP induced membrane potential similarly as did carbonylcyanamide-3-chlorophenyl hydrazone (CCCP). The data show that the free hydroxyl group at either the gamma-position or the beta-position of anthraquinone nucleus is a prerequisite of the uncoupling activity of hydroxyanthraquinones.

Animals↗

Thin-layer chromatography of mycotoxins.

TLC has become an extremely powerful, rapid and in most instances inexpensive separation technique in mycotoxicology. This review presents achievements of its applications in this field. General technical aspects of the TLC of mycotoxins that are discussed include extraction and clean-up procedures, adsorbents and solvent systems, detection methods, two-dimensional TLC, high-performance TLC (HPTLC), quantitation and preparative TLC (PLC). Special applications of TLC deal with multi-mycotoxin analyses and with structurally related or individual mycotoxins (aflatoxins, sterigmatocystins, versicolorins, ochratoxins, rubratoxins, patulin, penicillic acid, mycophenolic acid, butenolide, citreoviridin, trichothecenes, cytochalasans, tremorgenic toxins, epipolythiopiperazine-3,6-diones, hydroxyanthraquinones, zearalenone, citrinin, secalonic acids, cyclopiazonic acid, PR toxin, roquefortine, xanthomegnin, viomellein and naphtho-gamma-pyrones).

Aflatoxins↗

Morphological and colour mutants of Trichoderma viride: characterization and complementation.

A total of 26 morphological and colour mutants of Trichoderma viride were characterized. They were divided into three groups based on morphology, pigmentation, growth rates and intensity of conidiation. Complementation analysis of colour mutants and mutants with disturbances in conidiation showed that after anastomosis and protoplast fusion only heterokaryotes are formed while no nuclear migration and diploidization takes place.

Diploidy↗

Acquisition of small colonies of Trichoderma viride for genetic analysis.

Growth and mutual interlacing of colonies of T. viride is affected by concentration of nutrients and presence of inhibitors in the culture medium. The most convenient colony restrictors were Bengal red, Ox Gall and sodium deoxycholate while L-sorbose and 2-deoxy-D-arabino-hexose were less efficient.

Culture Media↗

Changes in the lipid composition during the photo-induced conidiation of Trichoderma viride.

The sporulating and nonsporulating mycelium of Trichoderma viride exhibited significant differences in the levels of triacylglycerols, sterol esters. fatty acids, gangliosides, phosphatidylethanolamine and sphingomyelin. Quantitative changes in the contents of polar and nonpolar lipids were observed also during the analyses of one-, two-, three-day-old sporulation zones in colonies subjected to repeated photo-induction. These findings are similar to the changes observed during the differentiation of other species of fungi.

Light↗

The use of antibiotics for studies of morphogenesis and differentiation in microorganisms.

Numerous antibodies with a known mechanism of action are utilized as possible means for studying morphogenesis and differentiation. Inhibitors of biosynthesis of nucleic acids and proteins, compounds intervening with the synthesis and/or function of cell walls and membranes or compounds influencing the energy metabolism are particularly useful. The use of antibiotics for studies of the life cycle of viruses, bacteria, fungi, myxomycetes, protozoa and algae is analyzed in the present communication. Certain aspects of morphogenesis and functions of mitochondria and plastids were clarified with the aid of antibiotics. Relationships between production of antibiotics and differentiation of their producers are discussed in the final part of the paper.

Anti-Bacterial Agents↗