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An endo-exonuclease from meiotic tissues of the basidiomycete Coprinus cinereus. Its purification and characterization.

An endo-exonuclease has been identified and partially purified from the basidiocarp tissues of the basidiomycete Coprinus cinereus, which include synchronous meiosis at karyogamy-pachytene stages. Its peak activity appears during the meiotic prophase. The Coprinus endo-exonuclease has a single-strand specific endonuclease activity that converts the supercoiled DNA to relaxed DNA. The endonucleolytic cleavage of single-strand DNA generates 3'-phosphomonoester termini. It is also a single-strand-specific exonuclease and it hydrolyzes linear DNA in a 3' to 5' direction, but is unable to hydrolyze single-strand DNA having a 3'-phosphomonoester terminus. It requires Mg2+ with an optimal concentration of 25 mM. It has an optimal pH of 8.3, a peak enzyme activity at 50 degrees C, and it contains a single 43-kilodalton polypeptide. Coprinus meiotic endo-exonuclease may be involved in the substrate preparation for meiotic recombination.

Basidiomycota↗

[Serine proteinase from the higher basidiomycetes of Coprinus genus].

A thiol-dependent serine proteinase has been isolated for the first time from a higher basidiomycete Coprinus 7N culture filtrate by affinity chromatography on bacitracin-Sepharose combined with ion-exchange chromatography on DEAE-Sepharose. This procedure resulted in a homogeneous enzyme with 32-fold purification and 55% yield. The enzyme has a molecular mass of 33,000 Da and pI of 8.5; its amino acid composition appears as follows: Lys7, His7, Arg10, Asx29, Thr24, Ser30, Glx19, Pro13, Gly39, Ala40, Cys2-3, Val23, Met1-2, Ile14, Leu13, Tyr6, Phe7. The enzyme shows the optimal activity towards Z-Ala-Ala-Leu-pNA at 8.5 and is stable at pH 6-9. The temperature optimum of the enzyme activity lies at 37 degrees C. The proteinase is completely inactivated by the specific inhibitors of serine proteinases, diisopropylfluorophosphate and phenylmethylsulfonylfluoride, as well as by the SH-group reagent, p-chloromercuribenzoate. The Coprinus 7N proteinase hydrolyzes, azocasein, azoalbumin, hemoglobin, fibrin and synthetic chromogenic peptide substrates, e. g., Z-Ala-Ala-Leu-pNA, Z-Gly-gly-Leu-pNA. Some properties of the Coprinus 7N proteinase are very similar to those of thiol-dependent serine proteinases from bacilli, actinomycetes, fungi and plants which form a subfamily of thiol-dependent serine proteinases within the family of subtilisins.

Amino Acid Sequence↗

DNA-mediated transformation of the basidiomycete Coprinus cinereus.

We have developed a simple and efficient transformation system for the agaric fungus, Coprinus cinereus. Protoplasts were prepared from asexual spores that harbor one or two mutations in the structural gene for tryptophan synthetase. The protoplasts can be stably transformed using the cloned Coprinus gene at a frequency of 1 in 10(4) viable protoplasts. A variety of molecular events accompanies the formation of stable transformants, including insertion of the transforming DNA at the homologous locus. The transforming DNA is stable through cell division, mating, fruiting body formation, and meiosis.

Agaricales↗

A new meiotic protein factor which enhances activity of meiotic DNA polymerase from Coprinus cinereus.

Meiotic cells of Coprinus contain a protein that can be identified by its ability to enhance activity of the meiotic DNA polymerase reported previously (8). Its activity is found only during the prophase stages in meiotic cells, and is accompanied by the meiotic polymerase. The protein, which was purified to near homogeneity, is a single polypeptide with a molecular mass of 30k, and shows no activities of nuclease, ATPase, or DNA-binding protein. The protein could enhance the meiotic polymerase activity by at least 5 fold. The other Coprinus polymerases were not influenced by the protein. The protein could increase Vmax value of the meiotic polymerase, but not the Km. The significance of this protein to meiotic DNA synthesis is considered in relation to other biochemical properties of meiotic cells.

Chromatography, Gel↗

Genetics and function of isocitrate lyase in Coprinus.

Thirteen chromosomal loci have been identified which affect acetate metabolism in Coprinus. Mutants at only two loci, acu-l and acu-7, are deficient in isocitrate lyase (ICL) (EC 4.1.3.1) activity. acu-1 mutants are unable to induce ICL because they lack acetyl-CoA synthetase which is required to convert acetate to the metabolic inducer of ICL. acu-7 is the structural gene for ICL. This was shown by selecting temperature sensitive acu+ revertants resulting from a second mutation within the acu-7 gene. One such revertant was shown to produce an ICL protein which was more thermolabile than the wild type enzyme. Other workers have postulated that ICL activity is important during asexual morphogenesis in fungi. No evidence was found for this in Coprinus. The morphological mutant oidial, which produces abundant asexual spores even in submerged culture, had the same low uninduced level of ICL activity as the wild type. Moreover, an acu-7 mutation had no effect on the expression of the oidial phenotype.

Acetates↗

Expression of A mating type genes of Coprinus cinereus in a heterologous basidiomycete host.

The A mating factor of Coprinus cinereus determines compatibility in mating by regulating part of a developmental sequence that leads to dikaryon formation. The A genes that trigger development encode two different classes of homeodomain proteins, and for a successful mating, a protein of one class, HD1, must interact with a protein of the other class, HD2. In this report we show that C. cinereus A genes that encode HD2 proteins, a2-1 and b2-1, can elicit A-regulated development in the heterologous host C. bilanatus. Transformation rates were very low, suggesting that the genes were poorly transcribed. The fact that the HD2 genes are functionally expressed implies successful heteromultimeric association of putative DNA-binding proteins coded by the two Coprinus species. This interaction was sufficient to satisfy the need for different A factors in the formation of a fertile C. bilanatus dikaryon, but fertile dikaryons were more readily produced in matings with the a2-1 gene transformants. The C. cinereus A genes, b1-1 and d1-1, which encode HD1 proteins, were either not expressed or their proteins were non-functional in C. bilanatus. These experiments raise some interesting questions regarding HD1-HD2 protein interactions.

Cloning, Molecular↗

The A mating type and blue light regulate all known differentiation processes in the basidiomycete Coprinus cinereus.

Monokaryons of Coprinus cinereus constitutively form small spores (oidia) in the aerial mycelium. Some strains also produce large, inflated single cells (chlamydospores) at the agar/air interface, and hyphal aggregates (hyphal knots) that can develop into sclerotia. Monokaryons show various reactions upon transformation with heterologous A mating type genes. Production of oidia in such A-activated transformants is repressed in the dark and induced by blue light. Five of six monokaryons tested following transformation with A genes showed induced production of hyphal knots and sclerotia in the dark, and at least three strains showed enhanced chlamydospore production in the dark. Continuous incubation under blue light inhibited formation of hyphal knots, sclerotia and chlamydospores in both competent monokaryons and in A-activated transformants. On artificial medium and on a 12 h light/12 h dark regime, A-activated transformants of one distinct monokaryon (218) formed fruit-body primordia that were arrested in development before karyogamy. Our studies show that A mating type genes control all major differentiation processes in Coprinus, but whether developmental processes can proceed depends on the genetic background of the strain.

Cell Differentiation↗

Proton nuclear Overhauser effect study of the heme active site structure of Coprinus macrorhizus peroxidase.

Proton nuclear Overhauser effect and paramagnetic relaxation measurements have been used to define more extensively the heme active site structure of Coprinus macrorhizus peroxidase, CMP (previously known as Coprinus cinereus peroxidase), as the ferric low-spin cyanide ligated complex. The results are compared with other well-characterized peroxidase enzymes. The NMR spectrum of CMPCN shows changes in the paramagnetically shifted resonances as a function of time, suggesting a significant heme disorder for CMP. The presence of proximal and distal histidine amino acid residues are common to the heme environments of both CMPCN and HRPCN. However, the upfield distal arginine signals of HRPCN are not evident in the 1H-NMR spectra of CMPCN.

Binding Sites↗

Coprinus comatus (shaggy cap) is a potential source of aeroallergen that may provoke atopic dermatitis.

BACKGROUND: Basidiospores are universal components in the air and established as important causes of respiratory allergies. Recent reports indicate that aeroallergens may aggravate eczematous skin lesions in subjects with atopic dermatitis (AD). OBJECTIVE: The aim of the study was to investigate whether spores of Coprinus comatus, a species of basidiomycetes, may elicit delayed-type skin reactions in subjects with an atopic predilection, especially dermatitis. METHODS: Sixty-six study subjects were categorized in groups having AD or respiratory allergy with regard to the skin prick test (SPT) reactivity to C comatus extract. Twenty nonatopic individuals served as control subjects. Atopy patch tests (APTs) were performed with extract of C comatus spore containing tissue at a concentration of 1. 35 mg of protein per gram of petrolatum (Vaseline) and C comatus cap at a concentration of approximately 5 mg of protein per gram of petroleum jelly. APT reactions were evaluated after 48 and 72 hours. RESULTS: Of the subjects with AD completing the study, 12 (32%) of 38 showed a positive APT reaction, with 8 (57%) also having a positive SPT response to C comatus. Only 1 (9%) of 11 subjects with asthma had a positive SPT and APT response to C comatus. No positive test reaction was observed in the nonatopic control subjects or in subjects with respiratory allergy and negative SPT responses to C comatus. CONCLUSION: Our results demonstrate that C comatus can induce delayed-type reactions in atopic individuals, particularly in those with AD. Because spores of Coprinus species are ubiquitous, basidiomycetes have to be considered as possible aeroallergens when investigating causes of eczematous skin lesions in AD.

Adolescent↗

A new meiotic endonuclease from Coprinus meiocytes.

Two different types of Coprinus meiotic nuclease have been previously reported by the authors which are believed to be involved in meiotic chromosome recombination [1,2]. A third meiotic endonuclease was purified from the cap tissues of the basidiocarp of Coprinus cinereus. The enzyme is a 60 kDa molecule composed of a monopolypeptide as revealed by SDS-PAGE and FPLC-Sephacryl S-300 gel filtration. The enzyme belongs to a type of endonuclease which can preferentially digest single-stranded DNA and requires divalent cations as a co-factor, most commonly Mg2+ ions. In the presence of this co-factor, the enzyme converts the supercoiled plasmid DNA (form I) to both the relaxed form (form II) and the linear form (form III). Ca2+ ions can also function as a co-factor, though, in this case, not only is form I plasmid converted to form II, but a few ladder bands between form I and form II are also produced. The Ca2+ ion effect as a cofactor can be prevented with ATP. Immunohistochemical observation shows that the enzyme is distributed in the surface of the gills, which contain the meiotic tissues. These characteristics clearly differ from those of the meiotic nucleases reported previously.

Animals↗

DNA polymerase of a basidiomycete fungus, Coprinus cinereus.

DNA polymerase activity was studied in Coprinus cinereus, a basidiomycete fungus. Only one from of the enzyme could be demonstrated, whether by affinity or ion-exchange chromatography; this enzyme had a molecular weight of 185000 on Sephadex G-200, and was inhibited by mercaptoethanol. Coprinus, a representative of the most advanced type of the filamentous fungi, resembles other eukaryotic micro-organisms in its lack of a mammalian beta-type DNA polymerase. The properties of the polymerase are compared with those of two other fungi, and found to resemble most closely the yeast polymerase A in Mg2+ requirements and template preference.

Agaricales↗

Self-compatible B mutants in coprinus with altered pheromone-receptor specificities.

A successful mating in the mushroom Coprinus cinereus brings together a compatible complement of pheromones and G-protein-coupled receptors encoded by multiallelic genes at the B mating-type locus. Rare B gene mutations lead to constitutive activation of B-regulated development without the need for mating. Here we characterize a mutation that arose in the B6 locus and show that it generates a mutant receptor with a single amino acid substitution (R96H) at the intracellular end of transmembrane domain III. Using a heterologous yeast assay and synthetic pheromones we show that the mutation does not make the receptor constitutively active but permits it to respond inappropriately to a normally incompatible pheromone encoded within the same B6 locus. Parallel experiments carried out in Coprinus showed that a F67W substitution in this same pheromone enabled it to activate the normally incompatible wild-type receptor. Together, our experiments show that a single amino acid replacement in either pheromone or receptor can deregulate the specificity of ligand-receptor recognition and confer a self-compatible B phenotype. In addition, we use the yeast assay to demonstrate that different receptors and pheromones found at a single B locus belong to discrete subfamilies within which receptor activation cannot normally occur.

Amino Acid Sequence↗

Basidiospore allergens: analysis of Coprinus quadrifidus spore, cap, and stalk extracts.

Atopic individuals with symptoms of respiratory allergy have been shown to have IgE-mediated reactions to spores from the basidiomycete fungi. Because our earlier studies suggested that parts of the fungus other than spores may contain allergens, the current study was performed. Extracts of Coprinus quadrifidus spores, caps, and stalks were prepared and fractionated by gel filtration column chromatography on Sephadex G-75. Analysis of column fractions of each separation by ultraviolet absorption demonstrated at least three peaks of absorbency in spore, cap, and stalk extracts. Pooled column fractions were analysed by direct radio-allergosorbent test (RAST) using pooled sera from C. quadrifidus skin-test positive subjects. Enhanced allergenic activity was present in the same portion of the column eluate for cap, spore, and stalk fractionations, corresponding to a molecular weight of approximately 10.5-25 kD. Pools with allergenic activity were used to test volunteers by skin prick and RAST. Skin test and RAST activities were similar for each of the three Coprinus extracts, with stalk being the most potent. Evidence of common allergenic epitopes was demonstrated by inhibition of spore RAST by spore, cap, and stalk extracts. These results suggest that C. quadrifidus cap and stalk extracts contain allergens similar to those in spores extract and may provide useful sources of allergen for further study.

Agaricales↗

Analysis of meiotic development in Coprinus cinereus.

The basidiomycete Coprinus cinereus offers many advantages for molecular analyses of meiosis. Fruiting body development is highly synchronous, and chromosome behaviour can be visualized using the light microscope. Furthermore, the small genome size (3.7 X 10(7) bp/haploid nucleus) facilitates molecular cloning procedures, and genetic characterization is reasonably advanced. To analyse controls of the meiotic process, we have isolated genomic sequences which are differentially expressed during Coprinus development by comparative cDNA hybridization to cloned genomic segments. We have concluded that fruiting body morphogenesis is associated with extensive changes in steady-state RNA levels in this fungus.

Agaricales↗

Poisoning by Coprinus atramentarius.

The ink cap--Coprinus atramentarius (Bulliard ex Fries) Fries--is responsible for poisoning when ingested with alcohol. The investigation of the "Coprinus syndrome," although a minor poisoning incident, stimulated numerous research programs because the results were expected to yield a novel drug useful during the treatment of alcoholism. This work led to the identification of the active principle--coprine--and to an explanation of its mode of action; nevertheless, detailed toxicology investigations have shown that the mutagenic and gonadotoxic properties of this compound made it unsuitable for therapeutic use. Our current knowledge of the poisoning, the chemistry of the toxin, and its mode of action are here reviewed.

Aldehyde Oxidoreductases↗

Asexual sporulation in coprinus cinereus: structure and development of oidiophores and oidia in an amut bmut homokaryon

Polak, E., Hermann, R., Kues, U., and Aebi, M. 1997. Asexual sporulation in Coprinus cinereus: Structure and development of oidiophores and oidia in an Amut Bmut homokaryon. 22, 112-126. Coprinus cinereus strain AmutBmut is a homokaryon with mutations in both mating type loci. It produces asexual spores (oidia) in sticky liquid droplets on specialized aerial structures (oidiophores). These oidiophores have uninucleate cells and are organized as those of the monokaryon 5026 from which the strain derived. However, unlike in the monokaryon, oidiophores in strain AmutBmut are induced by light. Young oidiophores are easily detected upon light induction and the process of oidiophore development is readily followed in this strain. Fully grown oidiophores consecutively give rise to short branches (oidial hyphae) that break up into two or occasionally three uninucleate oidia (arthroconidia) until up to 200 oidia are collected at the tip of the oidiophore. Mature spores are enclosed by a mucilage and a double-layered primary cell wall with hair-like structures except for the sides of former cell attachments. In a summary of our microscopic observations on developing oidiophores and nuclear stainings we present a model showing the successive steps of oidiophore and spore development.

Journal Article↗

IgE-binding proliferative responses and skin test reactivity to Cop c 1, the first recombinant allergen from the basidiomycete Coprinus comatus.

BACKGROUND: Basidiomycetes spores are ubiquitously distributed, found throughout the year in outdoor and indoor air, and represent relevant sources of aeroallergens associated with allergy and asthma. OBJECTIVE: Cloning and characterization of Coprinus comatus (shaggy cap mushroom) allergens is essential to elucidate their molecular characteristics and to improve the diagnosis of allergy. METHODS: A complementary DNA (cDNA) library of C comatus displayed on phage surface was screened with sera of basidiomycete-sensitized individuals. Subcloning and high-level expression of one of the enriched cDNAs allowed the isolation of a [His](6)-tagged recombinant protein formally termed rCop c 1. The allergenic properties of rCop c 1 were investigated in vitro by ELISA, inhibition experiments, immunoblots, and proliferation assays and in vivo by skin tests. RESULTS: The rCop c 1-encoding cDNA spans 435 bp and contains an open reading frame of 246 bp, predicting a protein of 8.96 kd without significant sequence homology to known proteins. Immunoblots with [His](6)-rCop c 1 fusion protein show a background free IgE-binding band of the expected size that can be completely inhibited by crude C comatus extracts in ELISA. rCop c 1 induced specific proliferative responses in PBMCs of C comatus-sensitized individuals. The incidence of sensitization to rCop c 1 among 92 sera of basidiomycete-sensitized individuals tested in ELISA was 25%, indicating that Cop c 1 is an intermediate allergen. However, prick tests showed that less than 2 pmol of the rCop c 1 protein was able to induce strong specific skin reactions in sensitized individuals. CONCLUSIONS: rCop c 1, the first cloned allergen from the genus Coprinus, fulfills all the criteria required to be classified as a clinically relevant allergen. The data demonstrate at the molecular level the presence of sensitizing molecules among Basidiomycetes, the most important source contributing to the total spore load in the outdoor air.

Allergens↗

Effect of reaction conditions on phenol removal by polymerization and precipitation using Coprinus cinereus peroxidase.

The quantitative relationships between removal efficiency of phenol and reaction conditions were investigated using Coprinus cinereus peroxidase. The most effective ratio of hydrogen peroxide to phenol was nearly 1/1 (mol/mol) at an adequate enzyme dose. 12.2 U of the enzyme was needed to remove 1 mg of phenol when our peroxidase preparation was used. At an insufficient peroxidase dose, the optimum pH value was 9.0, and lowering the reaction temperature led to the improvement of removal efficiency. At an excess peroxidase dose, almost 100% removal of phenol was obtained over a wide range of pH (5-9) and temperature (0-60 degrees C). Despite the presence of culture medium components, it was shown that Coprinus cinereus peroxidase had the same phenol polymerization performance as horseradish peroxidase or Arthromyces ramosus peroxidase.

Journal Article↗