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Maria Hrmova

Publications

  • Special Issue: “Peter Biely, A Pioneering Researcher in the Enzymology of Plant Biomass Degradation”
  • The wheat TabZIP2 transcription factor is activated by the nutrient starvation-responsive SnRK3/CIPK protein kinase
  • Overexpression of the class I homeodomain transcription factor TaHDZipI-5 increases drought and frost tolerance in transgenic wheat
  • Polysaccharide transferase
  • Developmentally regulated HEART STOPPER, a mitochondrially targeted L18 ribosomal protein gene, is required for cell division, differentiation, and seed development in Arabidopsis
  • A SOS3 homologue maps to HvNax4, a barley locus controlling an environmentally sensitive Na+ exclusion trait
  • Cell-free protein synthesis of membrane (1, 3)-$β$-D-glucan (curdlan) synthase: Co-translational insertion in liposomes and reconstitution in nanodiscs
  • Close allies in membrane protein research: Cell-free synthesis and nanotechnology
  • Complex regulation by Apetala2 domain-containing transcription factors revealed through analysis of the stress-responsive TdCor410b promoter from durum wheat
  • A single glycosidase harnesses different pyranoside ring transition state conformations for hydrolysis of mannosides and glucosides
  • Molecular modeling of S-RNases involved in almond self-incompatibility
  • Role of homeodomain leucine zipper (HD-Zip) IV transcription factors in plant development and plant protection from deleterious environmental factors
  • Molecular modelling of RNases from almond involved in self-incompatibility
  • Expression patterns and protein structure of a lipid transfer protein END1 from Arabidopsis
  • Structural analysis and insights into the glycon specificity of the rice GH1 Os7BGlu26 $β$-D-mannosidase
  • Transcriptional regulation of cuticle biosynthesis
  • Enhancing abiotic stress tolerance in plants by modulating properties of stress responsive transcription factors
  • Protein-carbohydrate interactions leading to hydrolysis and transglycosylation in plant enzymes in glycoside hydrolase family 1
  • Plant transcription factors, promoters and uses thereof
  • Constitutive overexpression of the TaNF-YB4 gene in transgenic wheat significantly improves grain yield
  • Na+-Dependent Anion Transport by a Barley Efflux Protein Revealed through an Integrative Platform
  • A Two-Staged Model of Na (+) Exclusion in Rice Explained by 3D Modeling of HKT Transporters and Alternative Splicing
  • Characterization of the wheat gene encoding a grain-specific lipid transfer protein TdPR61, and promoter activity in wheat, barley and rice
  • Change of function of the wheat stress-responsive transcriptional repressor TaRAP2. 1L by repressor motif modification
  • Modulation of plant growth by HD-Zip class I and II transcription factors in response to environmental stimuli
  • Molecular modeling of RNases from almond involved in serlf-incompatibility
  • Plant high-affinity potassium (HKT) transporters involved in salinity tolerance: structural insights to probe differences in ion selectivity
  • Endosperm transfer cell-specific genes and proteins: structure, function and applications in biotechnology
  • Basic leucine zipper (bZIP) transcription factors involved in abiotic stresses: A molecular model of a wheat bZIP factor and implications of its structure in function
  • Identification of a stelar-localised transport protein that facilitates root-to-shoot transfer of chloride in Arabidopsis
  • High affinity Na+ transport by wheat HKT1;5 is blocked by K+
  • Barley sodium content is regulated by natural variants of the Na+ transporter HvHKT1;5
  • Engineering the acceptor substrate specificity in the xyloglucan endotransglycosylase TmXET6.3 from nasturtium seeds (Tropaeolum majus L.)
  • A single nucleotide substitution in TaHKT1 ; 5‐D controls shoot Na + accumulation in bread wheat
  • High affinity Na + transport by wheat HKT1;5 is blocked by K +
  • Plant Xyloglucan Xyloglucosyl Transferases and the Cell Wall Structure: Subtle but Significant
  • Discovery of processive catalysis by an exo-hydrolase with a pocket-shaped active site
  • Wheat wounding-responsive HD-Zip IV transcription factor GL7 is predominantly expressed in grain and activates genes encoding defensins
  • Variation among S-locus haplotypes and among stylar RNases in almond
  • Correction to: Wheat wounding-responsive HD-Zip IV transcription factor GL7 is predominantly expressed in grain and activates genes encoding defensins
  • Plant transporters involved in combating boron toxicity: beyond 3D structures
  • Potassium Alginate Oligosaccharides Alter Gut Microbiota, and Have Potential to Prevent the Development of Hypertension and Heart Failure in Spontaneously Hypertensive Rats
  • Plant Transcription Factors Involved in Drought and Associated Stresses
  • Alluminating structure key to stress tolerance
  • A single residue deletion in the barley HKT1;5 P189 variant restores plasma membrane localisation but not Na+ conductance
  • Broad Specific Xyloglucan:Xyloglucosyl Transferases Are Formidable Players in the Re-Modelling of Plant Cell Wall Structures
  • Identification and characterization of wheat drought-responsive MYB transcription factors involved in the regulation of cuticle biosynthesis
  • Wheat drought-responsive WXPL transcription factors regulate cuticle biosynthesis genes
  • DREB/CBF expression in wheat and barley using the stress‐inducible promoters of HD‐Zip I genes: impact on plant development, stress tolerance and yield
  • A single nucleotide substitution in TaHKT1;5-D controls shoot Na+ accumulation in bread wheat
  • Structural Basis for Substrate Specificity in Rice and Barley Beta-Glucosidases
  • Boron toxicity tolerance in barley through reduced expression of the multifunctional aquaporin HvNIP2; 1
  • The biosynthesis of plant cell wall and related polysaccharides by enzymes of the GT2 and GT48 families
  • Mutated barley (1, 3)-$β$-d-glucan endohydrolases synthesize crystalline (1, 3)-$β$-d-glucans. Vol. 277 (2002) 30102--30111
  • Diversification of barley beta-D-glucan endohydrolases in Neurospora crassa.
  • A Chemoenzymatic Route to Conjugatable?(1? 3)-Glucan Oligosaccharides
  • Reconstitution of cyanogenesis in barley (Hordeum vulgare L.) and its implications for resistance against the barley powdery mildew fungus
  • Plant and microbial enzymes involved in the depolymerization of (1-3)-$β$-glucans and related polysaccharides
  • Members of a new group of chitinase-like genes are expressed preferentially in cotton cells with secondary walls
  • Review: Condensed tannin and grape cell wall interactions and their impact on tannin extractability into wine
  • Hydrolysis of (1, 4)-beta-D-mannans in barley (Hordeum vulgare L.) is mediated by the concerted action of (1, 4)-beta-D-mannan endohydrolase and beta-D-mannosidase
  • Polysaccharide microarrays for high-throughput screening of transglycosylase activities in plant extracts
  • Characterization of the wheat endosperm transfer cell-specific protein TaPR60
  • Functional genomics and structural biology in the definition of gene function
  • Hyphal cell walls from the plant pathogen Rhynchosporium secalis contain (1, 3/1, 6)-$β$-d-glucans, galacto-and rhamnomannans,(1, 3; 1, 4)-$β$-d-glucans and chitin
  • Rice family GH1 glycoside hydrolases with $β$-D-glucosidase and $β$-D-mannosidase activities
  • The Synthesis of 3-O-($β$-D-Glucopyranosyl)-and 3-O-($β$-Laminaribiosyl)-isofagomines, Potent Inhibitors of a 1, 3-$β$-D-Glucan endo-Hydrolase
  • Barley xyloglucan xyloglucosyl transferases bind xyloglucan-derived oligosaccharides in their acceptor-binding regions in multiple conformational states
  • High-yield production, refolding and a molecular modelling of the catalytic module of (1, 3)-$β$-d-glucan (curdlan) synthase from Agrobacterium sp.
  • Identifying and characterising The (1, 3; 1, 4)-beta-glucan synthase gene family in barley
  • Polysaccharide transferase
  • ENZYME CATALYSIS AND REGULATION-Bifunctional Family 3 Glycoside Hydrolases from Barley with aL-Arabinofuranosidase and bD-Xylosidase Activity. CHARACTERIZATION, PRIMARY STRUCTURES, AND
  • Binding of $β$-d-Glucosides and $β$-d-Mannosides by Rice and Barley $β$-d-Glycosidases with Distinct Substrate Specificities
  • A barley xyloglucan xyloglucosyl transferase covalently links xyloglucan, cellulosic substrates, and (1, 3; 1, 4)-$β$-d-glucans. VOLUME 282 (2007) PAGES 12951-12962
  • Discovery of genes related to high-rate cellulose synthesis through analysis of gene expression during secondary wall deposition in cotton fibers
  • High-yield production, refolding and a molecular modelling of the catalytic module of (1, 3)-$β$-ᴅ-glucan (curdlan) synthase from Agrobacterium sp.
  • Molecular modeling of family GH16 glycoside hydrolases: potential roles for xyloglucan transglucosylases/hydrolases in cell wall modification in the poaceae
  • A barley xyloglucan xyloglucosyl transferase covalently links xyloglucan, cellulosic substrates, and (1, 3; 1, 4)-$β$-d-glucans
  • Sexual and apomictic seed formation in Hieracium requires the plant polycomb-group gene FERTILIZATION INDEPENDENT ENDOSPERM
  • Substrate specificity and catalytic mechanism of a xyloglucan xyloglucosyl transferase HvXET6 from barley (Hordeum vulgare L.)
  • Biochemical evidence linking a putative callose synthase gene with (1→ 3)-$β$-D-glucan biosynthesis in barley
  • Bifunctional Family 3 Glycoside Hydrolases from Barley with $α$-l-Arabinofuranosidase and $β$-d-Xylosidase Activity CHARACTERIZATION, PRIMARY STRUCTURES, AND COOH-TERMINAL PROCESSING
  • Dissecting the catalytic mechanism of a plant $β$-D-glucan glucohydrolase through structural biology using inhibitors and substrate analogues
  • Weak signal detecting of gas concentration based on Duffing chaotic oscillator
  • Cellulose synthase-like CslF genes mediate the synthesis of cell wall (1, 3; 1, 4)-ß-D-glucans
  • Heterologous and cell-free protein expression systems
  • Plant cell wall biosynthesis: genetic, biochemical and functional genomics approaches to the identification of key genes
  • High-level expression of barley $β$-d-glucan exohydrolase HvExoI from a codon-optimized cDNA in Pichia pastoris
  • Three-dimensional structure of the barley $β$-d-glucan glucohydrolase in complex with a transition state mimic
  • Gene expression patterns and catalytic properties of UDP-D-glucose 4-epimerases from barley (Hordeum vulgare L.)
  • Heterologous expression of diverse barley XTH genes in the yeast Pichia pastoris
  • Structural rationale for low-nanomolar binding of transition state mimics to a family GH3 $β$-D-glucan glucohydrolase from barley
  • Defensin promoters as potential tools for engineering disease resistance in cereal grains
  • Crystallisation of Wild-Type and Variant Forms of a Recombinant Plant Enzyme $β$-D-Glucan Glucohydrolase from Barley (Hordeum vulgare L.) and Preliminary X-ray Analysis
  • The genetics, transcriptional profiles, and catalytic properties of UDP-$α$-D-xylose 4-epimerases from barley
  • Xyloglucan xyloglucosyl transferases from barley (Hordeum vulgare L.) bind oligomeric and polymeric xyloglucan molecules in their acceptor binding sites
  • Enzymic Hydrolysis of Cereal (1-3, 1-4)-beta-Glucans
  • Structure-function studies of xyloglucan transglycosylases/hydrolases
  • A Glimpse at Regulation of Nitrogen Homeostasis
  • Structural and functional analyses of PpENA1 provide insights into cation binding by type IID P-type ATPases in lower plants and fungi
  • CATALYTIC MECHANISMS AND THE BASIS OF SUBSTRATE SPECIFICITY OF-D-GLUCAN GLUCOHYDROLASES: CRYSTAL STRUCTURES OF THE ENZYME IN COMPLEX WITH GLUCOSIDE INHIBITORS AND SUBSTRATE ANALOGUES
  • Apoplastic Xylanases and (1→ 3, 1→ 4)-$β$-Glucanases in Cell Wall Metabolism in Barley
  • EVOLUTION OF BETA-GLUCAN ENDOHYDROLASE FUNCTION
  • Barley-D-Glucan Exohydrolases with-D-Glucosidase Activity PURIFICATION, CHARACTERIZATION, AND DETERMINATION OF PRIMARY STRUCTURE FROM A cDNA CLONE
  • Induction of cellulose-and xylan-degrading enzyme systems in Aspergillus terreus by homo-and heterodisaccharides composed of glucose and xylose
  • Specificity of cellulase and $β$-xylanase induction in Trichoderma reesei QM 9414
  • Catalytic mechanisms and reaction intermediates along the hydrolytic pathway of a plant $β$-D-glucan glucohydrolase
  • Synthesis of Complex Oligosaccharides by Using a Mutated (1, 3)-$β$-D-Glucan Endohydrolase from Barley
  • Induction of cellulose-and xylan-degrading enzyme complex in the yeast Trichosporon cutaneum
  • 1, 3-$β$-d-Glucan synthase ofNeurospora crassa: Partial purification and characterization of solubilized enzyme activity
  • $β$ (1-3) Glucan synthase of Neurospora crassa: Solubilization and partial characterization
  • Cell wall degrading enzymes in barley
  • Three-dimensional structures, catalytic mechanisms and protein engineering of beta-glucan hydrolases from barley
  • Biochemistry and molecular biology of arabinoxylan metabolism in germinated barley
  • THREE-DIMENSIONAL STRUCTURES OF PLANT ENZYMES
  • Comparative Modeling of the Three-Dimensional Structures and Phylogenetic Analysis of Family 3 Glycoside Hydrolases
  • aL-Arabinofuranosidases and a bD-Xylosidases From Germinated Barley
  • Enzymic Hydrolysis of Barley (13, 14)-b-Glucans
  • Wild Type and Mutant (13)-b-Glucan Endohyrolases From Barley are Efficient Tools for Synthesis (13)-b Linked Oligo-and Polysaccharides
  • INDUCTION OF CELLULOSE-DEGRADING AND XYLAN-DEGRADING ENZYME-SYSTEMS IN ASPERGILLUS-TERREUS BY HOMODISACCHARIDES AND HETERODISACCHARIDES COMPOSED OF GLUCOSE AND XYLOSE
  • Structural basis for broad substrate specificity in higher plant $β$-D-glucan glucohydrolases
  • Substrate binding and catalytic mechanism of a barley $β$-D-glucosidase/(1, 4)-$β$-D-glucan exohydrolase
  • Three-dimensional structure of a barley $β$-D-glucan exohydrolase, a family 3 glycosyl hydrolase
  • An 18 kD protein in dandelion (Taraxacum officinale Weber) root which has allergen and PR-protein homologies.
  • Purification and properties of three (1--> 3)-beta-D-glucanase isoenzymes from young leaves of barley (Hordeum vulgare).
  • Mutated barley (1, 3)-$β$-D-glucan endohydrolases synthesize crystalline (1, 3)-$β$-D-glucans
  • Subsite affinities and disposition of catalytic amino acids in the substrate-binding region of barley 1, 3-$β$-glucanases. Implications in plant-pathogen interactions
  • Binding interactions between barley thaumatin-like proteins and (1, 3)-$β$-D-glucans
  • Barley arabinoxylan arabinofuranohydrolases: purification, characterization and determination of primary structures from cDNA clones
  • Cellulose-and xylan-degrading enzymes of Aspergillus terreus and Aspergillus niger
  • A single limit dextrinase gene is expressed both in the developing endosperm and in germinated grains of barley
  • Comparative modeling of the three-dimensional structures of family 3 glycoside hydrolases
  • Structure-function relationships of $β$-D-glucan endo-and exohydrolases from higher plants
  • Barley $β$-D-glucan exohydrolases. Substrate specificity and kinetic properties
  • Plant enzyme structure. Explaining substrate specificity and the evolution of function
  • Immunomodulator polysaccharides: chemistry, disposition and metabolism
  • Regulation of Genes Encoding b-Glucan Exohydrolases in Barley (Hordeum vulgare L.)
  • Purification and characterization of a (1→ 3)-$β$-d-glucan endohydrolase from rice (Oryza sativa) bran
  • Polysaccharide hydrolases in germinated barley and their role in the depolymerization of plant and fungal cell walls
  • Regulation of genes encoding $β$-d-glucan glucohydrolases in barley (Hordeum vulgare)
  • (1--3)-$β$-Glucan synthesis ofNeurospora crassa
  • Photostimulated oxygen uptake in Trichoderma viride
  • Isolation of anucleated yeast protoplasts by means of density gradient centrifugation
  • Crystallization and preliminary X-ray analysis of $β$-glucan exohydrolase isoenzyme ExoI from barley (Hordeum vulgare)
  • PRODUCTION OF YEAST-LYSING ENZYMES BY MICROORGANISMS ON YEAST-CELL WALLS
  • Protoplast formation ofNeurospora crassa by an inducible enzyme system ofArthrobacter GJM-1
  • 5-Structure of the Catalytic Domains of Carbohydrate Modifying Enzymes-Three-dimensional Structures, Catalytic Mechanisms and Protein Engineering of b-Glucan Hydrolases from Barley
  • Altering the Substrate Specificity of Barley (13)-b-Glucan Endohydrolase Isoenzyme GII
  • Synthesis of complex oligosaccharides using a mutated barley (1, 3)-$β$-D-glucan endohydrolase
  • Chemoenzymic synthesis of (1→ 3, 1→ 4)-$β$-D-glucooligosaccharides for subsite mapping of (1→ 3, 1→ 4)-$β$-D-glucan endohydrolases
  • Crystal Structure of a Barley $β$-D-Glucan Exohydrolase.
  • Crystal structure of a barley bD-glucan exohydrolase. Catalytic mechanism, substrate binding and homology modelling
  • Barley Thaumatin-Like Proteins Bind Insoluble (1→ 3)-$β$-Glucans
  • Genetic engineering of barley $β$-d-grucan exohydrolases
  • Poster: Cell Walls and Cytoskeleton
  • Barley B—D—glucan exohydrolases. Substrate specificity and kinetic properties
  • The evolutionary advantage of an aromatic clamp in plant family 3 glycoside exo-hydrolases
  • Editorial: Structural bioinformatics and biophysical approaches for understanding the plant responses to biotic and abiotic stresses
  • Definition of the Acceptor Substrate Binding Specificity in Plant Xyloglucan Endotransglycosylases using Computational Chemistry
  • Definition of the Acceptor Substrate Binding Specificity in Plant Xyloglucan Endotransglycosylases Using Computational Chemistry
  • Barley HvNIP2;1 aquaporin permeates water, metalloids, saccharides, and ion pairs due to structural plasticity and diversification
  • Molecular mechanisms of processive glycoside hydrolases underline catalytic pragmatism
  • Enzymes in 3D: Synthesis, remodelling, and hydrolysis of cell wall (1,3;1,4)-β-glucans
  • Engineering of substrate specificity in a plant cell‐wall modifying enzyme through alterations of carboxyl‐terminal amino acid residues
  • A single nucleotide substitution in TaHKT1;5‐D controls shoot Na+ accumulation in bread wheat
  • Overexpression of the class I homeodomain transcription factor TaHDZipI‐5 increases drought and frost tolerance in transgenic wheat
  • Barley Nodulin 26-like Intrinsic Protein permeates water, metalloids, saccharides, and ion pairs due to structural plasticity and diversification

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