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Preparing O-glycoside (e.g., glucosides, etc.)

Subclass of:

435 - Chemistry: molecular biology and microbiology

435041000 - MICRO-ORGANISM, TISSUE CELL CULTURE OR ENZYME USING PROCESS TO SYNTHESIZE A DESIRED CHEMICAL COMPOUND OR COMPOSITION

435072000 - Preparing compound containing saccharide radical

Patent class list (only not empty are listed)

Deeper subclasses:

Class / Patent application numberDescriptionNumber of patent applications / Date published
435074000 Preparing O-glycoside (e.g., glucosides, etc.) 71
20080268504Glycorandomization and Production of Novel Vancomycin Analogs - The present invention provides combinatorial methods for rapidly generating a diverse library of glycorandomized structures, comprising incubating one or more aglycons and a pool of NDP-sugars in the presence of a glycosyltransferase. The glycosyltransferase may be one that is associated with or involved in production of natural secondary metabolites, or one which is putatively associated with or involved in production of natural secondary metabolites. The glycosyltransferase may show significant flexibility with respect to its NDP-sugar donors and/or its aglycons. NDP-sugar donors may be commercially available, or may be produced by utilizing mutant or wild type nucleotidyltransferases significant flexibility with respect to their substrates.10-30-2008
20090004699Process for Producing Beta-Chitin - The method of the present invention for producing β-chitin comprises a step of cultivating an alga capable of producing β-chitin using a medium that contains nitrogen (N), phosphorus (P), silicon (Si), and selenium (Se), wherein the weight ratio of phosphorus to nitrogen (P/N) is 0.1 or above, the weight ratio of silicon to nitrogen (Si/N) is 0.1 or above, and nitrogen (N) is contained at 160 ppm or more. It is preferable that selenium (Se) is present in the medium at a concentration of 0.08 ppm to 0.008 ppb.01-01-2009
20090017504Method for preparing 20-O-beta-D-glucopyranosyl-20(S)-protopanaxadiol (ginsenoside M1) by using sanqi leaves and stems - The present invention provides a method for preparing 20-O-β-D-glucopyranosyl-20(S)-protopanaxadiol (Ginsenoside M1) by using Sanqis leaves and stems. The method of the invention includes the steps of: (a) provides powder of Sanqi leaves and stems; (b) provides a fungus for fermenting the Sanqi leaves and stems, wherein the fermentation temperature is ranged from 20-50° C., the fermentation humidity is ranged from 70-100%, the pH value is ranged from 4.0-6.0, and the fermentation period is ranged from 5-15 days; (c) extracts and collects the fermentation products; and (d) isolates 20-O-β-D-glucopyranosyl-20(S)-protopanaxadiol from the fermentation products.01-15-2009
20090130717Novel K04-0144 Substance and a Process for Production Thereof - A microorganism represented by a strain K04-0144 belonging to 05-21-2009
20090263867LONG-CHAIN CHONDROITIN SUGAR CHAIN AND METHOD FOR PRODUCING THE SAME AND METHOD FOR PROMOTING SYNTHESIS OF CHONDROITIN - A method for producing a chondroitin sugar chain comprises at least the following step: a step of allowing “a glucuronic acid donor”, “an N-acetyl galactosamine donor”, “a sugar receptor” and “a bacterial cell enzyme which synthesizes chondroitin” to coexist in a reaction system in the presence of a surfactant. Here, the surfactant is preferably selected from n-nonyl-β-D-thiomaltopyranoside, sucrose monocaproate and sucrose monolaurate. The chondroitin sugar chain has all the following properties 1) to 3): 1) a weight average molecular weight: 50,000 or more when it is measured by gel filtration chromatography, 2) it is completely degraded to disaccharides with chondroitinase ABC, 3) when the sugar chain is decomposed with chondroitinase ABC and the decomposed products are subjected to a disaccharide analysis, substantially all of them correspond to an unsaturated disaccharide unit of chondroitin.10-22-2009
20100021969EXTRACTION OF PHYTOCHEMICALS BY ENZYMATIC HYDROLYSIS - A process for extracting phytochemicals from plants. The process generally comprises controllably slurrying a selected plant material in a volume, adding a selected enzyme the slurry while it is controllably agitated, then heating the controllably agitated slurry-enzyme mixture to a temperature from the range of 40° C. to 110° C., and then maintaining the slurry-enzyme mixture at that temperature for a selected period of time. The slurry is then separated into a solids fraction and a liquids fraction that contains extracted phytochemicals. The liquids fraction is controllably de-watered to produce a fluid extract concentrate. The liquids fraction may optionally be dried to produce a dried extract concentrate. Suitable enzymes for use with this process include α-amylases, β-amylases, endo-β-1,4-glucanases, cellobiohydrolases, cellulases, hemicellulases, β-glucosidases, β-xylosidases, xylanases, pullulases, esterases and mixtures thereof.01-28-2010
20100055741MATERIALS AND METHODS FOR CONVERTING BIOMASS TO BIOFUEL - This disclosure provides for materials and methods for converting biomass to biofuels. The materials include a colloid mill with or without cellulase enzymes, and the methods include the use of a colloid mill and optionally cellulose enzymes to pretreat biomass for use in a biomass to biofuel production process.03-04-2010
20100143975MONOTERPENOID MODIFYING ENZYMES - Monoterpenoid esters that have been modified to include a sugar pendant group are disclosed. Plant glycosyltransferase enzymes are provided that function to add a sugar, typically glucose, to monoterpenoids in a bioreactor for the production of glycosylated monoterpenoid esters, together with nucleic acid molecules encoding such enzymes and vectors and transgenic cells including such nucleic acid molecules.06-10-2010
20100291631Novel Beta-Galactoside-Alpha 2,3-Sialyltransferase, a Gene Encoding Thereof, and a Method for Producing Thereof - The present invention provides a novel β-galactoside-α2,3-sialyltransferase and a nucleic acid encoding the sialyltransferase. The present invention also provides a microorganism producing the sialyltransferase, as well as a method for producing the sialyltransferase using such a microorganism. The present invention further provides a vector carrying a nucleic acid encoding the sialyltransferase, and a host cell transformed with the vector, as well as a method for producing a recombinant β-galactoside-α2,3-sialyltransferase. The present invention further provides a method for preparing a sialylsugar chain, which uses the sialyltransferase of the present invention.11-18-2010
20110008844SIALYLTRANSFERASE AND DNA ENCODING THE SAME - A sialyltransferase having the following physico-chemical properties:01-13-2011
20110045539Methods and Materials for the Production of Shikimic Acid - Novel enzymes and novel enzymatic pathways for the pyruvate-based synthesis of shikimate or at least one intermediate thereto or derivative thereof, nucleic acids encoding the enzymes, cells transformed therewith, and kits containing said enzymes, cells, or nucleic acid. A KDPGal aldolase is used to perform condensation of pyruvate with D-erythrose 4-phosphate to form 3-deoxy-D-arabino-heptulosonate-7-phosphate (DAHP); a 3-dehydroquinate synthase is used to convert the DAHP to 3-dehydroquinate (DHQ); DHQ dehydratase can then convert DHQ to the key shikimate intermediate, 3-dehydroshikimate.02-24-2011
20110151517PROCESS FOR THE PREPARATION OF HOMOPOLYSACCHARIDES - A process for the preparation of aqueous solutions of glucans having a β-1,3-glycosidically-linked main chain and side groups having a β-1,6-glycosidic bond by fermentation of fungal strains. The fungal strains secrete the glucans into the fermentation broth, in an aqueous culture medium, and the separation of the glucans from the fermentation broth is effected using asymmetrical filter membranes.06-23-2011
20110300581PROCESS FOR PRODUCING DIFRUCTOSE DIANHYDRIDE III CRYSTALS - A process for producing the crystals of difructose dianhydride III (DFA III), namely a indigestible disaccharide where two fructose molecules are bonded to each other at positions 1,2′ and 2,3′ (di-D-fructofuranose-1,2′:2,3′-dianhydride), where solutions containing DFA III are adjusted to and/or maintained at pH 5 or more, preferably pH 5 to 8, and more preferably 6 to 8. DFA III can be produced industrially without lowering the crystal yield even when the crystallization thereof is done in a recycling system; additionally by adjusting the total fructose content in mother solutions for (crude) crystallization to 5% or less per a solid content basis and adjusting the fructose content to 1% or less, DFA III can more effectively be produced.12-08-2011
20110312034Recombined Molecules and Preparation Thereof - The invention relates to novel molecules and libraries thereof as well as methods for their production. Methods of producing the novel molecules include the cleaving of starting molecules into molecular subunits and the assembly of the subunits into novel recombined molecules.12-22-2011
20120015404GENE CLUSTER FOR THURINGIENSIN SYNTHESIS - The invention belongs to the technical field of genetic engineering of agricultural microorganisms. Specifically, the invention relates to producing and using gene cluster for thuringiensin synthesis from 01-19-2012
20120028307ENZYMATIC PRODUCTION OF AN ETHYLENICALLY UNSATURATED GLYCOSIDE USING POLYSACCHARIDES - Ethylenically unsaturated glycosides of formula I02-02-2012
20120028308ENZYMATIC PRODUCTION OF AN ETHYLENICALLY UNSATURATED GLYCOSIDE - Ethylenically unsaturated glycosides of formula I02-02-2012
20120129221BIOCHEMICAL PLATFORM FOR FUELS AND CHEMICALS PRODUCTION FROM CELLULOSIC BIOMASS - An alternative biochemical process for fuels and chemicals production from cellulosic biomass is presented. The method includes an aerobic step where microorganisms convert carbohydrates contained in cellulosic biomass into sugar acids, which can be converted to fuels and chemicals, including ethanol, gluconate, and acetic acid, via fermentation.05-24-2012
20120135469NOVEL GLYCOSYLTRANSFERASE, NOVEL GLYCOSYLTRANSFERASE GENE, AND NOVEL SUGAR DONOR COMPOUND - An object of the present invention is to provide a sugar donating reagent comprising a sugar donor compound other than a sugar nucleotide and an enzyme capable of catalyzing a glycosyl transfer reaction using a sugar donor compound other than a sugar nucleotide. The present invention provides the following: a sugar donating reagent containing a compound of formula (A):05-31-2012
20130059340BIOCATALYTIC PRODUCTION OF GLYCOSIDES - The present invention relates to the biocatalytic production of glycosides. In particular, the invention discloses a method to produce alkylcellobiosides, arylcellobiosides, cellobiolipids, cellotriolipids, glucosophorolipids and cellobiosesophorolipids via the usage of a cellodextrin phosphorylase (CDP) derived from 03-07-2013
20130130319CELLS AND METHODS FOR PRODUCING RHAMNOLIPIDS - The invention relates to cells and nucleic acids and also use thereof for producing rhamnolipids, and also methods for producing rhamnolipids.05-23-2013
20140212927COMPOSITIONS COMPRISING CELLOBIOSE DEHYDROGENASE FROM PYCNOPORUS CINNABARINUS AND THEIR USE FOR THE DEGRADATION OF LIGNOCELLULOSIC BIOMASS - Enzyme compositions including at least a) a cocktail of cellulases from 07-31-2014
20140335567LACTONASE DERIVED FROM CANDIDA BOMBICOLA AND USES THEREOF - The present disclosure relates to an enzyme derived from 11-13-2014
20150056658CELLS, NUCLEIC ACIDS, ENZYMES AND USE THEREOF, AND METHODS FOR THE PRODUCTION OF SOPHOROLIPIDS - The invention relates to cells, nucleic acids, and enzymes, the use thereof for producing sophorolipids, and methods for producing sophorolipids.02-26-2015
20150056659CELLS, NUCLEIC ACIDS, ENZYMES AND USE THEREOF, AND METHODS FOR THE PRODUCTION OF SOPHOROLIPIDS - The invention relates to cells, nucleic acids, and enzymes, the use thereof for producing sophorolipids, and methods for producing sophorolipids.02-26-2015
20150056660CELLS, NUCLEIC ACIDS, ENZYMES AND USE THEREOF, AND METHODS FOR THE PRODUCTION OF SOPHOROLIPIDS - The invention relates to cells, nucleic acids, and enzymes, the use thereof for producing sophorolipids, and methods for producing sophorolipids.02-26-2015
20150056661CELLS, NUCLEIC ACIDS, ENZYMES AND USE THEREOF, AND METHODS FOR THE PRODUCTION OF SOPHOROLIPIDS - The invention relates to cells, nucleic acids, and enzymes, the use thereof for producing sophorolipids, and methods for producing sophorolipids.02-26-2015
20150307634PECTIN EXTRACTION FROM COFFEE PULP - The invention provides a coffee pulp treatment process comprising (a) Providing coffee pulp, obtainable from a production process for producing green coffee beans from coffee cherries; (b) extracting from the coffee pulp a pectin comprising extract, wherein extraction is performed under acid conditions or alkaline conditions, to provide the pectin comprising extract; (c) enzymatic treatment of the pectin comprising extract, wherein the enzymatic treatment comprises a treatment with one or more enzymes selected from the group consisting of an esterase and a reductase, to provide a enzymatically treated pectin material; and (d) extraction of polyphenol functionalized coffee pectin extract from the enzymatically treated pectin material. 10-29-2015
20160083742Modified Plants for Producing Aroma/Fine/Specialty Chemicals - The present disclosure describes genetically modified plants that contain one or more exogenous genes associated with aroma/fine/specialty compound biosynthesis, which are capable of producing aroma/fine/specialty compounds.03-24-2016
20160102330PRODUCTION OF DIRHAMNOSE-LIPID IN RECOMBINANT NONPATHOGENIC BACTERIUM PSEUDOMONAS CHLORORAPHIS - NRRL B-30761 produces monorhamnolipids with predominantly 3-hydroxydodecenoyl-3-hydroxydecanoate (C04-14-2016
20160168612METHODS TO PRODUCE BOLAAMPHIPHILIC GLYCOLIPIDS06-16-2016
20190144907PRODUCTION OF STEVIOL GLYCOSIDES IN RECOMBINANT HOSTS05-16-2019
435075000 Oxygen of the saccharide radical is directly bonded to a nonsaccharide heterocyclic ring or a fused- or bridged-ring system which contains a nonsaccharide heterocyclic ring (e.g., coumermycin, novobiocin, etc.) 14
20090191593METHODS AND ORGANISMS FOR UTILIZING SYNTHESIS GAS OR OTHER GASEOUS CARBON SOURCES AND METHANOL - The invention provides a non-naturally occurring microbial organism having an acetyl-CoA pathway and the capability of utilizing syngas or syngas and methanol. In one embodiment, the invention provides a non-naturally occurring microorganism, comprising one or more exogenous proteins conferring to the microorganism a pathway to convert CO, CO07-30-2009
20100062492Method For Preparing Icariside II, Cosmetic Composition Containing The Same and the Use Thereof For Skin Whitening - Disclosed are a method for preparing icariside II represented by Formula 1, which inhibits the glycosylation of glycoprotein enzyme tyrosinase by inhibiting the enzymatic activity of alpha-glucosidase, which is an enzyme in the glycosylation of tyrosinase, as well as a skin whitening composition.03-11-2010
20100143976PROCESS OF INCREASING CELLULAR PRODUCTION OF BIOLOGICALLY ACTIVE COMPOUNDS - A method of increasing production of a methylmalonyl-CoA derivative in a bacterium is disclosed that includes providing a bacterium that produces a methylmalonyl-CoA derivative in which methylmalonyl-CoA mutase function has been inhibited and culturing the bacterium in a medium containing an effective amount of methylmalonyl-CoA or a precursor thereof to increase the production of the methylmalonyl-CoA derivative by the bacterium. The production of the methylmalonyl-CoA derivative is increased when compared to production of the methylmalonyl-CoA derivative by the bacterium when cultured in a medium without the effective amount of methylmalonyl-CoA or a precursor thereof.06-10-2010
20100323402UDP-GLUCURONYL TRANSFERASE AND POLYNUCLEOTIDE ENCODING THE SAME - The present invention provides a novel UDP-glucuronosyltransferase and a polynucleotide encoding the same (for example, a polynucleotide comprising a polynucleotide consisting of one nucleotide sequence selected from the group consisting of the nucleotide sequence at positions 1 to 1359 in the nucleotide sequence represented by SEQ ID NO: 4, the nucleotide sequence at positions 1 to 1365 in the nucleotide sequence represented by SEQ ID NO: 10, the nucleotide sequence at positions 1 to 1371 in the nucleotide sequence represented by SEQ ID NO: 12, and the nucleotide sequence at positions 1 to 1371 in the nucleotide sequence represented by SEQ ID NO: 22; or a polynucleotide comprising a polynucleotide encoding a protein having one amino acid sequence selected from the group consisting of SEQ ID NOS: 5, 11, 13 and 23), etc. This provides a novel UDP-glucuronosyltransferase with a broad substrate specificity.12-23-2010
20120034658Methods for Creating Color Variation in Anthocyanins Produced by Cell Culture - Disclosed are methods for obtaining blue anthocyanin pigments and compositions including such pigments. This blue anthocyanin is present at an acidic pH (where anthocyanins are most stable) and may be used as a natural color additive. The methods can include cultivating a plant callus from a plant capable of producing anthocyanin in which the callus is treated with a blue anthocyanin-generating agent at a concentration sufficient to generate callus with blue anthocyanin pigments. The method can also include recovering the blue anthocyanin pigments from the culture. In an example, the blue anthocyanin-generating agent is ammonium molybdate.02-09-2012
20130059341METHOD FOR PRODUCING GLUCURONIC ACID CONJUGATE USING SACCHAROMYCES CEREVISIAE - Provided is a new method for producing a glucuronide, having excellent productivity and being replaceable with a method using 03-07-2013
20160090578ENZYMES CATALYZING THE GLYCOSYLATION OF POLYPHENOLS - Enzymes catalyzing the glycosylation of polyphenols, in particular flavonoids, benzoic acid derivatives, stilbenoids, chalconoids, chromones, and coumarin derivatives. An enzyme catalyzing the glycosylation of polyphenols, wherein the enzyme 03-31-2016
20220136024PROTECTING GROUP CHEMISTRY FOR CLEAN, REDUCTANT-FREE DYEING - The present disclosure relates to the biosynthesis of indigoid dye precursors and their conversion to indigoid dyes. Specifically, the present disclosure relates to methods of using polypeptides to produce indigoid dye precursors from indole feed compounds, and the use of the indigoid dye precursors to produce indigoid dyes.05-05-2022
435076000 The hetero ring has eight or more ring members and only oxygen as ring hetero atoms (e.g., erythromycin, spiramycin, nystatin, etc.) 6
20100304441FUNGAL STRAINS AND A PROCESS FOR PRODUCTION OF INSECTICIDE THEREOF - The present invention relates to fungal strains capable of producing insecticide and a process for production of insecticide. It also relates to a method of cultivation of fungal strains and a fermentation medium for culturing the fungal strains.12-02-2010
20110262971Genetically Modified E. coli Strains for Producing Erythromycin - Genetically modified 10-27-2011
20120282657ENHANCING SPINOSYN PRODUCTION WITH OXYGEN BINDING PROTEINS - The invention describes the integration of polynucleotides into chromosomal DNA of 11-08-2012
20130266986PROCEDURE FOR THE PRODUCTION OF TIACUMICIN B - The present invention relates to a process for the production of tiacumicin B which comprises fermentation of a micro-organism of the species 10-10-2013
20130288308Soybean-Based Fermentation Media, Methods of Making and Use - Fermentation media containing an isoflavone-depleted soybean meal or isoflavone-depleted soybean meal product and at least one exogenous added ingredient that comprises a substrate for microbial growth are provided. Methods of making a fermentation medium comprising an isoflavone-depleted soybean meal or isoflavone-depleted soybean meal product and methods for obtaining a fermentation product are also provided. The present invention is further directed to fermentation broths obtained by the media and methods. The present invention is also directed to feed additives produced from fermentation broths obtained by the methods.10-31-2013
20140248667ENHANCING SPINOSYN PRODUCTION WITH OXYGEN BINDING PROTEINS - The invention describes the integration of polynucleotides into chromosomal DNA of 09-04-2014
435078000 Oxygen atom of the saccharide radical is directly bonded to a condensed ring system having three or more carboxyclic rings (e.g., dauomycin, adriamycin, etc.) 15
20090142809Method for Cleaving Cervimycin Monoesters - The invention relates to a method for cleaving cervimycin esters. An object of the invention to convert in a simple manner the cervimycin esters which are less active but formed in larger quantity into the highly active cervimycin K that occurs as a minor component in the preparation by fermentation, is achieved by preparing unesterified cervimycins from cervimycin esters with di- or monomethylated malonic acids, by ester cleavage effected by at least one esterolytic enzyme at temperatures of 20° C. to 75° C. and a pH of pH 5.0 to 10.0, preferably pH 6.0 to 9.0.06-04-2009
20100086973GLYCOSYLATE DERIVATIVES OF MITHRAMYCIN, METHOD OF PREPARATION AND USES THEREOF - The present invention provides compounds characterized by the formula (I), where each of the substituent radicals is described in the specification. The invention also describes the use of said compounds in the treatment of various diseases, including: cancer or tumoral processes in general, Paget's disease, hypercalcaemia, hypercalciuria and neurological diseases (inter alia, Parkinson's, Alzheimer's, Huntington's).04-08-2010
20100143977Genetically modified strains producing anthracycline metabolites useful as cancer drugs - The invention refers to a microbial strain, which produces anthracycline metabolites at a titre of at least 06-10-2010
20100255543METHOD FOR PRODUCTION OF NON-NATURAL ANTIBIOTIC - Disclosed is a transformant prepared by introducing a ketoreductase gene involved in the biosynthesis of L-epivancosamine into an actinobacterium originally capable of producing daunorubicin. Also disclosed is a process of efficiently producing a non-natural daunorubicin derivative using the transformant. The transformant is capable of efficiently producing a non-natural daunorubicin derivative such as epidaunorubicin.10-07-2010
20110171691GENETICALLY MODIFIED STRAINS FOR BIOTRANSFORMATIONS IN ANTHRACYCLINE PRODUCTION - A microbial strain which converts anthracycline metabolites into non-natural anthracycline antibiotics is described. A process for converting anthracycline metabolites into anthracycline antibiotics using a microbial strain is also described.07-14-2011
20110256588METHOD OF MANUFACTURING REBAUDIOSIDE A IN HIGH YIELD BY RECYCLING BY-PRODUCTS PRODUCED FROM MANUFACTURING PROCESS FOR REBAUDIOSIDE A - The present invention relates to a method of producing Rebaudioside A in a high yield by recycling by-products produced when Rebaudioside A is produced from leaves of 10-20-2011
20120315672METHODS FOR MICROBIAL PRODUCTION OF TERPENOIDS - The invention relates to recombinant expression of terpenoid synthase enzymes and geranylgeranyl diphosphate synthase (GGPPS) enzymes in cells and the production of diterpenoids.12-13-2012
20140024080MICROBIAL METHOD FOR THE BIOTRANSFORMATION OF COLCHICINOID COMPOUNDS - The invention relates to a method for the Bio-transformation of Thiocolchicine a colchicinoid compound into its glycosylated form using a selective microorganism 01-23-2014
20140329281Recombinant Production of Steviol Glycosides - Recombinant microorganisms, plants, and plant cells are disclosed that have been engineered to express recombinant genes encoding UDP-glycosyltransferases (UGTs). Such microorganisms, plants, or plant cells can produce steviol glycosides, e.g., Rebaudioside A and/or Rebaudioside D, which can be used as natural sweeteners in food products and dietary supplements.11-06-2014
20150322473Methods and materials for Biosynthesis of Mogroside Compounds - The invention relates to methods for producing mogrosides with the aid of enzymes. In particular the invention proposes various biosynthetic pathways useful for mogroside production and enzymes useful for mogroside production are provided. Furthermore, the invention provides recombinant hosts useful in performing the methods of the invention.11-12-2015
20150361476Efficient Production of Steviol Glycosides in Recombinant Hosts - Recombinant microorganisms are disclosed that produce steviol glycosides and have altered expression of one or more endogenous transporter or transcription factor genes, or that overexpress one or more heterologous transporters, leading to increased excretion of steviol glycosides of interest.12-17-2015
20160097070NON-CALORIC SWEETENERS AND METHODS FOR SYNTHESIZING - Disclosed are steviol glycosides referred to as rebaudioside V and rebaudioside W. Also disclosed are methods for producing rebaudioside M (Reb M), rebausoside G (Reb G), rebaudioside KA (Reb KA), rebaudioside V (Reb V) and rebaudioside (Reb W).04-07-2016
20160097072NON-CALORIC SWEETENERS AND METHODS FOR SYNTHESIZING - Disclosed are steviol glycosides referred to as rebaudioside V and rebaudioside W. Also disclosed are methods for producing rebaudioside M (Reb M), rebaudioside G (Reb G), rebaudioside KA (Reb KA), rebaudioside V (Reb V) and rebaudioside (Reb W).04-07-2016
20160153018NON-CALORIC SWEETENERS AND METHODS FOR SYNTHESIZING06-02-2016
20160177360MICROORGANISMS FOR DITERPENE PRODUCTION06-23-2016
435079000 Oxygen atom of the saccharide radical is bonded to a cyclohexyl radical (e.g., kasugamycin, etc.) 10
20100068764Droplet Actuator Devices and Methods Employing Magnetic Beads - A method of providing a droplet in contact with a magnetically responsive bead and having a reduced quantity of a substance. The method generally includes the steps of (a) providing a droplet actuator (03-18-2010
20100151528METHODS OF PRODUCING VALIDAMYCIN A ANALOGS AND USES THEREOF - This disclosure relates to validamycin A biosynthesis and in particular, to methods of producing validamycin A analogs and uses thereof. In a particular example, a method for making a validamycin A analog includes transforming a host cell with one or more recombinant DNA vectors to produce a valN-inactivated mutant; and culturing the valN-inactivated mutant in a culture medium to produce a validamycin A analog, such as 1,1′-bis-valienamine and validienamycin, and their conversion to valienamine. The present disclosure further relates to compositions including such compounds as well as methods of using the compositions, such as for antifungal agents.06-17-2010
20100279355BETA 1,3-N-ACETYL-D-GALACTOSAMINE TRANSFERASE PROTEIN, NUCLEIC ACID ENCODING THE SAME AND METHOD OF EXAMINING CANCERATION USING THE SAME - The N-acetyl-D-galactosamine transferase protein of the present invention is characterized by transferring N-acetyl-D-galactosamine to N-acetyl-D-glucosamine with β1,3 linkage, and it preferably has the amino acid sequence shown in SEQ ID NO: 2 or 4. The canceration assay according to the present invention uses a nucleic acid for measurement which hybridizes under stringent conditions to the nucleotide sequence shown in SEQ ID NO: 1 or 3 or a nucleotide sequence complementary to at least one of them.11-04-2010
20140127750FAGOPYRITOL SYNTHASE GENES AND USES THEREOF - The present invention relates to an isolated DNA molecule encoding a fagopyritol synthase. A method for producing a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor is also described. The method includes providing a fagopyritol synthase, providing a substrate comprising a galactosyl donor and a galactosyl acceptor, and combining the fagopyritol synthase with the substrate under conditions effective produce a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor.05-08-2014
20140248668Methods and Materials for Recombinant Production of Saffron Compounds - Recombinant microorganisms, plants, and plant cells are disclosed that have been engineered to express a zeaxanthin cleavage dioxygenase alone or in combination with recombinant genes encoding UDP-glycosyltransferases (UGTs). Such microorganisms, plants, or plant cells can produce compounds from saffron such as crocetin, crocetin dialdehyde, crocin, or picrocrocin.09-04-2014
20140370549Method for Producing Scyllo-Inositol - The disclosure provides a method of producing a scyllo-inositol or a new scyllo-inositol derivative in a one-step process, from ubiquitous and inexpensive raw materials. Also provided is a scyllo-inositol derivative bonded to saccharides such as glucose and similar.12-18-2014
20160376572FAGOPYRITOL SYNTHASE GENES AND USES THEREOF - The present invention relates to an isolated DNA molecule encoding a fagopyritol synthase. A method for producing a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor is also described. The method includes providing a fagopyritol synthase, providing a substrate comprising a galactosyl donor and a galactosyl acceptor, and combining the fagopyritol synthase with the substrate under conditions effective produce a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor.12-29-2016
20160376573FAGOPYRITOL SYNTHASE GENES AND USES THEREOF - The present invention relates to an isolated DNA molecule encoding a fagopyritol synthase. A method for producing a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor is also described. The method includes providing a fagopyritol synthase, providing a substrate comprising a galactosyl donor and a galactosyl acceptor, and combining the fagopyritol synthase with the substrate under conditions effective produce a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor.12-29-2016
20160376623FAGOPYRITOL SYNTHASE GENES AND USES THEREOF - The present invention relates to an isolated DNA molecule encoding a fagopyritol synthase. A method for producing a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor is also described. The method includes providing a fagopyritol synthase, providing a substrate comprising a galactosyl donor and a galactosyl acceptor, and combining the fagopyritol synthase with the substrate under conditions effective produce a fagopyritol, an insulin mediator, an insulin mediator analogue, an insulin mediator homologue, or an insulin mediator inhibitor.12-29-2016
435080000 Cyclohexyl radical is substituted by two or more nitrogen atoms (e.g., destomycin, neamin, etc.) 1
435082000 Having two saccharide radicals bonded through only oxygen to adjacent ring carbons of the cyclohexyl radical (e.g., ambutyrosin, ribostamycin, etc.) 1
20160040206KANAMYCIN COMPOUND, KANAMYCIN-PRODUCING STREPTOMYCES SPECIES BACTERIUM, AND METHOD OF PRODUCING KANAMYCIN - Vectors expressing kanA-kanB-kanK and other kanamycin production-related genes, 02-11-2016

Patent applications in class Preparing O-glycoside (e.g., glucosides, etc.)

Patent applications in all subclasses Preparing O-glycoside (e.g., glucosides, etc.)

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