Papoutsakis
Eleftherios Papoutsakis, Newark, DE US
Patent application number | Description | Published |
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20090259451 | REVERSE ENGINEERING GENOME-SCALE METABOLIC NETWORK RECONSTRUCTIONS FOR ORGANISMS WITH INCOMPLETE GENOME ANNOTATION AND DEVELOPING CONSTRAINTS USING PROTON FLUX STATES AND NUMERICALLY-DETERMINED SUB-SYSTEMS - A genome-scale metabolic network reconstruction for | 10-15-2009 |
20110117655 | METHODS AND COMPOSITIONS FOR GENETICALLY MANIPULATING CLOSTRIDIA AND RELATED BACTERIA WITH HOMOLOGOUS RECOMBINATION ASSOCIATED PROTEINS - Methods for effecting homologous recombination in a bacterium of the Clostridia family are described. These methods provide enhanced capability to genetically modify clostridia. | 05-19-2011 |
20130203170 | METHODS AND COMPOSITIONS FOR GENETICALLY MANIPULATING CLOSTRIDIA AND RELATED BACTERIA WITH HOMOLOGOUS RECOMBINATION ASSOCIATED PROTEINS - Methods for enhancing single cross-over homologous recombination in gram positive bacteria are presented. These methods provide enhanced capability to genetically modify gram positive bacteria. | 08-08-2013 |
Eleftherios T. Papoutsakis, Newark, DE US
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20100047890 | METHODS AND COMPOSITIONS FOR GENERATING SPORULATION DEFICIENT BACTERIA - The present invention relates to methods and compositions for engineering sporulating bacterial cells, particularly a cell of the class | 02-25-2010 |
20100075424 | METHODS AND COMPOSITIONS FOR GENETICALLY ENGINEERING CLOSTRIDIA SPECIES - The present invention relates to methods and compositions for engineering Clostridia species. In particular, embodiments of the present invention relate to the expression of recombinant resolvase proteins in Clostridia species. | 03-25-2010 |
20100151544 | SYSTEMS AND METHODS FOR SELECTIVE ALCOHOL PRODUCTION - The present invention relates to metabolic engineering issues related to flux determinism in core primary-metabolism pathways. In particular, the present invention relates to alcohol (e.g., butanol) production and selectivity, and related methods thereof. | 06-17-2010 |
20110256604 | GENERATION OF ASPOROGENOUS SOLVENTOGENIC CLOSTRIDIA - Expression of the SpoIIE gene in a solventogenic | 10-20-2011 |
20110300553 | ENGINEERING COMPLEX MICROBIAL PHENOTYPES WITH SUCCESSIVE INTEGRATIONS OF EXOGENOUS DNA (SIEDNA) - The present invention relates to a recombinant | 12-08-2011 |
20120035078 | ENGINEERING COMPLEX MICROBIAL PHENOTYPES WITH TRANSCRIPTION ENHANCEMENT - The present invention relates to a recombinant | 02-09-2012 |
20120064587 | RECOMBINANT CLOSTRIDIA THAT FIX CO2 AND CO AND USES THEREOF - The present invention relates a recombinant | 03-15-2012 |
20120301964 | METHODS AND COMPOSITIONS FOR GENETICALLY ENGINEERING CLOSTRIDIA SPECIES - The present invention relates to methods and compositions for engineering Clostridia species. In particular, embodiments of the present invention relate to the expression of recombinant resolvase proteins in Clostridia species. | 11-29-2012 |
20140141516 | METHODS AND COMPOSITIONS FOR GENETICALLY ENGINEERING CLOSTRIDIA SPECIES - The present invention relates to methods and compositions for engineering | 05-22-2014 |
20140335623 | METHODS AND COMPOSITIONS FOR GENERATING SPORULATION DEFICIENT BACTERIA - The present invention relates to methods and compositions for engineering sporulating bacterial cells, particularly a cell of the class Clostridia. In particular, the present invention relates to the generation of sporulation deficient bacteria for the generation of industrial superior phenotypes. | 11-13-2014 |
Eleftherios Terry Papoutsakis, Newark, DE US
Patent application number | Description | Published |
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20100136640 | ENHANCED BUTANOL PRODUCING MICROORGANISMS AND METHOD FOR PREPARING BUTANOL USING THE SAME - The present invention relates to a recombinant mutant microorganism having enhanced butanol producing capacity and a method for producing butanol using the same. In the microorganism, genes coding for enzymes responsible for the biosynthesis of lactate, ethanol and/or acetate are deleted or attenuated and genes coding for enzymes involved in butanol biosynthesis are introduced and amplified. | 06-03-2010 |
20100143985 | METHOD FOR PREPARING BUTANOL THROUGH BUTYRYL-COA AS AN INTERMEDIATE USING YEAST - Disclosed herein are a method for producing butanol in yeast having the ability to biosynthesize butanol using butyryl-CoA as an intermediate, the method comprises producing butyryl-CoA in yeast having a CoAT (acetyl-CoA:butyryl-CoA CoA-transferase)-encoding gene introduced thereinto, through various pathways, and then converting the produced butyryl-CoA to butanol. | 06-10-2010 |
20110020888 | METHOD FOR PREPARING BUTANOL THROUGH BUTYRYL-CoA AS AN INTERMEDIATE USING BACTERIA - The present invention relates to a method for producing butanol using a bacterium capable of biosynthesizing butanol from butyryl-CoA as an intermediate. More particularly, a method for producing butanol, the method comprising generating bytyryl-CoA in a bacterium which contains a gene coding for AdhE (an enzyme responsible for the conversion of butyryl-CoA to butanol) using various methods, and converting the butyryl-CoA into butanol. | 01-27-2011 |
Emmanuel A. Papoutsakis, Vancouver CA
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20100017416 | SERIALIZABLE OBJECTS AND A DATABASE THEREOF - A technique to communicate data between a management layer and an interface layer of a network device having traffic modules and compute modules includes using a converter to convert a serializable object between file formats. The management layer is executed on at least one of the compute modules and the interface layer is executed on the one of the compute modules. Data is communicated between the interface layer and the management layer via invoking the converter to convert the data from a first format used in the interface layer to a serializable object in the management layer. | 01-21-2010 |
20100023552 | SERIALIZABLE OBJECTS AND A DATABASE THEREOF - A technique to communicate data between two objects in a computing environment includes invoking a write method of a first object. A converter associated with a second object having a second format for storing the data is then invoked. The converter converts field values associated with first fields of the first object to the second format. The converted field values are then written into second fields of the second object. | 01-28-2010 |
Konstantinos Papoutsakis, Heraklion GR
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20160078289 | Gesture Recognition Apparatuses, Methods and Systems for Human-Machine Interaction - The GESTURE RECOGNITION APPARATUSES, METHODS AND SYSTEMS FOR HUMAN-MACHINE INTERACTION (“GRA”) discloses vision-based gesture recognition. GRA can be implemented in any application involving tracking, detection and/or recognition of gestures or motion in general. Disclosed methods and systems consider a gestural vocabulary of a predefined number of user specified static and/or dynamic hand gestures that are mapped with a database to convey messages. In one implementation, the disclosed systems and methods support gesture recognition by detecting and tracking body parts, such as arms, hands and fingers, and by performing spatio-temporal segmentation and recognition of the set of predefined gestures, based on data acquired by an RGBD sensor. In one implementation, a model of the hand is employed to detect hand and finger candidates. At a higher level, hand posture models are defined and serve as building blocks to recognize gestures | 03-17-2016 |