Patents by Inventor Allan Froehlich

Allan Froehlich has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240084244
    Abstract: The present disclosure concerns recombinant yeast host cells having a first genetic modification to express a heterologous polypeptide or to over-express a native polypeptide. The recombinant yeast host cells also have a second genetic modification to at least partially mitigate the reduction in growth rate resulting from the expression of the heterologous polypeptide or the over-expression of the native polypeptide. The second genetic modification can be, for example, to favor the secretion of the heterologous or native polypeptide.
    Type: Application
    Filed: January 26, 2022
    Publication date: March 14, 2024
    Inventors: Zhiqing WANG, Aditi RANADE, Aaron ARGYROS, Allan FROEHLICH, Charles F. RICE
  • Patent number: 11739338
    Abstract: Acetate is a potent microbial inhibitor which can affect the performance of yeast in ethanolic fermentation. The present disclosure provides a recombinant microbial host cell having (i) a first genetic modification for increasing the activity of one or more proteins that function in a first metabolic pathway to convert acetate into an alcohol in the microbial host cell; (ii) a second genetic modification for increasing the activity of one or more proteins that function in a second metabolic pathway to import glycerol in the recombinant microbial host cell (iii) a third genetic modification for increasing the activity of one or more proteins that function in a third metabolic pathway to convert a C5 carbohydrate into ethanol in the microbial host cell. The recombinant microbial host cell comprises and natively expresses native proteins that function in a fourth native metabolic pathway to produce glycerol in the microbial host cell.
    Type: Grant
    Filed: September 18, 2018
    Date of Patent: August 29, 2023
    Assignee: LALLEMAND HUNGARY LIQUIDITY MANAGEMENT LLC
    Inventors: Brooks Henningsen, Sean Covalla, Rintze Zelle, Allan Froehlich
  • Patent number: 11667680
    Abstract: The present disclosure relates to the modulation in the RAS/cAMP/PKA signaling pathway for maintaining the propagation efficiency and increasing fermentation efficiency of yeast cells. The present disclosure provides yeast cells having or engineered to exhibit a modulation in signaling in a RAS/cAMP/PKA pathway, depending on conditions. For example the yeast cells can be selected or genetically modified to express a mutated Ras1 protein, a mutated Ras2 protein, a mutated Ira1 protein and/or a mutated Ira2 protein, optionally in combination with specific promoters. Also provided herewith are methods for propagating the yeast cells as well as using the yeast cells to generate a fermented product (such as ethanol).
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: June 6, 2023
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Michelle Oeser, Brooks Henningsen, Janet Fisher, Charles F. Rice, Allan Froehlich, Aaron Argyros, Rintze M. Zelle
  • Patent number: 11306304
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Grant
    Filed: September 18, 2019
    Date of Patent: April 19, 2022
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla, Rintze M. Zelle
  • Publication number: 20210388398
    Abstract: The present invention is directed to cellulytic host cells. The host cells of the invention expressing heterologous cellulases and are able to produce ethanol from cellulose. According to the invention, host cells expressing a combination of heterologous cellulases can be used to produce ethanol from cellulose. In addition, multiple host cells expressing different heterologous cellulases can be co-cultured together and used to produce ethanol from cellulose. Furthermore, the invention demonstrates for the first time the ability of Kluyveromyces to produce ethanol from cellulose. The yeast strains and co-cultures of yeast strains of the invention can be used to produce ethanol on their own, or can also be used in combination with externally added cellulases to increase the efficiency of saccharification and fermentation processes.
    Type: Application
    Filed: December 22, 2020
    Publication date: December 16, 2021
    Inventors: John McBride, Elena Brevnova, Mark Mellon, Allan Froehlich, Kristen Deleault, Vineet Rajgarhia, Riaan Den Haan, Merja Penttila, Marja Ilmen, Matti Siika-Aho, Jaana Uusitalo, Emily A. Stonehouse, Alan Gilbert, Haowen Xu, Deidre Willies, John Bardsley, Anu Koivula, Sanni Voutilainen
  • Patent number: 11034949
    Abstract: There is provided chimeric polypeptides capable of converting xylose to xylulose, engineered host cells that express the chimeric polypeptides, methods of creating chimeric polypeptides, and methods of fermenting cellulosic biomass to produce biofuels, including ethanol.
    Type: Grant
    Filed: February 7, 2020
    Date of Patent: June 15, 2021
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Allan Froehlich, Brooks Henningsen
  • Publication number: 20210155944
    Abstract: Acetate is a potent microbial inhibitor which can affect the performance of yeast in ethanolic fermentation. The present disclosure provides a recombinant microbial host cell having (i) a first genetic modification for increasing the activity of one or more proteins that function in a first metabolic pathway to convert acetate into an alcohol in the microbial host cell; (ii) a second genetic modification for increasing the activity of one or more proteins that function in a second metabolic pathway to import glycerol in the recombinant microbial host cell (iii) a third genetic modification for increasing the activity of one or more proteins that function in a third metabolic pathway to convert a C5 carbohydrate into ethanol in the microbial host cell. The recombinant microbial host cell comprises and natively expresses native proteins that function in a fourth native metabolic pathway to produce glycerol in the microbial host cell.
    Type: Application
    Filed: September 18, 2018
    Publication date: May 27, 2021
    Inventors: Brooks Henningsen, Sean Covalla, Rintze Zelle, Allan Froehlich
  • Publication number: 20200248165
    Abstract: There is provided chimeric polypeptides capable of converting xylose to xylulose, engineered host cells that express the chimeric polypeptides, methods of creating chimeric polypeptides, and methods of fermenting cellulosic biomass to produce biofuels, including ethanol.
    Type: Application
    Filed: February 7, 2020
    Publication date: August 6, 2020
    Inventors: Allan Froehlich, Brooks Henningsen
  • Publication number: 20200115697
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Application
    Filed: September 18, 2019
    Publication date: April 16, 2020
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla, Rintze M. Zelle
  • Patent number: 10619147
    Abstract: There is provided chimeric polypeptides capable of converting xylose to xylulose, engineered host cells that express the chimeric polypeptides, methods of creating chimeric polypeptides, and methods of fermenting cellulosic biomass to produce biofuels, including ethanol.
    Type: Grant
    Filed: August 7, 2015
    Date of Patent: April 14, 2020
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Allan Froehlich, Brooks Henningsen
  • Patent number: 10465181
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Grant
    Filed: January 31, 2018
    Date of Patent: November 5, 2019
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla, Rintze M. Zelle
  • Publication number: 20190106464
    Abstract: The present disclosure relates to the modulation in the RAS/cAMP/PKA signaling pathway for maintaining the propagation efficiency and increasing fermentation efficiency of yeast cells. The present disclosure provides yeast cells having or engineered to exhibit a modulation in signaling in a RAS/cAMP/PKA pathway, depending on conditions. For example the yeast cells can be selected or genetically modified to express a mutated Ras1 protein, a mutated Ras2 protein, a mutated Ira1 protein and/or a mutated Ira2 protein, optionally in combination with specific promoters. Also provided herewith are methods for propagating the yeast cells as well as using the yeast cells to generate a fermented product (such as ethanol).
    Type: Application
    Filed: March 17, 2017
    Publication date: April 11, 2019
    Inventors: Michelle Oeser, Brooks Henningsen, Janet Fisher, Charles F. Rice, Allan Froehlich, Aaron Argyros, Rintze M. Zelle
  • Publication number: 20180258449
    Abstract: The present invention is directed to cellulytic host cells. The host cells of the invention expressing heterologous cellulases and are able to produce ethanol from cellulose. According to the invention, host cells expressing a combination of heterologous cellulases can be used to produce ethanol from cellulose. In addition, multiple host cells expressing different heterologous cellulases can be co-cultured together and used to produce ethanol from cellulose. Furthermore, the invention demonstrates for the first time the ability of Kluyveromyces to produce ethanol from cellulose. The yeast strains and co-cultures of yeast strains of the invention can be used to produce ethanol on their own, or can also be used in combination with externally added cellulases to increase the efficiency of saccharification and fermentation processes.
    Type: Application
    Filed: May 21, 2018
    Publication date: September 13, 2018
    Inventors: John McBride, Elena Brevnova, Mark Mellon, Allan Froehlich, Kristen Deleault, Vineet Rajgarhia, Riaan Den Haan, Merja Penttila, Marja Ilmen, Matti Siika-Aho, Jaana Uusitalo, Emily A. Stonehouse, Alan Gilbert, Haowen Xu, Deidre Willies, John Bardsley, Anu Koivula, Sanni Voutilainen
  • Publication number: 20180251750
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Application
    Filed: January 31, 2018
    Publication date: September 6, 2018
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla, Rintze M. Zelle
  • Patent number: 9988652
    Abstract: The present invention is directed to cellulytic host cells. The host cells of the invention expressing heterologous cellulases and are able to produce ethanol from cellulose. According to the invention, host cells expressing a combination of heterologous cellulases can be used to produce ethanol from cellulose. In addition, multiple host cells expressing different heterologous cellulases can be co-cultured together and used to produce ethanol from cellulose. Furthermore, the invention demonstrates for the first time the ability of Kluveryomyces to produce ethanol from cellulose. The yeast strains and co-cultures of yeast strains of the invention can be used to produce ethanol on their own, or can also be used in combination with externally added cellulases to increase the efficiency of saccharification and fermentation processes.
    Type: Grant
    Filed: July 1, 2015
    Date of Patent: June 5, 2018
    Assignees: Lallemand Hungary Liquidity Management LLC, Stellenbosch University
    Inventors: John McBride, Elena Brevnova, Mark Mellon, Allan Froehlich, Kristen Deleault, Vineet Rajgarhia, Riaan Den Haan, Merja Penttila, Marja Ilmen, Matti Siika-Aho, Jaana Uusitalo, Emily A. Stonehouse, Alan Gilbert, Haowen Xu, Deidre Willes, John Bardsley, Anu Koivula, Sanni Voutilainen
  • Patent number: 9920312
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Grant
    Filed: August 10, 2015
    Date of Patent: March 20, 2018
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla, Rintze M. Zelle
  • Publication number: 20160040152
    Abstract: There is provided chimeric polypeptides capable of converting xylose to xylulose, engineered host cells that express the chimeric polypeptides, methods of creating chimeric polypeptides, and methods of fermenting cellulosic biomass to produce biofuels, including ethanol.
    Type: Application
    Filed: August 7, 2015
    Publication date: February 11, 2016
    Inventors: Allan Froehlich, Brooks Henningsen
  • Publication number: 20160040153
    Abstract: There is provided an engineered host cells comprising (a) one or more mutations in one or more endogenous genes encoding a protein associated with iron metabolism; and (b) at least one gene encoding a polypeptide having xylose isomerase activity, and methods of their use thereof.
    Type: Application
    Filed: August 10, 2015
    Publication date: February 11, 2016
    Inventors: Allan Froehlich, Brooks Henningsen, Sean Covalla
  • Publication number: 20160010117
    Abstract: The present invention is directed to cellulytic host cells. The host cells of the invention expressing heterologous cellulases and are able to produce ethanol from cellulose. According to the invention, host cells expressing a combination of heterologous cellulases can be used to produce ethanol from cellulose. In addition, multiple host cells expressing different heterlogous cellulases can be co-cultured together and used to produce ethanol from cellulose. Furthermore, the invention demonstrates for the first time the ability of Kluveryomyces to produce ethanol from cellulose. The yeast strains and co-cultures of yeast strains of the invention can be used to produce ethanol on their own, or can also be used in combination with externally added cellulases to increase the efficiency of saccharification and fermentation processes.
    Type: Application
    Filed: July 1, 2015
    Publication date: January 14, 2016
    Inventors: John McBride, Elena Brevnova, Mark Mellon, Allan Froehlich, Kristen Deleault, Vineet Rajgarhia, Riaan Den Haan, Merja Penttila, Marja Ilmen, Matti Siika-Aho, Jaana Uusitalo, Emily A. Stonehouse, Alan Gilbert, Haowen Xu, Deidre Willes, John Bardsley, Anu Koivula, Sanni Voutilainen
  • Patent number: 9102955
    Abstract: Host cells, comprising Kluveryomyces expressing heterologous cellulases produce ethanol from cellulose In addition, multiple host cells expressing different heterlogous cellulases can be co-cultured together and used to produce ethanol from cellulose The recombinant yeast strains and co-cultures of the yeast strains can be used to produce ethanol on their own, or can also be used in combination with externally added cellulases to increase the efficiency of sacchanfication and fermentation processes.
    Type: Grant
    Filed: November 23, 2009
    Date of Patent: August 11, 2015
    Assignee: Lallemand Hungary Liquidity Management LLC
    Inventors: John McBride, Elena Brevnova, Mark Mellon, Allan Froehlich, Kristen Deleault, Vineet Rajgarhia, Riaan Den Haan, Merja Penttila, Marja Ilmen, Matti Siika-Aho, Jaana Uusitalo, Emily A. Stonehouse, Alan Gilbert, Haowen Xu, Deidre Willes, John Bardsley, Anu Koivula, Sanni Voutilainen