Douglas K.

San Francisco Bay Area Contact Info
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Experience & Education

  • Air Protein

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Licenses & Certifications

Patents

  • Large scale genetically engineered active dry yeast

    Filed US PCT/US2014/062327

    The present teachings provide large scale genetically engineered yeast in active dry form

    Other inventors
    • Andrei Miasnikov
    • Douglas A. Dale
    • George England
    • Wyatt C. Smith
    • Beth Fryksdale
    • Matthew T. REBOLI
  • Direct starch to fermentable sugar as feedstock for the production of isoprene, isoprenoid precursor molecules, and/or isoprenoids

    Filed US PCT/US2013/034684

    Provided herein are compositions and methods related to the direct conversion of the starch in a ground or fractionated grain into a fermentable sugar feedstock capable of serving as a carbon source for the industrial production of one or more products by a fermenting organism, such as isoprene, isoprenoid precursor molecules, and/or isoprenoids. Such conversions may be performed at temperatures at or below the initial gelatinization temperature of the starch present in the grain and may…

    Provided herein are compositions and methods related to the direct conversion of the starch in a ground or fractionated grain into a fermentable sugar feedstock capable of serving as a carbon source for the industrial production of one or more products by a fermenting organism, such as isoprene, isoprenoid precursor molecules, and/or isoprenoids. Such conversions may be performed at temperatures at or below the initial gelatinization temperature of the starch present in the grain and may utilize one or more isolatable endogenous enzymes present in certain unrefined grains.

    Other inventors
    • Collette Michelle Blake
    • Gopal Chotani
    • Floor K. Kooy
    • Sung Lee
    • Michael Jay Pepsin
    • Ying Qian
    • Matthew T. Reboli
    • Vivek Sharma
    • Jayarama K. Shetty
    • Paula Johanna Maria Teunissen
  • DIRECT STARCH TO FERMENTABLE SUGAR

    Filed US PCT/US2013/030980

    Provided herein are compositions and methods related to the direct conversion of the starch in a ground or fractionated grain into a fermentable sugar feedstock capable of serving as a carbon source for the industrial production of one or more products by a fermenting organism. Such conversions may be performed at temperatures at or below the initial gelatinization temperature of the starch present in the grain and may utilize one or more isolatable endogenous enzymes present in certain…

    Provided herein are compositions and methods related to the direct conversion of the starch in a ground or fractionated grain into a fermentable sugar feedstock capable of serving as a carbon source for the industrial production of one or more products by a fermenting organism. Such conversions may be performed at temperatures at or below the initial gelatinization temperature of the starch present in the grain and may utilize one or more isolatable endogenous enzymes present in certain unrefined grains.

    Other inventors
    • Collette Michelle Blake
    • Floor K. Kooy
    • Sung Ho Lee
    • Michael Jay Pepsin
    • Ying Qian
    • Matthew T. Reboli
    • Vivek Sharma
    • Jayarama K. Shetty
    • Paula Johanna Maria Teunissen
    • Hongxian Xu
  • ENDOGENOUS DNASE ACTIVITY TO REDUCE DNA CONTENT

    Filed US CA 2848421

    The application provides a method of reducing the DNA content of a protein preparation or a culture broth from a filamentous fungal host cell using an endogenous filamentous fungal host DNase activity.

    Other inventors
    • Katherine M. Hoffmann
    • Michael Ward

Courses

  • Advanced Course - Delft Downstream Processing

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  • Advanced Process Course: Pumps and Process Piping (UW Madison)

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  • Labs to leadership - California Life Science Institute

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  • The Alcohol School - Lallemand Biofuel

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Organizations

  • AICHE

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