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2012 Fiscal Year Final Research Report

Analysis of transcriptional regulation cascade of organic solvent tolerant yeasts and its application

Research Project

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Project/Area Number 22360342
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field Biofunction/Bioprocess
Research InstitutionKyoto University

Principal Investigator

UEDA Mitsuyoshi  京都大学, 大学院・農学研究科, 教授 (90183201)

Project Period (FY) 2010 – 2012
Keywords有機溶媒耐性 / 転写制御因子 / ストレス応答 / ABC トランスポーター / PDR1 変異 / 薬剤耐性 / 情報伝達システム / 相互作用
Research Abstract

As solvents for the chemical reactions are usually highly toxic to the catalytic carrier organism, organic solvent tolerance is necessary for effective bioproduction. Specific expression of the identified genes would improve the tolerance to particular organic solvents for practical use. We demonstrated the PDR1 R821S mutantis tolerant to hydrophilic organic solvent, DMSO, as well as hydrophobic organic solvents. Furthermore, we identified and discriminated genes encoding ABC transporters and cell wall proteins involved in tolerance to hydrophobic or hydrophilic organic solvents.

  • Research Products

    (9 results)

All 2012 2011 2010 Other

All Journal Article (5 results) (of which Peer Reviewed: 5 results) Presentation (3 results) Remarks (1 results)

  • [Journal Article] Direct fermentation of newspaper after laccase-treatment using yeast codisplaying endoglucanase, cellobio-hydrolase, and beta-glucosidase2012

    • Author(s)
      A. Nakanishi, K. Kuroda, M. Ueda
    • Journal Title

      Renewable Energy

      Volume: 44 Pages: 199-20

    • DOI

      doi.org/10.1016/j.renene.2012.01.078

    • Peer Reviewed
  • [Journal Article] Synthesis of functional dipeptide, carnosine, from nonprotected amino acids using carnosinase -displaying yeast cells2010

    • Author(s)
      C. Inaba, S. Higuchi, H. Morisaka, K. Kuroda, M. Ueda
    • Journal Title

      Appl. Microbiol. Biotechnol.

      Volume: 86 Pages: 1895-1902

    • DOI

      doi.org/10.1007/s00253-009-2396-7

    • Peer Reviewed
  • [Journal Article] Enhancement of beta-glucosidase activity on the cell-surface of sake yeast by disruption of SED12010

    • Author(s)
      A. Kotaka, H. Sahara, K. Kuroda, A. Kondo, M. Ueda, Y. Hata, A. Kotaka, H. Sahara, K. Kuroda, A. Kondo, M. Ueda, Y. Hata
    • Journal Title

      J. Biosci. Bioeng

      Volume: 109 Pages: 442-446

    • DOI

      doi.org/10.1016/j.jbiosc.2009.11.003

    • Peer Reviewed
  • [Journal Article] 分子デイスプレイ法による革新的有機溶媒内酵素反応の開拓2010

    • Author(s)
      植田充美
    • Journal Title

      薬学雑誌

      Volume: 130 Pages: 1479-1485

    • Peer Reviewed
  • [Journal Article] ABC transporters and cell wall proteins involved in organic solvent tolerance in Saccharomyces cerevisiae

    • Author(s)
      N. Nishida, N. Ozato, K. Matsui, K. Kuroda, M. Ueda
    • Journal Title

      J. Biotechnol

      Volume: (in press)

    • DOI

      doi.org/10.1016/j.jbiotec.2013.03.003

    • Peer Reviewed
  • [Presentation] ABC transporters and cell wall proteins involved in yeast organic solvent tolerance2012

    • Author(s)
      N. Nshida et al.
    • Organizer
      15th European Congress of Biotechnology
    • Place of Presentation
      Istanbul, Turkey
    • Year and Date
      2012-09-23
  • [Presentation] Functional analysis of Pdr1p in multidrug resistance and organic-solvent tolerance in yeast2011

    • Author(s)
      N. Nshida et al.
    • Organizer
      2011 American Society for Biochemistry and Molecular Biology Annual Meeting
    • Place of Presentation
      Washington DC, USA
    • Year and Date
      2011-04-11
  • [Presentation] Molecular analysis of XBD in Pdr1p mutants leading to multidrug resistance and organic-solvent tolerance in yeast Saccharomyces cerevisiae2010

    • Author(s)
      N. Nishida et al.
    • Organizer
      Pacjfichem 2010
    • Place of Presentation
      Hawaii, USA
    • Year and Date
      2010-12-18
  • [Remarks]

    • URL

      http://www/tenko.kais.kyoto-u.ac.jp/

URL: 

Published: 2014-08-29  

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