Highly Efficient Sporulation Induced by Glutathione or Glutathione Thiol Esters in Sake (Kyokai No. 7) and a Wild-Type Yeast
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概要
- 論文の詳細を見る
When vegetative cells of Saccharomyces cerevisiae 4011 and a sake yeast (S. cerevisiae), Kyokai no. 7,were incubated in a sporulation medium, glutathione in the cells decreased with the increase in sporulation and was lost by the time the sporulation reached a maximum. The sporulation efficiency varied depending on the cellular glutathione content, and was lowered with a decrease of the level. Glutathione and its thiol esters significantly stimulated the sporulation of both strains when these chemicals were added to sporulation medium. The activities of glycolytic bypass enzymes, which are responsible for the synthesis of glutathione thiol ester, increased in both yeast strains during incubation in the sporulation medium. These results suggest that glutathione was converted into glutathione thiol ester and that the ester functioned as a stimulator of yeast sporulation.
- 社団法人日本生物工学会の論文
- 1992-12-25
著者
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MURATA KOUSAKU
Research Institute for Food Science, Kyoto University
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KIMURA AKIRA
Research Institute for Food Science, Kyoto University
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Kimura Akira
Research Institute For Food Science Kyoto University
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Murata K
Laboratory Of Basic And Applied Molecular Biotechnology Division Of Food Science And Biotechnology G
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Murata Kousaku
Research Institute For Food Science Kyoto Univeristy
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Kimura A
Research Institute For Food Science Kyoto University
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KAWADO AKITSUGU
Gekkeikan Institute, Gekkeikan Co. Ltd.,
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SUIZU TETSUYOSHI
Gekkeikan Institute, Gekkeikan Co. Ltd.,
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IMAYASU SATOSHI
Gekkeikan Institute, Gekkeikan Co. Ltd.,
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SHIGEMATSU TOSHIKO
Research Institute for Food Science, Kyoto University
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Momma Keiko
Laboratory Of Basic And Applied Molecular Biotechnology Graduate School Of Agriculture Kyoto Univers
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Imayasu Satoshi
Research Institute Gekkeikan Sake Co. Ltd.
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Saikusa Toshihiko
Research Institute For Food Science Kyoto University
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松下 一信
山口大 農
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Suizu T
Gekkeikan Sake Co. Ltd. Kyoto Jpn
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Kimura Akira
Research Center for Solar Energy Chemistry, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan
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