Expression of two glutamate decarboxylase genes in Lactobacillus brevis during gamma-aminobutyric acid production with date residue extract

被引:9
|
作者
Hasegawa, Momoko [1 ,2 ]
Fujii, Sotaro [3 ]
Funato, Kouichi [3 ]
Yoshida, Atsushi [2 ]
Sambongi, Yoshihiro [3 ]
机构
[1] Hiroshima Univ, Grad Sch Biosphere Sci, Hiroshima, Japan
[2] Otafuku Sauce Co Ltd, Otafuku Sauce Lab, Hiroshima, Japan
[3] Hiroshima Univ, Grad Sch Integrated Sci Life, Hiroshima, Japan
基金
日本科学技术振兴机构;
关键词
Gamma-aminobutyric acid; lactobacillus brevis; date residue extract; glutamate decarboxylase; gene expression analysis; PHOENIX-DACTYLIFERA L; FERMENTATION; TECHNOLOGY; FRUIT;
D O I
10.1080/09168451.2020.1714422
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Gamma-aminobutyric acid (GABA) is produced by Lactobacillus brevis using date residue fermentation. In this study, the GABA production method was improved, for which L. brevis strain JCM 1059(T) was the most efficient among the four L. brevis strains examined. This was presumably due to a difference in the expression level of the gene encoding glutamate decarboxylase that catalyzes GABA synthesis.
引用
收藏
页码:1069 / 1072
页数:4
相关论文
共 50 条
  • [31] Enhancement of γ-aminobutyric acid production in Chungkukjang by applying a Bacillus subtilis strain expressing glutamate decarboxylase from Lactobacillus brevis
    Ki-Bum Park
    Suk-Heung Oh
    Biotechnology Letters, 2006, 28 : 1459 - 1463
  • [32] Fermented date residue extract mix containing gamma-aminobutyric acid augments the immune function of mouse splenocytes
    Hattori, Keiyu
    Yamamoto, Yoshinari
    Fujii, Sotaro
    Kumrungsee, Thanutchaporn
    Hasegawa, Momoko
    Yoshida, Atsushi
    Suzuki, Takuya
    Sambongi, Yoshihiro
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2021, 85 (07) : 1753 - 1758
  • [33] BRAIN GAMMA-AMINOBUTYRIC ACID, GLUTAMIC-ACID DECARBOXYLASE, GLUTAMATE, AND AMMONIA IN MICE DURING HYPERBARIC OXYGENATION
    FAIMAN, MD
    NOLAN, RJ
    BAXTER, CF
    DODD, DE
    JOURNAL OF NEUROCHEMISTRY, 1977, 28 (04) : 861 - 865
  • [34] A Two-stage pH and Temperature Control with Substrate Feeding Strategy for Production of Gamma-aminobutyric Acid by Lactobacillus brevis CGMCC 1306
    Peng Chunlong
    Huang Jun
    Hu Sheng
    Zhao Weirui
    Yao Shanjing
    Mei Lehe
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2013, 21 (10) : 1190 - 1194
  • [35] Gamma-aminobutyric acid production by Lactobacillus brevis A3: Optimization of production, antioxidant potential, cell toxicity, and antimicrobial activity
    Alizadeh Behbahani, Behrooz
    Jooyandeh, Hossein
    Falah, Fereshteh
    Vasiee, Alireza
    FOOD SCIENCE & NUTRITION, 2020, 8 (10): : 5330 - 5339
  • [36] Buffer-free production of gamma-aminobutyric acid using an engineered glutamate decarboxylase from Escherichia coli
    Kang, Taek Jin
    Ngoc Anh Thu Ho
    Pack, Seung Pil
    ENZYME AND MICROBIAL TECHNOLOGY, 2013, 53 (03) : 200 - 205
  • [37] Gamma-Aminobutyric Acid Production Using Immobilized Glutamate Decarboxylase Followed by Downstream Processing with Cation Exchange Chromatography
    Lee, Seungwoon
    Ahn, Jungoh
    Kim, Yeon-Gu
    Jung, Joon-Ki
    Lee, Hongweon
    Lee, Eun Gyo
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2013, 14 (01) : 1728 - 1739
  • [38] Kinetic modeling of gamma-aminobutyric acid production by Lactobacillus brevis based on pH-dependent model and rolling correction
    Min Wu
    Juanjuan Ding
    Zhaofeng Zhang
    Shengping You
    Wei Qi
    Rongxin Su
    Zhimin He
    Chinese Journal of Chemical Engineering, 2022, 50 (10) : 352 - 360
  • [39] Production of gamma-aminobutyric acid from red kidney bean and barley grain fermentation by Lactobacillus brevis TISTR 860
    Saraphanchotiwitthaya, Aurasorn
    Sripalakit, Pattana
    BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, 2018, 16 : 49 - 53
  • [40] Kinetic modeling of gamma-aminobutyric acid production by Lactobacillus brevis based on pH-dependent model and rolling correction
    Wu, Min
    Ding, Juanjuan
    Zhang, Zhaofeng
    You, Shengping
    Qi, Wei
    Su, Rongxin
    He, Zhimin
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2022, 50 : 352 - 360