Glucose-induced Expression of Carotenoid Biosynthesis Genes in the Dark Is Mediated by Cytosolic pH in the Cyanobacterium Synechocystis sp. PCC 6803

The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), ζ-carotene desaturase (crtQ), and β-carotene hydroxylase (crtR) is dependent upon light in the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis). We have demonstrated that the exp...

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Published inThe Journal of biological chemistry Vol. 279; no. 24; pp. 25320 - 25325
Main Authors Ryu, Jee-Youn, Song, Ji Young, Lee, Jeong Mi, Jeong, Suk Won, Chow, Wah Soon, Choi, Sang-Bong, Pogson, Barry J., Park, Youn-Il
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 11.06.2004
American Society for Biochemistry and Molecular Biology
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Abstract The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), ζ-carotene desaturase (crtQ), and β-carotene hydroxylase (crtR) is dependent upon light in the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis). We have demonstrated that the expression of the above four genes was also elevated in the dark-adapted Synechocystis cells upon glucose treatment as a consequence of transcriptional activation. Treatment with glucose analogs such as l-glucose, 3-O-methylglucose, 2-deoxyglucose, and mannose, or inactivation of glucose uptake and phosphorylation by deletion mutation of glucose transporter (glcP) and glucokinase (gk), respectively, did not induce up-regulation of carotenoid genes. When respiratory electron transport or coupling to oxidative phosphorylation was inhibited, glucose induction was not observed, indicating that respiratory electron transport per se is not critical for the expression of these genes. In agreement with this view, the extent of gene expression showed a saturation curve with increasing acridine yellow fluorescence yield, without having a close correlation with the ATP contents or ATP/ADP ratio. The results indicate that glucose induction of carotenoid gene expressions is mediated by an increase in cytosolic pH rather than either redox or glucose sensing.
AbstractList The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), zeta-carotene desaturase (crtQ), and beta-carotene hydroxylase (crtR) is dependent upon light in the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis). We have demonstrated that the expression of the above four genes was also elevated in the dark-adapted Synechocystis cells upon glucose treatment as a consequence of transcriptional activation. Treatment with glucose analogs such as l-glucose, 3-O-methylglucose, 2-deoxyglucose, and mannose, or inactivation of glucose uptake and phosphorylation by deletion mutation of glucose transporter (glcP) and glucokinase (gk), respectively, did not induce up-regulation of carotenoid genes. When respiratory electron transport or coupling to oxidative phosphorylation was inhibited, glucose induction was not observed, indicating that respiratory electron transport per se is not critical for the expression of these genes. In agreement with this view, the extent of gene expression showed a saturation curve with increasing acridine yellow fluorescence yield, without having a close correlation with the ATP contents or ATP/ADP ratio. The results indicate that glucose induction of carotenoid gene expressions is mediated by an increase in cytosolic pH rather than either redox or glucose sensing.
The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), ζ-carotene desaturase (crtQ), and β-carotene hydroxylase (crtR) is dependent upon light in the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis). We have demonstrated that the expression of the above four genes was also elevated in the dark-adapted Synechocystis cells upon glucose treatment as a consequence of transcriptional activation. Treatment with glucose analogs such as l-glucose, 3-O-methylglucose, 2-deoxyglucose, and mannose, or inactivation of glucose uptake and phosphorylation by deletion mutation of glucose transporter (glcP) and glucokinase (gk), respectively, did not induce up-regulation of carotenoid genes. When respiratory electron transport or coupling to oxidative phosphorylation was inhibited, glucose induction was not observed, indicating that respiratory electron transport per se is not critical for the expression of these genes. In agreement with this view, the extent of gene expression showed a saturation curve with increasing acridine yellow fluorescence yield, without having a close correlation with the ATP contents or ATP/ADP ratio. The results indicate that glucose induction of carotenoid gene expressions is mediated by an increase in cytosolic pH rather than either redox or glucose sensing.
The expression of carotenoid biosynthesis genes coding for phytoene synthase ( crtB ), phytoene desaturase ( crtP ), ζ-carotene desaturase ( crtQ ), and β-carotene hydroxylase ( crtR ) is dependent upon light in the cyanobacterium Synechocystis sp. PCC 6803 ( Synechocystis ). We have demonstrated that the expression of the above four genes was also elevated in the dark-adapted Synechocystis cells upon glucose treatment as a consequence of transcriptional activation. Treatment with glucose analogs such as l -glucose, 3- O -methylglucose, 2-deoxyglucose, and mannose, or inactivation of glucose uptake and phosphorylation by deletion mutation of glucose transporter ( glcP ) and glucokinase ( gk ), respectively, did not induce up-regulation of carotenoid genes. When respiratory electron transport or coupling to oxidative phosphorylation was inhibited, glucose induction was not observed, indicating that respiratory electron transport per se is not critical for the expression of these genes. In agreement with this view, the extent of gene expression showed a saturation curve with increasing acridine yellow fluorescence yield, without having a close correlation with the ATP contents or ATP/ADP ratio. The results indicate that glucose induction of carotenoid gene expressions is mediated by an increase in cytosolic pH rather than either redox or glucose sensing.
Author Jeong, Suk Won
Chow, Wah Soon
Pogson, Barry J.
Choi, Sang-Bong
Ryu, Jee-Youn
Lee, Jeong Mi
Song, Ji Young
Park, Youn-Il
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  givenname: Ji Young
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  fullname: Song, Ji Young
  organization: Department of Biology, Chungnam National University, Daejeon 305-764, Korea
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  givenname: Jeong Mi
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  fullname: Lee, Jeong Mi
  organization: Department of Biology, Chungnam National University, Daejeon 305-764, Korea
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  givenname: Suk Won
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  organization: Department of Biology, Chungnam National University, Daejeon 305-764, Korea
– sequence: 5
  givenname: Wah Soon
  surname: Chow
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  givenname: Youn-Il
  surname: Park
  fullname: Park, Youn-Il
  email: yipark@cnu.ac.kr
  organization: Department of Biology, Chungnam National University, Daejeon 305-764, Korea
BackLink https://www.ncbi.nlm.nih.gov/pubmed/15078876$$D View this record in MEDLINE/PubMed
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Snippet The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), ζ-carotene desaturase (crtQ), and β-carotene...
The expression of carotenoid biosynthesis genes coding for phytoene synthase ( crtB ), phytoene desaturase ( crtP ), ζ-carotene desaturase ( crtQ ), and...
The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), zeta-carotene desaturase (crtQ), and...
The expression of carotenoid biosynthesis genes coding for phytoene synthase (crtB), phytoene desaturase (crtP), zeta -carotene desaturase (crtQ), and beta...
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StartPage 25320
SubjectTerms Carotenoids - biosynthesis
Cyanobacteria - genetics
Cyanobacteria - metabolism
Cytosol - metabolism
Electron Transport
Gene Expression Regulation, Bacterial
Glucose - metabolism
Glucose - pharmacology
Hydrogen-Ion Concentration
Light
Oxidative Phosphorylation
Potassium Cyanide - pharmacology
RNA, Messenger - analysis
Title Glucose-induced Expression of Carotenoid Biosynthesis Genes in the Dark Is Mediated by Cytosolic pH in the Cyanobacterium Synechocystis sp. PCC 6803
URI https://dx.doi.org/10.1074/jbc.M402541200
http://www.jbc.org/content/279/24/25320.abstract
https://www.ncbi.nlm.nih.gov/pubmed/15078876
https://search.proquest.com/docview/17594751
Volume 279
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