ACN1 (acetate non-utilizing 1) is a short-chain acyl-CoA synthetase which recycles free acetate to acetyl-CoA in peroxisomes of Arabidopsis. Pulse-chase [2-13C]acetate feeding of the mutant acn1–2 revealed that acetate accumulation and assimilation were no different to that of wild-type, Col-7. However, the lack of acn1–2 led to a decrease of nearly 50% in 13C-labelling of glutamine, a major carbon sink in seedlings, and large decreases in primary metabolite levels. In contrast, acetyl-CoA levels were higher in acn1–2 compared with Col-7. The disappearance of eicosenoic acid was slightly delayed in acn1–2 indicating only a small effect on the rate of lipid breakdown. A comparison of transcript levels in acn1–2 and Col-7 showed that induced genes included a number of metabolic genes and also a large number of signalling-related genes. Genes repressed in the mutant were represented primarily by embryogenesis-related genes. Transcript levels of glyoxylate cycle genes also were lower in acn1–2 than in Col-7. We conclude that deficiency in peroxisomal acetate assimilation comprises only a small proportion of total acetate use, but this affects both primary metabolism and gene expression. We discuss the possibility that ACN1 safeguards against the loss of carbon as acetate from peroxisomes during lipid mobilization.
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August 2011
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Research Article|
July 13 2011
Evidence that ACN1 (acetate non-utilizing 1) prevents carbon leakage from peroxisomes during lipid mobilization in Arabidopsis seedlings Available to Purchase
Elizabeth Allen;
Elizabeth Allen
*School of Biological Sciences, Bangor University, Bangor, Gwynedd LL57 2UW, U.K.
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Annick Moing;
Annick Moing
†Plateforme Métabolome du Centre de Génomique Fonctionnelle Bordeaux, IFR103 BVI, BP 81, F-33140 Villenave d'Ornon, France
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Jonathan A. D. Wattis;
Jonathan A. D. Wattis
‡School of Mathematical Sciences, University of Nottingham, University Park, Nottingham NG7 2RD, U.K.
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Tony Larson;
Tony Larson
§Centre for Novel Agricultural Products, University of York, Heslington, York YO10 5DD, U.K.
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Mickaël Maucourt;
Mickaël Maucourt
†Plateforme Métabolome du Centre de Génomique Fonctionnelle Bordeaux, IFR103 BVI, BP 81, F-33140 Villenave d'Ornon, France
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Ian A. Graham;
Ian A. Graham
§Centre for Novel Agricultural Products, University of York, Heslington, York YO10 5DD, U.K.
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Dominique Rolin;
Dominique Rolin
‖INRA, Université de Bordeaux, UMR619 Fruit Biology Unit, BP 81, F-33140 Villenave d'Ornon, France
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Mark A. Hooks
Mark A. Hooks
1
*School of Biological Sciences, Bangor University, Bangor, Gwynedd LL57 2UW, U.K.
1To whom correspondence should be addressed (email [email protected]).
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Publisher: Portland Press Ltd
Received:
October 29 2010
Revision Received:
May 09 2011
Accepted:
May 11 2011
Accepted Manuscript online:
May 11 2011
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© The Authors Journal compilation © 2011 Biochemical Society
2011
Biochem J (2011) 437 (3): 505–513.
Article history
Received:
October 29 2010
Revision Received:
May 09 2011
Accepted:
May 11 2011
Accepted Manuscript online:
May 11 2011
Citation
Elizabeth Allen, Annick Moing, Jonathan A. D. Wattis, Tony Larson, Mickaël Maucourt, Ian A. Graham, Dominique Rolin, Mark A. Hooks; Evidence that ACN1 (acetate non-utilizing 1) prevents carbon leakage from peroxisomes during lipid mobilization in Arabidopsis seedlings. Biochem J 1 August 2011; 437 (3): 505–513. doi: https://doi.org/10.1042/BJ20101764
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