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Docosahexaenoic acid mediates peroxisomal elongation, a prerequisite for peroxisome division.
- Source :
-
Journal of cell science [J Cell Sci] 2012 Feb 01; Vol. 125 (Pt 3), pp. 589-602. - Publication Year :
- 2012
-
Abstract
- Peroxisome division is regulated by several factors, termed fission factors, as well as the conditions of the cellular environment. Over the past decade, the idea of metabolic control of peroxisomal morphogenesis has been postulated, but remains largely undefined to date. In the current study, docosahexaenoic acid (DHA, C22:6n-3) was identified as an inducer of peroxisome division. In fibroblasts isolated from patients that carry defects in peroxisomal fatty acid β-oxidation, peroxisomes are much less abundant than normal cells. Treatment of these patient fibroblasts with DHA induced the proliferation of peroxisomes to the level seen in normal fibroblasts. DHA-induced peroxisomal proliferation was abrogated by treatment with a small inhibitory RNA (siRNA) targeting dynamin-like protein 1 and with dynasore, an inhibitor of dynamin-like protein 1, which suggested that DHA stimulates peroxisome division. DHA augmented the hyper-oligomerization of Pex11pβ and the formation of Pex11pβ-enriched regions on elongated peroxisomes. Time-lapse imaging analysis of peroxisomal morphogenesis revealed a sequence of steps involved in peroxisome division, including elongation in one direction followed by peroxisomal fission. DHA enhanced peroxisomal division in a microtubule-independent manner. These results suggest that DHA is a crucial signal for peroxisomal elongation, a prerequisite for subsequent fission and peroxisome division.
- Subjects :
- 3-Hydroxyacyl CoA Dehydrogenases deficiency
3-Hydroxyacyl CoA Dehydrogenases metabolism
Acyl-CoA Oxidase deficiency
Acyl-CoA Oxidase metabolism
Base Sequence
Cells, Cultured
Docosahexaenoic Acids metabolism
Dynamins
Enoyl-CoA Hydratase deficiency
Enoyl-CoA Hydratase metabolism
Fatty Acids metabolism
Fibroblasts drug effects
Fibroblasts metabolism
Fibroblasts ultrastructure
GTP Phosphohydrolases antagonists & inhibitors
GTP Phosphohydrolases genetics
GTP Phosphohydrolases metabolism
Humans
Isomerases deficiency
Isomerases metabolism
Membrane Proteins chemistry
Membrane Proteins metabolism
Microtubule-Associated Proteins antagonists & inhibitors
Microtubule-Associated Proteins genetics
Microtubule-Associated Proteins metabolism
Microtubules metabolism
Microtubules ultrastructure
Mitochondrial Proteins antagonists & inhibitors
Mitochondrial Proteins genetics
Mitochondrial Proteins metabolism
Models, Biological
Multienzyme Complexes deficiency
Multienzyme Complexes metabolism
Oxidation-Reduction
Peroxisomal Bifunctional Enzyme
Peroxisomal Disorders metabolism
Peroxisomal Disorders pathology
Peroxisomes metabolism
Peroxisomes ultrastructure
Protein Multimerization drug effects
RNA, Small Interfering genetics
Time-Lapse Imaging
Docosahexaenoic Acids pharmacology
Peroxisomes drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1477-9137
- Volume :
- 125
- Issue :
- Pt 3
- Database :
- MEDLINE
- Journal :
- Journal of cell science
- Publication Type :
- Academic Journal
- Accession number :
- 22389399
- Full Text :
- https://doi.org/10.1242/jcs.087452