Novel functions of acyl-CoA thioesterases and acyltransferases as auxiliary enzymes in peroxisomal lipid metabolism
Peroxisomes are single membrane bound organelles present in almost all eukaryotic cells, and to date have been shown to contain approximately 60 identified enzymes involved in various metabolic pathways, including the oxidation of a variety of lipids. These lipids include very long-chain fatty acids...
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Published in | Progress in lipid research Vol. 47; no. 6; pp. 405 - 421 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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England
Elsevier Ltd
01.11.2008
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Abstract | Peroxisomes are single membrane bound organelles present in almost all eukaryotic cells, and to date have been shown to contain approximately 60 identified enzymes involved in various metabolic pathways, including the oxidation of a variety of lipids. These lipids include very long-chain fatty acids, methyl branched fatty acids, prostaglandins, bile-acid precursors and xenobiotics that are either β-oxidized or α-oxidized in peroxisomes. The recent identification of several acyl-CoA thioesterases and acyltransferases in peroxisomes has revealed their various functions in acting as auxiliary enzymes in α- and β-oxidation in this organelle. To date, 9 functional acyl-CoA thioesterases and acyltransferases have been identified in mouse and 4 functional acyl-CoA thioesterases and acyltransferases in human, thus these enzymes make up a substantial portion of peroxisomal proteins. This review will therefore focus on new and emerging roles for these enzymes in assisting with the oxidation of various lipids, amidation of lipids for excretion from peroxisomes, and in controlling coenzyme A levels in peroxisomes. |
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AbstractList | Peroxisomes are single membrane bound organelles present in almost all eukaryotic cells, and to date have been shown to contain approximately 60 identified enzymes involved in various metabolic pathways, including the oxidation of a variety of lipids. These lipids include very long-chain fatty acids, methyl branched fatty acids, prostaglandins, bile-acid precursors and xenobiotics that are either beta-oxidized or alpha-oxidized in peroxisomes. The recent identification of several acyl-CoA thioesterases and acyltransferases in peroxisomes has revealed their various functions in acting as auxiliary enzymes in alpha- and beta-oxidation in this organelle. To date, 9 functional acyl-CoA thioesterases and acyltransferases have been identified in mouse and 4 functional acyl-CoA thioesterases and acyltransferases in human, thus these enzymes make up a substantial portion of peroxisomal proteins. This review will therefore focus on new and emerging roles for these enzymes in assisting with the oxidation of various lipids, amidation of lipids for excretion from peroxisomes, and in controlling coenzyme A levels in peroxisomes. Peroxisomes are single membrane bound organelles present in almost all eukaryotic cells, and to date have been shown to contain approximately 60 identified enzymes involved in various metabolic pathways, including the oxidation of a variety of lipids. These lipids include very long-chain fatty acids, methyl branched fatty acids, prostaglandins, bile-acid precursors and xenobiotics that are either β-oxidized or α-oxidized in peroxisomes. The recent identification of several acyl-CoA thioesterases and acyltransferases in peroxisomes has revealed their various functions in acting as auxiliary enzymes in α- and β-oxidation in this organelle. To date, 9 functional acyl-CoA thioesterases and acyltransferases have been identified in mouse and 4 functional acyl-CoA thioesterases and acyltransferases in human, thus these enzymes make up a substantial portion of peroxisomal proteins. This review will therefore focus on new and emerging roles for these enzymes in assisting with the oxidation of various lipids, amidation of lipids for excretion from peroxisomes, and in controlling coenzyme A levels in peroxisomes. |
Author | Alexson, Stefan E.H. Hunt, Mary C. |
Author_xml | – sequence: 1 givenname: Mary C. surname: Hunt fullname: Hunt, Mary C. email: mary.hunt@gmt.su.se organization: Department of Genetics, Microbiology and Toxicology, Arrhenius Laboratory, Stockholm University, Svante Arrhenius väg 16F, SE-106 91 Stockholm, Sweden – sequence: 2 givenname: Stefan E.H. surname: Alexson fullname: Alexson, Stefan E.H. organization: Department of Genetics, Microbiology and Toxicology, Arrhenius Laboratory, Stockholm University, Svante Arrhenius väg 16F, SE-106 91 Stockholm, Sweden |
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Keywords | Acyltransferases Peroxisomes Coenzyme A Acyl-CoA Acyl-CoA thioesterases Alpha-oxidation Beta-oxidation Omega-oxidation |
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SubjectTerms | Acyl-CoA Acyl-CoA thioesterases Acyltransferases Acyltransferases - physiology Alpha-oxidation Animals Beta-oxidation Bile Acids and Salts - metabolism Coenzyme A Coenzyme A - metabolism Dicarboxylic Acids - metabolism Fatty Acid-Binding Proteins - physiology Fatty Acids - metabolism Humans Lipid Metabolism - physiology Medicin och hälsovetenskap Mice Omega-oxidation Oxidation-Reduction Peroxisomes Peroxisomes - metabolism Thiolester Hydrolases - physiology |
Title | Novel functions of acyl-CoA thioesterases and acyltransferases as auxiliary enzymes in peroxisomal lipid metabolism |
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