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Tissue Proteome of 2-Hydroxyacyl-CoA Lyase Deficient Mice Reveals Peroxisome Proliferation and Activation of ω-Oxidation.
Khalil, Youssef; Carrino, Sara; Lin, Fujun; Ferlin, Anna; Lad, Heena V; Mazzacuva, Francesca; Falcone, Sara; Rivers, Natalie; Banks, Gareth; Concas, Danilo; Aguilar, Carlos; Haynes, Andrew R; Blease, Andy; Nicol, Thomas; Al-Shawi, Raya; Heywood, Wendy; Potter, Paul; Mills, Kevin; Gale, Daniel P; Clayton, Peter T.
Afiliação
  • Khalil Y; Genetics and Genomic Medicine, Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.
  • Carrino S; Genetics and Genomic Medicine, Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.
  • Lin F; Department of Experimental, Diagnostic and Specialty Medicine, University of Bologna, 40138 Bologna, Italy.
  • Ferlin A; Department of Renal Medicine, University College London, London NW3 2PF, UK.
  • Lad HV; Department of Nephrology, Xin Hua Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200082, China.
  • Mazzacuva F; Department of Renal Medicine, University College London, London NW3 2PF, UK.
  • Falcone S; Clinical Genetics and Genomics Laboratory, Royal Brompton Hospital, London SW3 6NP, UK.
  • Rivers N; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Banks G; Genetics and Genomic Medicine, Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.
  • Concas D; Department of Bioscience, University of East London, London E15 4LZ, UK.
  • Aguilar C; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Haynes AR; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Blease A; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Nicol T; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Al-Shawi R; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Heywood W; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Potter P; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Mills K; MRC Harwell Institute, Harwell Campus, Oxfordshire OX11 0RD, UK.
  • Gale DP; Genetics Unit and Wolfson Drug Discovery Unit, Centre for Amyloidosis and Acute Phase Proteins, University College London, London NW3 2PF, UK.
  • Clayton PT; Genetics and Genomic Medicine, Great Ormond Street Institute of Child Health, University College London, London WC1N 1EH, UK.
Int J Mol Sci ; 23(2)2022 Jan 17.
Article em En | MEDLINE | ID: mdl-35055171
ABSTRACT
Peroxisomal fatty acid α-oxidation is an essential pathway for the degradation of ß-carbon methylated fatty acids such as phytanic acid. One enzyme in this pathway is 2-hydroxyacyl CoA lyase (HACL1), which is responsible for the cleavage of 2-hydroxyphytanoyl-CoA into pristanal and formyl-CoA. Hacl1 deficient mice do not present with a severe phenotype, unlike mice deficient in other α-oxidation enzymes such as phytanoyl-CoA hydroxylase deficiency (Refsum disease) in which neuropathy and ataxia are present. Tissues from wild-type and Hacl1-/- mice fed a high phytol diet were obtained for proteomic and lipidomic analysis. There was no phenotype observed in these mice. Liver, brain, and kidney tissues underwent trypsin digestion for untargeted proteomic liquid chromatography-mass spectrometry analysis, while liver tissues also underwent fatty acid hydrolysis, extraction, and derivatisation for fatty acid gas chromatography-mass spectrometry analysis. The liver fatty acid profile demonstrated an accumulation of phytanic and 2-hydroxyphytanic acid in the Hacl1-/- liver and significant decrease in heptadecanoic acid. The liver proteome showed a significant decrease in the abundance of Hacl1 and a significant increase in the abundance of proteins involved in PPAR signalling, peroxisome proliferation, and omega oxidation, particularly Cyp4a10 and Cyp4a14. In addition, the pathway associated with arachidonic acid metabolism was affected; Cyp2c55 was upregulated and Cyp4f14 and Cyp2b9 were downregulated. The kidney proteome revealed fewer significantly upregulated peroxisomal proteins and the brain proteome was not significantly different in Hacl1-/- mice. This study demonstrates the powerful insight brought by proteomic and metabolomic profiling of Hacl1-/- mice in better understanding disease mechanism in fatty acid α-oxidation disorders.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fitol / Carbono-Carbono Liases / Peroxissomos / Proteômica / Lipidômica Limite: Animals Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fitol / Carbono-Carbono Liases / Peroxissomos / Proteômica / Lipidômica Limite: Animals Idioma: En Ano de publicação: 2022 Tipo de documento: Article