Abstract

Fatty acid transport protein 4 (FATP4) is a fatty acyl-CoA synthetase that preferentially activates very long chain fatty acid substrates, such as C24:0, to their CoA derivatives. To gain better insight into the physiological functions of FATP4, we established dermal fibroblast cell lines from FATP4-deficient wrinkle-free mice and wild type (w.t.) mice. FATP4 -/- fibroblasts had no detectable FATP4 protein by Western blot. Compared with w.t. fibroblasts, cells lacking FATP4 had an 83% decrease in C24:0 activation. Peroxisomal degradation of C24:0 was reduced by 58%, and rates of C24:0 incorporation into major phospholipid species (54-64% decrease), triacylglycerol (64% decrease), and cholesterol esters (58% decrease) were significantly diminished. Because these lipid metabolic processes take place in different subcellular organelles, we used immunofluorescence and Western blotting of subcellular fractions to investigate the distribution of FATP4 protein and measured enzyme activity in fractions from w.t. and FATP4 -/- fibroblasts. FATP4 protein and acyl-CoA synthetase activity localized to multiple organelles, including mitochondria, peroxisomes, endoplasmic reticulum, and the mitochondria-associated membrane fraction. We conclude that in murine skin fibroblasts, FATP4 is the major enzyme producing very long chain fatty acid-CoA for lipid metabolic pathways. Although FATP4 deficiency primarily affected very long chain fatty acid metabolism, mutant fibroblasts also showed reduced uptake of a fluorescent long chain fatty acid and reduced levels of long chain polyunsaturated fatty acids. FATP4-deficient cells also contained abnormal neutral lipid droplets. These additional defects indicate that metabolic abnormalities in these cells are not limited to very long chain fatty acids.

Highlights

  • Cannot participate in most metabolic processes unless they are first activated to their CoA derivatives (4)

  • Slc27a4wrfr Fibroblasts Lack Fatty acid transport protein 4 (FATP4) Protein—To investigate the effect of FATP4 deficiency on cellular lipid metabolism, skin fibroblast lines were produced from two w.t. mice and two Slc27a4wrfr littermates

  • Activation of Long Chain Fatty Acids (LCFA) and very long chain fatty acids (VLCFA) by FATP4-deficient Fibroblasts—When FATP4 was overexpressed in COS-1 cells, membrane extracts had a greater fold increase in activation of VLCFA than LCFA (16)

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Summary

Introduction

Cannot participate in most metabolic processes unless they are first activated to their CoA derivatives (4). To determine how a lack of endogenous FATP4 deficiency affected activation of LCFA and VLCFA, ACS activity using palmitic acid (C16:0) and lignoceric acid (C24:0) as substrates was measured in w.t. and Slc27a4wrfr fibroblasts.

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