Abstract

Every day, shortly after light onset, photoreceptor cells shed approximately a tenth of their outer segment. The adjacent retinal pigment epithelial (RPE) cells phagocytize and digest shed photoreceptor outer segment, which provides a rich source of fatty acids that could be utilized as an energy substrate. From a microarray analysis, we found that RPE cells express particularly high levels of the mitochondrial HMG-CoA synthase 2 (Hmgcs2) compared with all other tissues (except the liver and colon), leading to the hypothesis that RPE cells, like hepatocytes, can produce β-hydroxybutyrate (β-HB) from fatty acids. Using primary human fetal RPE (hfRPE) cells cultured on Transwell filters with separate apical and basal chambers, we demonstrate that hfRPE cells can metabolize palmitate, a saturated fatty acid that constitutes .15% of all lipids in the photoreceptor outer segment, to produce β-HB. Importantly, we found that hfRPE cells preferentially release β-HB into the apical chamber and that this process is mediated primarily by monocarboxylate transporter isoform 1 (MCT1). Using a GC-MS analysis of (13)C-labeled metabolites, we showed that retinal cells can take up and metabolize (13)C-labeled β-HB into various TCA cycle intermediates and amino acids. Collectively, our data support a novel mechanism of RPE-retina metabolic coupling in which RPE cells metabolize fatty acids to produce β-HB, which is transported to the retina for use as a metabolic substrate.

Highlights

  • retinal pigment epithelial (RPE) cells derive fatty acids from phagocytized photoreceptor outer segments

  • Using primary human fetal RPE cells cultured on Transwell filters with separate apical and basal chambers, we demonstrate that hfRPE cells can metabolize palmitate, a saturated fatty acid that constitutes ≈15% of all lipids in the photoreceptor outer segment, to produce ␤-HB

  • The RPE expresses all three isoforms of PPARs (␣, ␦, and ␥), and PPAR-␥ expression was induced in RPE by phagocytosis of photoreceptor OS (POS) [11]. These findings suggest that an influx of fatty acids into the RPE from POS phagocytosis can act as a signal for PPAR-mediated activation of fatty acid metabolism

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Summary

Introduction

RPE cells derive fatty acids from phagocytized photoreceptor outer segments. Results: RPE cells metabolize palmitate to produce ␤-hydroxybutyrate (␤-HB), a ketone body the retina can use as a metabolic substrate. The adjacent retinal pigment epithelial (RPE) cells phagocytize and digest shed photoreceptor outer segment, which provides a rich source of fatty acids that could be utilized as an energy substrate. Using primary human fetal RPE (hfRPE) cells cultured on Transwell filters with separate apical and basal chambers, we demonstrate that hfRPE cells can metabolize palmitate, a saturated fatty acid that constitutes ≈15% of all lipids in the photoreceptor outer segment, to produce ␤-HB. Our data support a novel mechanism of RPE-retina metabolic coupling in which RPE cells metabolize fatty acids to produce ␤-HB, which is transported to the retina for use as a metabolic substrate

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