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Cell Rep ; 15(7): 1423-1429, 2016 05 17.
Article in English | MEDLINE | ID: mdl-27160910

ABSTRACT

We recently reported an autosomal dominant form of renal Fanconi syndrome caused by a missense mutation in the third codon of the peroxisomal protein EHHADH. The mutation mistargets EHHADH to mitochondria, thereby impairing mitochondrial energy production and, consequently, reabsorption of electrolytes and low-molecular-weight nutrients in the proximal tubule. Here, we further elucidate the molecular mechanism underlying this pathology. We find that mutated EHHADH is incorporated into mitochondrial trifunctional protein (MTP), thereby disturbing ß-oxidation of long-chain fatty acids. The resulting MTP deficiency leads to a characteristic accumulation of hydroxyacyl- and acylcarnitines. Mutated EHHADH also limits respiratory complex I and corresponding supercomplex formation, leading to decreases in oxidative phosphorylation capacity, mitochondrial membrane potential maintenance, and ATP generation. Activity of the Na(+)/K(+)-ATPase is thereby diminished, ultimately decreasing the transport activity of the proximal tubule cells.


Subject(s)
Fanconi Syndrome/metabolism , Kidney/metabolism , Kidney/pathology , Mitochondria/metabolism , Mitochondrial Diseases/metabolism , Animals , Biological Transport , Cell Extracts , Energy Metabolism , Fanconi Syndrome/complications , Fanconi Syndrome/pathology , Fatty Acids/metabolism , LLC-PK1 Cells , Microscopy, Confocal , Mitochondrial Diseases/complications , Mitochondrial Diseases/pathology , Mutation/genetics , Oxidation-Reduction , Peroxisomal Bifunctional Enzyme/metabolism , Proteomics , Sodium-Potassium-Exchanging ATPase/metabolism , Subcellular Fractions/metabolism , Swine
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