Abstract
The mitochondrial prohibitin (PHB) complex, composed of PHB‐1 and PHB‐2, is an evo-lutionarily conserved context‐dependent modulator of longevity. This extremely intriguing pheno-type has been linked to alterations in mitochondrial function and lipid metabolism. The true biochemical function of the mitochondrial PHB complex remains elusive, but it has been shown to affect membrane lipid composition. Recent work, using large‐scale biochemical approaches, has highlighted a broad effect of PHB on the C. elegans metabolic network. Collectively, the biochemical data support the notion that PHB modulates, at least partially, worm longevity through the moder-ation of fat utilisation and energy production via the mitochondrial respiratory chain. Herein, we review, in a systematic manner, recent biochemical insights into the impact of PHB on the C. elegans metabolome.
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Lourenço, A. B., & Artal‐sanz, M. (2021, September 1). The mitochondrial prohibitin (Phb) complex in c. elegans metabolism and ageing regulation. Metabolites. MDPI. https://doi.org/10.3390/metabo11090636
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