PINK1 deficiency sustains cell proliferation by reprogramming glucose metabolism through HIF1

R Requejo-Aguilar, I Lopez-Fabuel… - Nature …, 2014 - nature.com
Nature communications, 2014nature.com
Abstract PTEN-induced kinase-1 (PINK1) is a Ser/Thr kinase implicated in familial early-
onset Parkinson's disease, and was first reported as a growth suppressor. PINK1 loss-of-
function compromises both mitochondrial autophagy and oxidative phosphorylation. Here
we report that PINK1 deficiency triggers hypoxia-inducible factor-1α (HIF1α) stabilization in
cultured Pink1−/− mouse embryonic fibroblasts and primary cortical neurons as well as in
vivo. This effect, mediated by mitochondrial reactive oxygen species, led to the upregulation …
Abstract
PTEN-induced kinase-1 (PINK1) is a Ser/Thr kinase implicated in familial early-onset Parkinson’s disease, and was first reported as a growth suppressor. PINK1 loss-of-function compromises both mitochondrial autophagy and oxidative phosphorylation. Here we report that PINK1 deficiency triggers hypoxia-inducible factor-1α (HIF1α) stabilization in cultured Pink1−/− mouse embryonic fibroblasts and primary cortical neurons as well as in vivo. This effect, mediated by mitochondrial reactive oxygen species, led to the upregulation of the HIF1 target, pyruvate dehydrogenase kinase-1, which inhibits PDH activity. Furthermore, we show that HIF1α stimulates glycolysis in the absence of Pink1, and that the promotion of intracellular glucose metabolism by HIF1α stabilization is required for cell proliferation in Pink1−/− mice. We propose that loss of Pink1 reprograms glucose metabolism through HIF1α, sustaining increased cell proliferation.
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