A1 Refereed original research article in a scientific journal

Fibroblast Growth Factor 21 Drives Dynamics of Local and Systemic Stress Responses in Mitochondrial Myopathy with mtDNA Deletions




AuthorsForsström Saara, Jackson Christopher B, Carroll Christopher J, Kuronen Mervi, Pirinen Eija, Pradhan Swagat, Marmyleva Anastasiia, Auranen Mari, Kleine Iida-Marja, Khan Nahid A, Roivainen Anne, Marjamäki Päivi, Liljenbäck Heidi, Wang Liya, Battersby Brendan J, Richter Uwe, Velagapudi Vidya, Nikkanen Joni, Euro Liliya, Suomalainen Anu

PublisherElsevier Inc

Publication year2019

JournalCell Metabolism

Volume30

Issue6

First page 1040

Last page1054.e7

DOIhttps://doi.org/10.1016/j.cmet.2019.08.019

Self-archived copy’s web addresshttps://research.utu.fi/converis/portal/detail/Publication/43686508


Abstract
Abstract

Mitochondrial dysfunction elicits stress responses that safeguard cellular homeostasis against metabolic insults. Mitochondrial integrated stress response (ISRmt) is a major response to mitochondrial (mt)DNA expression stress (mtDNA maintenance, translation defects), but the knowledge of dynamics or interdependence of components is lacking. We report that in mitochondrial myopathy, ISRmt progresses in temporal stages and development from early to chronic and is regulated by autocrine and endocrine effects of FGF21, a metabolic hormone with pleiotropic effects. Initial disease signs induce transcriptional ISRmt (ATF5, mitochondrial one-carbon cycle, FGF21, and GDF15). The local progression to 2nd metabolic ISRmt stage (ATF3, ATF4, glucose uptake, serine biosynthesis, and transsulfuration) is FGF21 dependent. Mitochondrial unfolded protein response marks the 3rd ISRmt stage of failing tissue. Systemically, FGF21 drives weight loss and glucose preference, and modifies metabolism and respiratory chain deficiency in a specific hippocampal brain region. Our evidence indicates that FGF21 is a local and systemic messenger of mtDNA stress in mice and humans with mitochondrial disease.


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