TY - JOUR
T1 - mTORC1 regulates mitochondrial integrated stress response and mitochondrial myopathy progression
AU - Khan, Nahid A.
AU - Nikkanen, Joni
AU - Yatsuga, Shuichi
AU - Jackson, Christopher
AU - Wang, Liya
AU - Pradhan, Swagat
AU - Kivelä, Riikka
AU - Pessia, Alberto
AU - Velagapudi, Vidya
AU - Suomalainen, Anu
PY - 2017
Y1 - 2017
N2 - Mitochondrial dysfunction elicits various stress responses in different model systems, but how these responses relate to each other and contribute to mitochondrial disease has remained unclear. Mitochondrial myopathy (MM) is the most common manifestation of adult-onset mitochondrial disease and shows a multifaceted tissue-specific stress response: (1) transcriptional response, including metabolic cytokines FGF21 and GDF15; (2) remodeling of one-carbon metabolism; and (3) mitochondrial unfolded protein response. We show that these processes are part of one integrated mitochondrial stress response (ISRmt), which is controlled by mTORC1 in muscle. mTORC1 inhibition by rapamycin downregulated all components of ISRmt, improved all MM hallmarks, and reversed the progression of even late-stage MM, without inducing mitochondrial biogenesis. Our evidence suggests that (1) chronic upregulation of anabolic pathways contributes to MM progression, (2) long-term induction of ISRmt is not protective for muscle, and (3) rapamycin treatment trials should be considered for adult-type MM with raised FGF21.
AB - Mitochondrial dysfunction elicits various stress responses in different model systems, but how these responses relate to each other and contribute to mitochondrial disease has remained unclear. Mitochondrial myopathy (MM) is the most common manifestation of adult-onset mitochondrial disease and shows a multifaceted tissue-specific stress response: (1) transcriptional response, including metabolic cytokines FGF21 and GDF15; (2) remodeling of one-carbon metabolism; and (3) mitochondrial unfolded protein response. We show that these processes are part of one integrated mitochondrial stress response (ISRmt), which is controlled by mTORC1 in muscle. mTORC1 inhibition by rapamycin downregulated all components of ISRmt, improved all MM hallmarks, and reversed the progression of even late-stage MM, without inducing mitochondrial biogenesis. Our evidence suggests that (1) chronic upregulation of anabolic pathways contributes to MM progression, (2) long-term induction of ISRmt is not protective for muscle, and (3) rapamycin treatment trials should be considered for adult-type MM with raised FGF21.
UR - https://res.slu.se/id/publ/86737
U2 - 10.1016/j.cmet.2017.07.007
DO - 10.1016/j.cmet.2017.07.007
M3 - Journal article
C2 - 28768179
SN - 1550-4131
VL - 26
SP - 419
EP - 428
JO - Cell Metabolism
JF - Cell Metabolism
IS - 2
ER -