Back to Search Start Over

Lipid signalling drives proteolytic rewiring of mitochondria by YME1L

Authors :
Hans-Georg Sprenger
Sinika Henschke
Yue Zhao
Jiahui Li
Nicola Zamboni
Robin Schwarzer
Takashi Tatsuta
Jan Riemer
Manolis Pasparakis
Hendrik Nolte
Thomas MacVicar
Barbara Lindner
Jens C. Brüning
Thomas Langer
Fiona Carola Mayer
Yohsuke Ohba
Marcus Krüger
Markus Habich
Christiane J. Bruns
Source :
Nature
Publication Year :
2019

Abstract

Reprogramming of mitochondria provides cells with the metabolic flexibility required to adapt to various developmental transitions such as stem cell activation or immune cell reprogramming, and to respond to environmental challenges such as those encountered under hypoxic conditions or during tumorigenesis(1-3). Here we show that the i-AAA protease YME1L rewires the proteome of pre-existing mitochondria in response to hypoxia or nutrient starvation. Inhibition of mTORC1 induces a lipid signalling cascade via the phosphatidic acid phosphatase LIPIN1, which decreases phosphatidylethanolamine levels in mitochondrial membranes and promotes proteolysis. YME1L degrades mitochondrial protein translocases, lipid transfer proteins and metabolic enzymes to acutely limit mitochondrial biogenesis and support cell growth. YME1L-mediated mitochondrial reshaping supports the growth of pancreatic ductal adenocarcinoma (PDAC) cells as spheroids or xenografts. Similar changes to the mitochondrial proteome occur in the tumour tissues of patients with PDAC, suggesting that YME1L is relevant to the pathophysiology of these tumours. Our results identify the mTORC1-LIPIN1-YME1L axis as a post-translational regulator of mitochondrial proteostasis at the interface between metabolism and mitochondrial dynamics.

Details

Database :
OpenAIRE
Journal :
Nature
Accession number :
edsair.doi.dedup.....c2cd5c656d27efa8523fca2f9d38ccaf