Mitochondrial Protein Import Determines Lifespan Through ... - PubMed
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Abstract
Sustained mitochondrial fitness relies on coordinated biogenesis and clearance. Both processes are regulated by constant targeting of proteins into the organelle. Thus, mitochondrial protein import sets the pace for mitochondrial abundance and function. However, our understanding of mitochondrial protein translocation as a regulator of longevity remains enigmatic. Here, we targeted the main protein import translocases and assessed their contribution to mitochondrial abundance and organismal physiology. We find that reduction in cellular mitochondrial load through mitochondrial protein import system suppression, referred to as MitoMISS, elicits a distinct longevity paradigm. We show that MitoMISS triggers the mitochondrial unfolded protein response, orchestrating an adaptive reprogramming of metabolism. Glycolysis and de novo serine biosynthesis are causatively linked to longevity, whilst mitochondrial chaperone induction is dispensable for lifespan extension. Our findings extent the pro-longevity role of UPRmt and provide insight, relevant to the metabolic alterations that promote or undermine survival and longevity.
© 2022. The Author(s).
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Conflict of interest statement
The authors declare no competing interests.
Figures
Fig. 1. Mitochondrial protein import inhibition elicits…
Fig. 1. Mitochondrial protein import inhibition elicits morphological and bioenergetic adaptations of the mitochondrial network…
Fig. 2. MitoMISS represents a longevity paradigm…
Fig. 2. MitoMISS represents a longevity paradigm discrete from low-insulin signaling, caloric restriction, and mild…
Fig. 3. MitoMISS longevity depends on ATFS-1…
Fig. 3. MitoMISS longevity depends on ATFS-1 and is independent of UPR mt -induced chaperones.
a , …
Fig. 4. MitoMISS-induced longevity requires both glucose…
Fig. 4. MitoMISS-induced longevity requires both glucose uptake and glycolysis in an ATFS-1-dependent manner.
a …
Fig. 5. Metabolic profiling of control and…
Fig. 5. Metabolic profiling of control and MitoMISS animals.
a , b The hierarchical tree…
Fig. 6. De novo serine biosynthesis is…
Fig. 6. De novo serine biosynthesis is required for longevity upon MitoMISS.
a Epifluorescence images…
Fig. 7. MitoMISS ameliorates glucose toxicity with…
Fig. 7. MitoMISS ameliorates glucose toxicity with regard to organismal lifespan.
a Lifespan analysis of…Comment in
- Shifting metabolism to increase lifespan. Pessoa J. Pessoa J. Trends Endocrinol Metab. 2022 Aug;33(8):533-535. doi: 10.1016/j.tem.2022.05.001. Epub 2022 May 19. Trends Endocrinol Metab. 2022. PMID: 35597712
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