Autophagy reports

Removing acetyl groups from a key protein by SIRT2 helps a cell process that recycles damaged proteins

Updated

Abstract

Essence

SIRT2-mediated of HSC70 at K557 appears to activate during nutrient deprivation.

Evidence

This cell-mechanism study used starvation, SIRT2 inhibition or knockdown, and HSC70 K557R and K557Q mutants to test substrate binding and lysosomal degradation in CMA.

Caveat

The findings define a cellular regulatory mechanism and disease relevance is only proposed, not tested in human disease outcomes.

Simplified

Key numbers

4 hours
Increase in activity
activity significantly increased after 4 hours of starvation treatment.
31 of 48
K557R mutant binding affinity
31 of the 48 potential acetylation sites on HSC70 are located within the substrate-binding domain.

Full Text

What this is

  • This research investigates the role of SIRT2 in () through the of HSC70.
  • is crucial for degrading specific proteins during nutrient deprivation, and its activation mechanisms are not fully understood.
  • The study identifies K557 on HSC70 as a key site regulated by SIRT2, enhancing activity.

Essence

  • SIRT2 promotes by deacetylating HSC70 at K557, enhancing its substrate binding and activity during starvation.

Key takeaways

  • SIRT2 activity increases during starvation, leading to enhanced of HSC70 at K557. This modification boosts HSC70's binding affinity to substrates, facilitating their degradation.
  • Mutating K557 to an acetylation-mimetic arginine (K557R) enhances activity, while the acetylation-mimetic glutamine mutant (K557Q) impairs it. This underscores the importance of K557 for function.
  • Inhibition or knockdown of SIRT2 reduces activity, but this can be rescued by overexpressing the K557R mutant, confirming the regulatory role of SIRT2 in during nutrient stress.

Caveats

  • The study primarily focuses on cellular models, which may not fully replicate in vivo conditions. Further research is needed to validate these findings in animal models.
  • The specific mechanisms by which SIRT2 regulates other potential acetylation sites on HSC70 remain unclear, warranting further investigation.

Definitions

  • Chaperone-mediated autophagy (CMA): A selective autophagy process where specific proteins are targeted for degradation in lysosomes, crucial for cellular homeostasis.
  • Deacetylation: The removal of acetyl groups from a molecule, often influencing protein function and interactions.

Simplified

Funding

Competing interests

1 of 6
authors report competing interests
PubMed

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