Induction of autophagy under nitrosative stress: A complex regulatory interplay between SIRT1 and AMPK in MCF7 cells

Subhamoy Chakraborty1, Sampurna Datta1, Sanjay Ghosh1

  • 1Department of Biochemistry, University of Calcutta, 35, Ballygunge Circular Road, Kolkata 700019, West Bengal, India.

Cellular Signalling
|September 7, 2019
PubMed

Insights

Cancer cells utilize a complex interplay between AMPK, SIRT1, and p53 to regulate autophagy and cell death in response to nitrosative stress, a key factor in tumor environments.

Area of Science:

  • Cellular Biology
  • Cancer Research
  • Biochemistry

Background:

  • Nitrosative stress is present in various cancers, but cancer cell defense mechanisms remain unclear.
  • Autophagy is crucial for cell survival under stress.
  • Nitrosative stress primarily targets lipids, proteins, and DNA.

Purpose of the Study:

  • To investigate the role of autophagy in breast cancer cells (MCF7) under nitrosative stress.
  • To elucidate the molecular mechanisms governing cell death and survival in response to nitrosative stress.

Main Methods:

  • MCF7 cells were treated with a nitric oxide (NO) donor (DETA-NONOate).
  • Autophagy markers, cell death modes, mitochondrial membrane potential, NAD+/NADH levels, and sirtuin 1 (SIRT1) status were analyzed.
  • Inhibitors of SIRT1 and phospho-AMPK were used, and SIRT1 was knocked down using siRNA.

Main Results:

  • Nitrosative stress induced autophagy and a unique form of cell death in MCF7 cells.
  • Increased NAD+/NADH ratio and SIRT1, phospho-AMPK, and p53 levels were observed.
  • Inhibiting SIRT1 or AMPK reduced autophagy, while SIRT1 knockdown increased cell viability and p53 acetylation.

Conclusions:

  • A novel partnership between AMPK, SIRT1, and p53 regulates autophagy in response to nitrosative stress in breast cancer cells.
  • This interplay influences cell death and survival mechanisms within the tumor microenvironment.

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