XIAP impairs mitochondrial function during apoptosis by regulating the Bcl-2 family in renal cell carcinoma

Chao Chen1, Tian Shu Liu1, Si Cong Zhao1

  • 1Department of Urology, Beijing Shijitan Hospital, Capital Medical University, Beijing 100038, P.R. China.

Insights

Inhibitors of apoptosis protein (XIAP) delays programmed cell death by hindering the release of pro-apoptotic proteins from mitochondria. Reducing XIAP accelerates apoptosis and impacts Bcl-2 family protein levels.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Efficient apoptosis relies on Bcl-2 family proteins mediating mitochondrial outer membrane permeabilization (MOMP).
  • Inhibitors of apoptosis protein (XIAP) is upregulated in cancers and influences pro-apoptotic protein release.
  • XIAP's role in regulating mitochondrial function and apoptosis is not fully understood.

Purpose of the Study:

  • To investigate the association between XIAP and the Bcl-2 protein family.
  • To determine XIAP's influence on mitochondrial dynamics during apoptosis.
  • To elucidate XIAP's feedback mechanism on mitochondria.

Main Methods:

  • RNA interference (RNAi) was used to downregulate XIAP in Caki-1 cells.
  • Dynamic changes in protein levels were analyzed upon apoptosis induction.
  • Western blotting and quantitative PCR were employed to assess protein and gene expression.

Main Results:

  • XIAP knockdown accelerated the release of cytochrome c (Cyt-c), Smac, and Apaf-1 from mitochondria.
  • In control cells, the release of these proteins was prolonged and incomplete.
  • Downregulation of XIAP decreased Bcl-2 and Bcl-xl levels and altered Bcl-2/Bax and Bcl-xl/Bax ratios, promoting apoptosis.

Conclusions:

  • XIAP negatively regulates MOMP, delaying the release of key pro-apoptotic factors like Cyt-c and Apaf-1.
  • XIAP limits the release of its inhibitor, Smac, through interactions with Bcl-2 family proteins.
  • XIAP plays a critical role in modulating mitochondrial-mediated apoptosis by influencing Bcl-2 family protein interactions and stability.

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