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June 5, 2026Biology1 citationsOpen Access

Differential Activation of Pro-Survival Pathways by NIX/BNIP3L: An Expression-Level-Dependent Mechanism Governing PC12 Cell Fate During H2O2-Induced Oxidative Stress

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FGFanghui GeChengdu Medical CollegeJSJingxuan ShuChengdu Medical CollegeZLZiqian LiuChengdu Medical College

Key Points

  • This research aims to understand how NIX influences cell fate during oxidative stress in PC12 neurons.
  • PC12 cells were used as a model for studying neuronal responses to oxidative stress.
  • NIX was both overexpressed and knocked down to assess its effects on apoptosis.
  • Cell survival mechanisms were analyzed through apoptosis assays and measures of mitochondrial function.
  • Overexpression of NIX reduced apoptosis by enhancing mitophagy and clearing reactive oxygen species (ROS).
  • Knockdown of NIX decreased apoptosis through its intrinsic pro-apoptotic functions.
  • NIX expression levels distinctly determine PC12 cell survival under oxidative stress conditions.

Abstract

Oxidative stress is a major contributor to neuronal apoptosis and subsequent neurofunctional deficits. This study investigates the dual role of the mitochondrial membrane-anchored protein NIX in PC12 cells, a model for mature neurons. We demonstrate that both overexpression and knockdown of NIX attenuate apoptosis under oxidative stress, albeit through distinct mechanisms. Overexpression of NIX promotes cell survival by activating NIX-mediated mitophagy, which clears damaged mitochondria and intracellular reactive oxygen species (ROS), thereby maintaining redox homeostasis. Conversely, knockdown of NIX reduces apoptosis primarily by diminishing the intrinsic pro-apoptotic function of the protein. Collectively, these findings reveal that NIX expression levels critically gate PC12 cell fate under oxidative stress by differentially activating pro-survival or anti-apoptotic pathways.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/6a226916763171746d547a5fhttps://doi.org/10.3390/biology15110867
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