4.8 Article

Oxidative bursts of single mitochondria mediate retrograde signaling toward the ER

期刊

MOLECULAR CELL
卷 81, 期 18, 页码 3866-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2021.07.014

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资金

  1. NIH [GM59419, ES025672, 5T32AA007463]
  2. Foundation Leducq Mitocardia

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The study shows that individual mitochondria generate oxidative bursts at interorganellar contact sites, with Ca2+ channels directly sensing these bursts and responding with transient Ca2+ transients. Under mitochondrial stress or apoptotic stimuli, the frequency and amplitude of the oxidative bursts can be increased.
The emerging role of mitochondria as signaling organelles raises the question of whether individual mitochondria can initiate heterotypic communication with neighboring organelles. Using fluorescent probes targeted to the endoplasmic-reticulum-mitochondrial interface, we demonstrate that single mitochondria generate oxidative bursts, rapid redox oscillations, confined to the nanoscale environment of the interorganellar contact sites. Using probes fused to inositol 1,4,5-trisphosphate receptors (IP(3)Rs), we show that Ca2+ channels directly sense oxidative bursts and respond with Ca2+ transients adjacent to active mitochondria. Application of specific mitochondrial stressors or apoptotic stimuli dramatically increases the frequency and amplitude of the oxidative bursts by enhancing transient permeability transition pore openings. Conversely, blocking interlace Ca2+ transport via elimination of IP(3)Rs or mitochondrial calcium uniporter channels suppresses ER-mitochondrial Ca2+ feedback and cell death. Thus, single mitochondria initiate local retrograde signaling by miniature oxidative bursts and, upon metabolic or apoptotic stress, may also amplify signals to the rest of the cell.

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