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October 7, 2013Journal of Biological Chemistry156 citationsOpen Access

Proapoptotic Bax and Bak Proteins Form Stable Protein-permeable Pores of Tunable Size

SBStephanie BleickenOLOlatz LandetaALAne Landajuela

Key Points

  • This research investigates the characteristics of Bax and Bak proteins in forming apoptotic pores in mitochondrial membranes.
  • Performed detailed analyses of Bax and Bak membrane permeabilizing activity at the single vesicle level.
  • Visualized pore formation following activation by cBid and assessed the size variability over time and concentration.
  • Examined the relationship between pore size and protein concentration versus cardiolipin concentration.
  • Bax and BakΔC21 formed long-lived pores capable of releasing cytochrome c and larger proteins like allophycocyanine (104 kDa).
  • Pore sizes were dynamic, changing with protein concentration but not with cardiolipin concentration.
  • Mechanisms of membrane permeabilization by Bax and BakΔC21 indicated a proteolipidic nature of the formed pores.

Abstract

The Bcl-2 proapoptotic proteins Bax and Bak mediate the permeabilization of the mitochondrial outer membrane during apoptosis. Current models consider that Bax and Bak form pores at the mitochondrial outer membrane that are responsible for the release of cytochrome c and other larger mitochondrial apoptotic factors (i.e. Smac/DIABLO, AIF, and endoglycosidase G). However, the properties and nature of Bax/Bak apoptotic pores remain enigmatic. Here, we performed a detailed analysis of the membrane permeabilizing activity of Bax and Bak at the single vesicle level. We directly visualized that cBid-activated Bax and BakΔC21 can form membrane pores large enough to release not only cytochrome c, but also allophycocyanine, a protein of 104 kDa. Interestingly, the size of Bax and BakΔC21 pores is not constant, as typically observed in purely proteinaceous channels, but evolves with time and depends on protein concentration. We found that Bax and BakΔC21 formed long-lived pores, whose areas changed with the amount of Bax/BakΔC21 but not with cardiolipin concentration. Altogether, our results demonstrate that Bax and BakΔC21 follow similar mechanisms of membrane permeabilization characterized by the formation of protein-permeable pores of dynamic size, in agreement with the proteolipidic nature of these apoptotic pores.

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Cite This Study

Bleicken et al. (2013) studied this question.

synapsesocial.com/papers/6a2024def00dea096ea1ab5fhttps://doi.org/10.1074/jbc.m113.512087
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