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Updated: May 10, 2026

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Published on: December 10, 2015
Mouse Noxa uses only the C-terminal BH3-domain to inactivate Mcl-1
Arnim Weber1, David Ausländer, Georg Häcker
1Institute of Medical Microbiology and Hygiene, University Hospital Freiburg, 79104, Freiburg, Germany.
Abstract:
Noxa is a member of the pro-apoptotic BH3-only group of Bcl-2 proteins that is known to bind specifically to anti-apoptotic Mcl-1 and A1, antagonizing their function. Mcl-1 has been reported to have a short half-life, and Noxa up-regulation accelerates Mcl-1 degradation by the proteasome. Unlike human Noxa, mouse Noxa has two BH3-domains, which both have affinity for Mcl-1. We here investigate two aspects of the molecular function of Noxa, namely the requirements for the two BH3-domains in mouse Noxa and the role of Noxa in Mcl-1-degradation. We found that only the C-terminal BH3-domain of mouse Noxa is active in neutralizing Mcl-1. This was the result of the targeting of Noxa to the outer mitochondrial membrane through its C-terminal alpha-helix, which allowed Mcl-1-neutralization only when the BH3-domain was immediately N-terminal of the membrane anchor. However, the N-terminal BH3-domain enhanced interaction with Mcl-1 and A1. The Noxa-dependent degradation of Mcl-1 was independent of the kinase GSK3 and the deubiquitinase Usp9x in mouse embryonic fibroblasts. These data show that Noxa is targeted to the mitochondrial membrane where it neutralises Mcl-1 via its C-terminal BH3-domain and suggest that Noxa is co-degraded with Noxa, in a way independent of ubiquitin-modifying enzymes described for Mcl-1.
Insights
Mouse Noxa protein neutralizes Mcl-1 using its C-terminal BH3-domain, localizing to the mitochondrial membrane. Noxa
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Noxa is a pro-apoptotic BH3-only protein that antagonizes anti-apoptotic proteins Mcl-1 and A1.
- Mcl-1 has a short half-life, and Noxa up-regulation accelerates its proteasomal degradation.
Purpose of the Study:
- Investigate the role of the two BH3-domains in mouse Noxa's function.
- Determine Noxa's role in Mcl-1 degradation.
Main Methods:
- Studied the requirements for mouse Noxa's two BH3-domains.
- Assessed Noxa's role in Mcl-1 degradation in mouse embryonic fibroblasts.
Main Results:
- Only the C-terminal BH3-domain of mouse Noxa is active in neutralizing Mcl-1.
- Noxa targets the outer mitochondrial membrane via its C-terminal alpha-helix for Mcl-1 neutralization.
- The N-terminal BH3-domain enhances interaction with Mcl-1 and A1.
- Noxa-dependent Mcl-1 degradation is independent of GSK3 and Usp9x.
Conclusions:
- Noxa localizes to the mitochondrial membrane to neutralize Mcl-1 via its C-terminal BH3-domain.
- Noxa may be co-degraded with Mcl-1 independently of known ubiquitin-modifying enzymes.
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