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Published on: January 7, 2019
N52 monodeamidated Bcl‑xL shows impaired oncogenic properties in vivo and in vitro
Florian Beaumatin1,2, Mohamad El Dhaybi1,2,3, Jean-Paul Lasserre1,2
1CNRS, Institut de Biochimie et de Génétique Cellulaires, UMR5095, 33077 Bordeaux, France.
Abstract:
Bcl-xL is a member of the Bcl-2 family, playing a critical role in the survival of tumor cells. Here, we show that Bcl-xL oncogenic function can be uncoupled from its anti-apoptotic activity when it is regulated by the post-translational deamidation of its Asn52.Bcl-xL activity can be regulated by post-translational modifications: deamidation of Asn52 and 66 into Asp residues was reported to occur exclusively in response to DNA damage, and to cripple its anti-apoptotic activity. Our work reports for the first time the spontaneous occurrence of monodeamidated Asp52Bcl-xL in control conditions, in vivo and in vitro. In the normal and cancer cell lines tested, no less than 30% and up to 56% of Bcl-xL was singly deamidated on Asn52. Functional analyses revealed that singly deamidated Bcl-xL retains anti-apoptotic functions, and exhibits enhanced autophagic activity while harboring impaired clonogenic and tumorigenic properties compared to native Bcl-xL. Additionally, Asp52Bcl-xL remains phosphorylatable, and thus is still an eligible target of anti-neoplasic agents. Altogether our results complement the existing data on Bcl-xL deamidation: they challenge the common acceptance that Asn52 and Asn66 are equally eligible for deamidation, and provide a valuable improvement of our knowledge on the regulation of Bcl-xLoncogenic functions by deamidation.
Insights
The anti-apoptotic protein Bcl-xL
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Bcl-xL, a Bcl-2 family member, is crucial for tumor cell survival.
- Post-translational modifications regulate Bcl-xL activity.
- Deamidation of Asn52/66 to Asp was previously linked to DNA damage and loss of anti-apoptotic function.
Purpose of the Study:
- To investigate the spontaneous occurrence and function of deamidated Bcl-xL.
- To determine if deamidation affects Bcl-xL's oncogenic and anti-apoptotic roles.
- To explore the implications of deamidation for cancer therapy.
Main Methods:
- In vivo and in vitro studies using normal and cancer cell lines.
- Analysis of Bcl-xL deamidation at Asn52.
- Functional assays assessing anti-apoptotic, autophagic, clonogenic, and tumorigenic properties.
- Phosphorylation site analysis.
Main Results:
- Monodeamidated Asp52Bcl-xL occurs spontaneously in 30-56% of cells under normal conditions.
- Asp52Bcl-xL retains anti-apoptotic function but has impaired tumorigenic properties.
- Deamidated Bcl-xL shows enhanced autophagic activity.
- Asp52Bcl-xL remains a target for anti-neoplastic agents.
Conclusions:
- Bcl-xL oncogenic function can be separated from its anti-apoptotic activity via Asn52 deamidation.
- Asn52 deamidation occurs spontaneously and impacts Bcl-xL's cellular roles.
- These findings refine understanding of Bcl-xL regulation and its therapeutic targeting.
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