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Vav1 Selectively Down-Regulates Akt2 through miR-29b in Certain Breast Tumors with Triple Negative Phenotype
Silvia Grassilli1,2, Federica Brugnoli1, Stefano Cairo3,4
1Department of Translational Medicine, University of Ferrara, 44121 Ferrara, Italy.
Abstract:
Triple negative breast cancer (TNBC) represents the most aggressive breast tumor, showing a high intrinsic variability in terms of both histopathological features and response to therapies. Blocking the Akt signaling pathway is a well-studied approach in the treatment of aggressive breast tumors. The high homology among the Akt isoforms and their distinct, and possibly opposite, oncogenic functions made it difficult to develop effective drugs. Here we investigated the role of Vav1 as a potential down-regulator of individual Akt isozymes. We revealed that the over-expression of Vav1 in triple negative MDA-MB-231 cells reduced only the Akt2 isoform, acting at the post-transcriptional level through the up-modulation of miR-29b. The Vav1/miR-29b dependent decrease in Akt2 was correlated with a reduced lung colonization of circulating MDA-MB-231 cells. In cell lines established from PDX, the Vav1 induced down-modulation of Akt2 is strongly dependent on miR-29b and occurs only in some TNBC tumors. These findings may contribute to better classify breast tumors having the triple negative phenotype, and suggest that the activation of the Vav1/miR-29b axis, precisely regulating the amount of an Akt isozyme crucial for tumor dissemination, could have great potential for driving more accurate therapies to TNBCs, often not eligible or resistant to treatments.
Insights
Vav1 overexpression in triple negative breast cancer (TNBC) cells reduces Akt2 levels via miR-29b, inhibiting tumor spread. This highlights a potential therapeutic target for aggressive TNBCs.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Triple negative breast cancer (TNBC) is aggressive and heterogeneous.
- Targeting the Akt signaling pathway is challenging due to isoform homology.
- Vav1's role in regulating Akt isoforms in TNBC is unexplored.
Purpose of the Study:
- Investigate Vav1 as a potential regulator of Akt isozymes.
- Determine the mechanism of Vav1's action on Akt isoforms.
- Assess the impact of Vav1/Akt2 modulation on TNBC cell dissemination.
Main Methods:
- Overexpression of Vav1 in MDA-MB-231 TNBC cells.
- Analysis of Akt isoform levels and miR-29b expression.
- Assessment of lung colonization in vivo.
- Validation in patient-derived xenograft (PDX) models.
Main Results:
- Vav1 overexpression selectively reduced Akt2 levels post-transcriptionally.
- This reduction was mediated by Vav1-induced up-modulation of miR-29b.
- Decreased Akt2 levels correlated with reduced lung metastasis of TNBC cells.
- The Vav1/miR-29b/Akt2 axis was validated in some TNBC PDX models.
Conclusions:
- Vav1 acts as a down-regulator of Akt2 in specific TNBC subtypes.
- The Vav1/miR-29b axis offers a mechanism to control Akt2, a key driver of tumor dissemination.
- This pathway could aid in classifying TNBC and developing targeted therapies for treatment-resistant cases.
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