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AKT isoforms have discrete expression in triple negative breast cancers and roles in cisplatin sensitivity
Bhumika Wadhwa1,2, Masroor Paddar1,2, Sameer Khan1,2
1Academy of Scientific and Innovative Research (AcSIR), New Delhi 110001, India.
Abstract:
AKT, a serine threonine kinase, exists in three different isoforms and is known for regulating several biological processes including tumorigenesis. In this study, we investigated the expression and net effect of the individual isoforms in triple negative breast cancers and response to cisplatin treatment using cellular, mice models and clinical samples. Interestingly, analysis of the expressions of AKT isoforms in clinical samples showed relatively higher expression of AKT1 in primary tissues; whereas lung and liver metastatic samples showed elevated expression of AKT2. Similarly, triple-negative breast cancer cell lines, BT-549 and MDA-MB-231, with high proliferative and invasive properties, displayed higher expression levels of AKT1/2. By modulating AKT isoform expression in MCF-10A and BT-549 cell lines, we found that presence of AKT2 was associated with invasiveness, stemness and sensitivity to drug treatment. It was observed that the silencing of AKT2 suppressed the cancer stem cell populations (CD44high CD24low, ALDH1), mammosphere formation, invasive and migratory potential in MCF-10A and BT-549 cells. It was further demonstrated that loss of function of AKT1 isoform is associated with reduced sensitivity towards cisplatin treatment in triple-negative breast cancers cellular and syngeneic mice models. The decrease in cisplatin treatment response in shAKT1 cells was allied with the upregulation in the expression of transporter protein ABCG2, whereas silencing of ABCG2 restored cisplatin sensitivity in these cells through AKT/SNAIL/ABCG2 axis. In conclusion, our study demonstrated the varied expression of AKT isoforms in triple-negative breast cancers and also confirmed differential role of isoforms in stemness, invasiveness and response towards the cisplatin treatment.
Insights
The study reveals distinct roles for AKT isoforms in triple-negative breast cancer. AKT2 promotes invasiveness and stemness, while AKT1 influences cisplatin sensitivity via the ABCG2 transporter.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- AKT (a serine threonine kinase) has three isoforms involved in tumorigenesis.
- Triple-negative breast cancer (TNBC) is an aggressive subtype with limited treatment options.
Purpose of the Study:
- Investigate the expression and distinct roles of AKT isoforms in TNBC.
- Determine their impact on invasiveness, stemness, and response to cisplatin treatment.
Main Methods:
- Analysis of AKT isoform expression in clinical TNBC samples and cell lines.
- Modulation of AKT isoform expression (silencing) in cell lines (MCF-10A, BT-549).
- Assessment of invasiveness, stemness markers (CD44, CD24, ALDH1), mammosphere formation, and cisplatin sensitivity in cellular and mouse models.
Main Results:
- Higher AKT1 expression in primary TNBC tissues; higher AKT2 in metastatic samples.
- AKT2 expression correlated with invasiveness, stemness, and drug sensitivity.
- AKT2 silencing reduced stem cell populations and invasiveness.
- AKT1 loss of function decreased cisplatin sensitivity, linked to ABCG2 upregulation via the AKT/SNAIL/ABCG2 axis.
Conclusions:
- AKT isoforms exhibit differential expression and functions in TNBC.
- AKT2 is crucial for stemness and invasiveness.
- AKT1 impacts cisplatin sensitivity, partly through regulating ABCG2 expression.
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