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Published on: June 9, 2023
Dysregulation of adenosine kinase isoforms in breast cancer
Bahar Shamloo1, Nandita Kumar1, Randall H Owen1
1Department of Translational Neuroscience, Legacy Research Institute, Legacy Health, Portland, OR 97232, USA.
Abstract:
Dysregulated adenosine signaling pathway has been evidenced in the pathogenesis of breast cancer. However, the role of adenosine kinase (ADK) in tumorigenesis remains unclear while it crucially regulates the removal and availability of adenosine. ADK has two isoforms that localize to discrete subcellular spaces: i.e., nuclear, long-isoform (ADK-L) and cytosolic, short-isoform (ADK-S). We hypothesized that these two ADK isoforms would be differentially expressed in breast cancer and may contribute to divergent cellular actions in cancer. In this study, we examined the expression profiles of ADK isoforms in breast cancer tissues from 46 patient and followed up with an in vitro investigation by knocking down the expression of ADK-L or ADK-S using CRISPR gene editing to evaluate the role of ADK isoform in cancer progression and metastasis of cultured triple-negative breast cancer cell line MDA-MB-231. We demonstrated that (i) ADK-L expression level was significantly increased in breast cancer tissues versus paired normal tissues adjacent to tumor, whereas the ADK-S expression levels were not significantly different between cancerous and normal tissues; (ii) CRISPR/Cas9-mediated downregulation of ADK isoforms, led to suppressed cellular proliferation, division, and migration of cultured breast cancer cells; (iii) ADK-L knockdown significantly upregulated gene expression of matrix metalloproteinase (ADAM23, 9.93-fold; MMP9, 24.58-fold) and downregulated expression of cyclin D2 (CCND2, -30.76-fold), adhesive glycoprotein THBS1 (-8.28-fold), and cystatin E/M (CST6, -16.32-fold). Our findings suggest a potential role of ADK-L in mitogenesis, tumorigenesis, and tumor-associated tissue remodeling and invasion; and the manipulation of ADK-L holds promise as a therapeutic strategy for aggressive breast cancer.
Insights
Adenosine kinase (ADK) isoforms, particularly ADK-L, are upregulated in breast cancer. Targeting ADK-L may offer a new therapeutic strategy for aggressive breast cancer by inhibiting tumor growth and metastasis.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Adenosine signaling is implicated in breast cancer pathogenesis.
- Adenosine kinase (ADK) regulates adenosine levels but its role in tumorigenesis is unclear.
- ADK exists as two isoforms: nuclear ADK-L and cytosolic ADK-S, with potentially distinct functions.
Purpose of the Study:
- To investigate the differential expression of ADK isoforms in breast cancer.
- To evaluate the role of ADK isoforms in breast cancer progression and metastasis.
- To explore ADK-L as a potential therapeutic target for aggressive breast cancer.
Main Methods:
- Examined ADK isoform expression in 46 breast cancer tissues and adjacent normal tissues.
- Utilized CRISPR/Cas9 gene editing to knock down ADK-L and ADK-S in MDA-MB-231 cells.
- Assessed the impact of ADK isoform knockdown on cell proliferation, migration, and gene expression.
Main Results:
- ADK-L expression was significantly higher in breast cancer tissues compared to normal tissues; ADK-S showed no significant difference.
- Downregulation of ADK isoforms suppressed breast cancer cell proliferation, division, and migration.
- ADK-L knockdown altered the expression of genes involved in cell cycle, adhesion, and matrix remodeling, including MMP9 and CCND2.
Conclusions:
- ADK-L is upregulated in breast cancer and plays a role in tumor growth, invasion, and metastasis.
- Targeting ADK-L may represent a promising therapeutic strategy for aggressive breast cancer.
- Differential subcellular localization of ADK isoforms may contribute to distinct roles in cancer progression.
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