Functional Validation of the Putative Oncogenic Activity of PLAU .
Federica SarnoDésirée GoubertEmilie LogieMartijn G S RuttenMihaly KonczChristophe DebenAnita E NiemarktLucia AltucciPernette J VerschureAntal KissWim Vanden BergheMarianne G RotsPublished in: Biomedicines (2022)
Plasminogen activator, urokinase ( PLAU ) is involved in cell migration, proliferation and tissue remodeling. PLAU upregulation is associated with an increase in aggressiveness, metastasis, and invasion of several cancer types, including breast cancer. In patients, this translates into decreased sensitivity to hormonal treatment, and poor prognosis. These clinical findings have led to the examination of PLAU as a biomarker for predicting breast cancer prognosis and therapy responses. In this study, we investigated the functional ability of PLAU to act as an oncogene in breast cancers by modulating its expression using CRISPR-deactivated Cas9 (CRISPR-dCas9) tools. Different effector domains (e.g., transcription modulators (VP64, KRAB)) alone or in combination with epigenetic writers (DNMT3A/3L, MSssI) were fused to dCas9 and targeted to the PLAU promoter. In MDA-MB-231 cells characterized by high PLAU expression downregulation of PLAU expression by CRISPR-dCas9-DNMT3A/3L-KRAB, resulted in decreased cell proliferation. Conversely, CRISPR-dCas9-VP64 induced PLAU upregulation in low PLAU expressing MCF-7 cells and significantly increased aggressiveness and invasion. In conclusion, modulation of PLAU expression affected metastatic related properties of breast cancer cells, thus further validating its oncogenic activity in breast cancer cells.
Keyphrases
- poor prognosis
- breast cancer cells
- long non coding rna
- cell migration
- genome editing
- crispr cas
- dna methylation
- cell proliferation
- genome wide
- induced apoptosis
- signaling pathway
- cell cycle arrest
- transcription factor
- end stage renal disease
- squamous cell carcinoma
- small cell lung cancer
- chronic kidney disease
- small molecule
- ejection fraction
- metabolic syndrome
- diabetic rats
- stem cells
- endoplasmic reticulum stress
- polycystic ovary syndrome
- dendritic cells
- pi k akt
- insulin resistance
- cancer therapy
- binding protein
- drug delivery
- childhood cancer
- atomic force microscopy
- type iii
- breast cancer risk