Targeting Epigenetic Modifications in Uveal Melanoma.
Pooneh Chokhachi BaradaranZuzana KozovskaAlena FurdovaBožena SmolkováPublished in: International journal of molecular sciences (2020)
Uveal melanoma (UM), the most common intraocular malignancy in adults, is a rare subset of melanoma. Despite effective primary therapy, around 50% of patients will develop the metastatic disease. Several clinical trials have been evaluated for patients with advanced UM, though outcomes remain dismal due to the lack of efficient therapies. Epigenetic dysregulation consisting of aberrant DNA methylation, histone modifications, and small non-coding RNA expression, silencing tumor suppressor genes, or activating oncogenes, have been shown to play a significant role in UM initiation and progression. Given that there is no evidence any approach improves results so far, adopting combination therapies, incorporating a new generation of epigenetic drugs targeting these alterations, may pave the way for novel promising therapeutic options. Furthermore, the fusion of effector enzymes with nuclease-deficient Cas9 (dCas9) in clustered regularly interspaced short palindromic repeats (CRISPR) associated protein 9 (Cas9) system equips a potent tool for locus-specific erasure or establishment of DNA methylation as well as histone modifications and, therefore, transcriptional regulation of specific genes. Both, CRISPR-dCas9 potential for driver epigenetic alterations discovery, and possibilities for their targeting in UM are highlighted in this review.
Keyphrases
- dna methylation
- genome wide
- genome editing
- crispr cas
- gene expression
- clinical trial
- copy number
- cancer therapy
- end stage renal disease
- skin cancer
- newly diagnosed
- poor prognosis
- chronic kidney disease
- squamous cell carcinoma
- small cell lung cancer
- signaling pathway
- peritoneal dialysis
- type diabetes
- small molecule
- drug delivery
- basal cell carcinoma
- patient reported outcomes
- adipose tissue
- mesenchymal stem cells
- high throughput
- risk assessment
- bone marrow
- metabolic syndrome
- glycemic control
- insulin resistance