Epigallocatechin-3-gallate inhibit the protein arginine methyltransferase 5 and Enhancer of Zeste homolog 2 in breast cancer both in vitro and in vivo
Nalla, K.; Chatterjee, B.; Poyya, J.; Swain, A.; Ghosh, K.; Pan, A.; Joshi, C. G.; Manavathi, B.; Kanade, S. R.
Show abstract
Histone methyltransferases are selectively catalyzing the methylation of lysine or arginine residues of target histone and non-histone proteins, classified as lysine methyltransferases and arginine methyltransferases. The EZH2 and PRMT5 catalyze trimethylation of H3 at K27 and symmetric dimethylation of H4 at R3 respectively. These histone repressive marks have been considered as hallmarks in cancer. Both PRMT5 and EZH2 over expressed in several cancers and have been considered as important target of drug development. As a result, many synthetic molecules as inhibitors of both PRMT5 and EZH2 are at different level of preclinical and clinical phases. Cancer atlas data analysis revealed that both PRMT5 and EZH2 had shown more than 90% amplification in breast cancer alone. We screened an array of phytocompounds towards the inhibition of PRMT5 and EZH2 using in silico, in vitro assays. Among them Epigallocatechin-3-gallate (EGCG) has interacted with human PRMT5: MEP50 and EZH2 efficiently. The EGCG interacted within the SAM binding site, with a {pi}-cation interaction at Lys 333 and H-bonds with Tyr324, Tyr334, Gly365, Leu437, and Glu444. Surface plasmon resonance analysis revealed that EGCG has strong binding affinity in nanomolar concentrations with both PRMT5-MEP50 than EZH2. Further in vitro methylation and cell-based assays proved the inhibitory potential of EGCG by reducing the catalytic products of PRMT5 and EZH2 i.e., H4R3me2s & H3K27me3 respectively and showed that it induced autophagy and apoptosis. Furthermore in vivo, mouse xenografts studies demonstrated that oral dosage, reduced tumor size significantly with reduction in proliferation marker Ki67 and these histone repressive marks. Finally conclude that inhibition of PRMT5 and EZH2 by EGCG potentially can be used to develop combined therapeutic approaches.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A Priori Activation of Apoptosis Pathways of Tumor (AAAPT) Technology: Development of Targeted Apoptosis Initiators for Cancer Treatment. 97%
- Application of non-invasive low-intensity pulsed electric field with thermal cycling-hyperthermia for synergistically enhanced anticancer effect of chlorogenic acid on PANC-1 cells 97%
- A novel small molecule LLL12B inhibits STAT3 signaling and sensitizes ovarian cancer cell to paclitaxel and cisplatin 97%
Similar papers in this journal
- Systems biomedicine of primary and metastatic colorectal cancer reveals potential therapeutic targets 95%
- Osthole Suppresses Prostate Cancer Progression by Modulating PRLR and the JAK2/STAT3 Signaling Axis 95%
- miR-100-5p downregulates mTOR to suppress the proliferation, migration and invasion of prostate cancer cells 95%
Similar papers in this journal
- Ginsenoside Rg1 defenses PC-12 cells against hydrogen peroxide-caused damage via up-regulation of miR-216a-5p 95%
- Metabolic reprogramming and synergistic cytotoxicity of genistein and chemotherapy in human breast cancer cells 95%
- Effects of substituents on anticancer activity of thiosemicarbazone against MCF-7 human breast cancer cell line 94%
Similar papers in this journal
- Novel Peptide Inhibitor of Human Tumor Necrosis Factor-α has Antiarthritic Activity 96%
- Cannabidiol (CBD) as a novel inhibitor of HLA-G expression in human choriocarcinoma cell line (JEG-3) 96%
- The combination of lipopolysaccharide and D-galactosamine administration show positive genotoxic effect in mice liver 95%
Similar papers in this journal
- Correlating basal gene expression across chemical sensitivity data to screen for novel synergistic interactors of HDAC inhibitors in pancreatic carcinoma 96%
- Ursolic acid inhibits cell migration and promotes JNK-dependent lysosomal associated cell death in Glioblastoma multiforme cells 95%
- Discovery of Potent Triple Inhibitors of Both SARS-CoV-2 Proteases and Human Cathepsin L 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.